Skip to main content

Main menu

  • For Authors
    • Submit a Manuscript
    • Instructions for Authors
  • Home
  • Content
    • Current Issue
    • Archive
    • Preview Papers
    • Focus Collections
    • Classics Collection
    • Upcoming Focus Issues
  • Advertisers
  • About
    • About the Journal
    • Editorial Board and Staff
  • Subscribers
  • Librarians
  • More
    • Alerts
    • Contact Us
  • Other Publications
    • Plant Physiology
    • The Plant Cell
    • Plant Direct
    • The Arabidopsis Book
    • Plant Cell Teaching Tools
    • ASPB
    • Plantae

User menu

  • My alerts
  • Log in

Search

  • Advanced search
Plant Physiology
  • Other Publications
    • Plant Physiology
    • The Plant Cell
    • Plant Direct
    • The Arabidopsis Book
    • Plant Cell Teaching Tools
    • ASPB
    • Plantae
  • My alerts
  • Log in
Plant Physiology

Advanced Search

  • For Authors
    • Submit a Manuscript
    • Instructions for Authors
  • Home
  • Content
    • Current Issue
    • Archive
    • Preview Papers
    • Focus Collections
    • Classics Collection
    • Upcoming Focus Issues
  • Advertisers
  • About
    • About the Journal
    • Editorial Board and Staff
  • Subscribers
  • Librarians
  • More
    • Alerts
    • Contact Us
  • Follow plantphysiol on Twitter
  • Visit plantphysiol on Facebook
  • Visit Plantae
OtherBIOCHEMISTRY AND ENZYMOLOGY
You have accessRestricted Access

Expansin Mode of Action on Cell Walls (Analysis of Wall Hydrolysis, Stress Relaxation, and Binding)

S. J. McQueen-Mason, D. J. Cosgrove
S. J. McQueen-Mason
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
D. J. Cosgrove
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site

Published January 1995. DOI: https://doi.org/10.1104/pp.107.1.87

  • Article
  • Info & Metrics
  • PDF
Loading

Statistics from Altmetric.com

Article usage

Article usage: June 2002 to January 2021

AbstractFullPdf
Jun 20022010
Jul 200212015
Aug 20026011
Sep 20027010
Oct 2002804
Nov 20021208
Dec 2002504
Jan 20037013
Feb 200315010
Mar 200312011
Apr 200310011
May 200313011
Jun 20035012
Jul 200313013
Aug 2003509
Sep 20039025
Oct 200320022
Nov 200310011
Dec 200321026
Jan 200411021
Feb 200411025
Mar 200415013
Apr 20048024
May 2004806
Jun 2004909
Jul 200410015
Aug 20049010
Sep 20041509
Oct 20047219
Nov 200421019
Dec 200420035
Jan 200511027
Feb 200513011
Mar 20051009
Apr 200514131
May 20052025
Jun 200511022
Jul 20058020
Aug 20059116
Sep 200512031
Oct 200515012
Nov 200519038
Dec 20051108
Jan 20064011
Feb 200626017
Mar 200614016
Apr 20069015
May 20065018
Jun 200610018
Jul 20064014
Aug 2006808
Sep 20067021
Oct 20064013
Nov 20066016
Dec 200610014
Jan 20077016
Feb 20079012
Mar 20078015
Apr 20077015
May 200714016
Jun 20077020
Jul 20074012
Aug 2007308
Sep 200712019
Oct 20076025
Nov 20079026
Dec 2007208
Jan 20089019
Feb 20083014
Mar 2008308
Apr 200810024
May 20086013
Jun 20087014
Jul 20083014
Aug 2008608
Sep 20089018
Oct 20089014
Nov 200818017
Dec 200814020
Jan 200917024
Feb 200915011
Mar 200923026
Apr 20095017
May 200913014
Jun 20095012
Jul 200912011
Aug 200910015
Sep 200911023
Oct 200916029
Nov 200915026
Dec 200912018
Jan 201010021
Feb 20108017
Mar 201020036
Apr 201021034
May 20109021
Jun 201011020
Jul 201012018
Aug 20101108
Sep 201010010
Oct 201018023
Nov 201011016
Dec 20109015
Jan 201118017
Feb 201113016
Mar 201122022
Apr 201117030
May 201127031
Jun 201115012
Jul 201122027
Aug 201113021
Sep 201117220
Oct 201129034
Nov 201123142
Dec 201117011
Jan 201218028
Feb 201215017
Mar 201231323
Apr 201236032
May 201223038
Jun 201233023
Jul 201213120
Aug 201216012
Sep 201222023
Oct 201215019
Nov 201235039
Dec 201215029
Jan 2013280731
Feb 201329016
Mar 201340038
Apr 201335047
May 201336039
Jun 201310024
Jul 201319022
Aug 201319019
Sep 201319028
Oct 201333032
Nov 201330061
Dec 201325035
Jan 201420037
Feb 201441062
Mar 201426367
Apr 201437079
May 201422059
Jun 201428326
Jul 201436034
Aug 201423035
Sep 201416028
Oct 201423053
Nov 201428057
Dec 201429022
Jan 201528032
Feb 201511020
Mar 201527034
Apr 201529036
May 201525022
Jun 201521017
Jul 201517017
Aug 201524019
Sep 201522029
Oct 201531031
Nov 201529138
Dec 201525026
Jan 201646029
Feb 201627032
Mar 201632039
Apr 201633026
May 201612030
Jun 201618029
Jul 201616032
Aug 201622231
Sep 201616038
Oct 201622051
Nov 201637046
Dec 201629033
Jan 201715049
Feb 201739042
Mar 201712039
Apr 201712034
May 201722017
Jun 201730014
Jul 201723030
Aug 201728014
Sep 201726013
Oct 201720017
Nov 201729022
Dec 20172009
Jan 201825029
Feb 201858010
Mar 201841020
Apr 201835022
May 201855015
Jun 201835013
Jul 201825012
Aug 201825015
Sep 201838017
Oct 201828011
Nov 201831017
Dec 201826023
Jan 201923021
Feb 201928018
Mar 201924019
Apr 201931016
May 201929018
Jun 201913012
Jul 201938013
Aug 201927012
Sep 20192808
Oct 201985017
Nov 201922019
Dec 20192407
Jan 202039029
Feb 202029013
Mar 202024019
Apr 202028022
May 202020011
Jun 202014018
Jul 202013013
Aug 202028011
Sep 202077019
Oct 2020117016
Nov 202075020
Dec 202083027
Jan 202128014

Author Information

  1. S. J. McQueen-Mason and
  2. D. J. Cosgrove
  1. Department of Biology, 208 Mueller Lab, Pennsylvania State University, University Park, Pennsylvania 16802

Cited By...

  • 339 Citations
  • 280 Citations
  • Google Scholar

This article has been cited by the following articles in journals that are participating in Crossref Cited-by Linking.

  • Growth of the plant cell wall
    Daniel J. Cosgrove
    Nature Reviews Molecular Cell Biology 2005 6 11
  • Loosening of plant cell walls by expansins
    Daniel J. Cosgrove
    Nature 2000 407 6802
  • STRUCTURE AND BIOGENESIS OF THE CELL WALLS OF GRASSES
    Nicholas C. Carpita
    Annual Review of Plant Physiology and Plant Molecular Biology 1996 47 1
  • Fungal Cellulases
    Christina M. Payne, Brandon C. Knott, Heather B. Mayes, Henrik Hansson, Michael E. Himmel, Mats Sandgren, Jerry Ståhlberg, Gregg T. Beckham
    Chemical Reviews 2015 115 3
  • ENZYMES AND OTHER AGENTS THAT ENHANCE CELL WALL EXTENSIBILITY
    Daniel J. Cosgrove
    Annual Review of Plant Physiology and Plant Molecular Biology 1999 50 1
  • Carbohydrate Binding Modules: Biochemical Properties and Novel Applications
    Oded Shoseyov, Ziv Shani, Ilan Levy
    Microbiology and Molecular Biology Reviews 2006 70 2
  • Altered expression of expansin modulates leaf growth and pedicel abscission in Arabidopsis thaliana
    H.-T. Cho, D. J. Cosgrove
    Proceedings of the National Academy of Sciences 2000 97 17
  • ASSEMBLY AND ENLARGEMENT OF THE PRIMARY CELL WALL IN PLANTS
    Daniel J. Cosgrove
    Annual Review of Cell and Developmental Biology 1997 13 1
  • Expansive growth of plant cell walls
    Daniel J. Cosgrove
    Plant Physiology and Biochemistry 2000 38 1-2
  • Cooperative disassembly of the cellulose–xyloglucan network of plant cell walls: parallels between cell expansion and fruit ripening
    Jocelyn K.C Rose, Alan B Bennett
    Trends in Plant Science 1999 4 5
  • The Growing World of Expansins
    Daniel J. Cosgrove, Lian Chao Li, Hyung-Taeg Cho, Susanne Hoffmann-Benning, Richard C. Moore, Douglas Blecker
    Plant and Cell Physiology 2002 43 12
  • Expression of a divergent expansin gene is fruit-specific and ripening-regulated
    J. K. C. Rose, H. H. Lee, A. B. Bennett
    Proceedings of the National Academy of Sciences 1997 94 11
  • Group I allergens of grass pollen as cell wall-loosening agents
    D. J. Cosgrove, P. Bedinger, D. M. Durachko
    Proceedings of the National Academy of Sciences 1997 94 12
  • Expansins and cell growth
    Yi Li, Louise Jones, Simon McQueen-Mason
    Current Opinion in Plant Biology 2003 6 6
  • Xyloglucan and its Interactions with Other Components of the Growing Cell Wall
    Yong Bum Park, Daniel J. Cosgrove
    Plant and Cell Physiology 2015 56 2
  • Plant expansins: diversity and interactions with plant cell walls
    Daniel J Cosgrove
    Current Opinion in Plant Biology 2015 25
  • Crystal structure and activities of EXPB1 (Zea m 1), a beta-expansin and group-1 pollen allergen from maize
    N. H. Yennawar, L.-C. Li, D. M. Dudzinski, A. Tabuchi, D. J. Cosgrove
    Proceedings of the National Academy of Sciences 2006 103 40
  • Mechano-Chemical Aspects of Organ Formation in Arabidopsis thaliana: The Relationship between Auxin and Pectin
    Siobhan A. Braybrook, Alexis Peaucelle, Markus Grebe
    PLoS ONE 2013 8 3
  • Sensitivity-enhanced solid-state NMR detection of expansin's target in plant cell walls
    T. Wang, Y. B. Park, M. A. Caporini, M. Rosay, L. Zhong, D. J. Cosgrove, M. Hong
    Proceedings of the National Academy of Sciences 2013 110 41
  • Sentinels at the wall: cell wall receptors and sensors
    Tania V. Humphrey, Dario T. Bonetta, Daphne R. Goring
    New Phytologist 2007 176 1
  • Crystal structure and activity of Bacillus subtilis YoaJ (EXLX1), a bacterial expansin that promotes root colonization
    F. Kerff, A. Amoroso, R. Herman, E. Sauvage, S. Petrella, P. Filee, P. Charlier, B. Joris, A. Tabuchi, N. Nikolaidis, D. J. Cosgrove
    Proceedings of the National Academy of Sciences 2008 105 44
  • The mechanics behind plant development
    Olivier Hamant, Jan Traas
    New Phytologist 2010 185 2
  • Characterization of a new xyloglucan endotransglucosylase/hydrolase (XTH) from ripening tomato fruit and implications for the diverse modes of enzymic action
    Montserrat Saladié, Jocelyn K. C. Rose, Daniel J. Cosgrove, Carmen Catalá
    The Plant Journal 2006 47 2
  • Photosynthesis in desiccation tolerant plants: Energy metabolism and antioxidative stress defense
    Challabathula Dinakar, Dimitar Djilianov, Dorothea Bartels
    Plant Science 2012 182
  • Biochemistry of fruit softening: an overview
    Anurag Payasi, Nagendra Nath Mishra, Ana Lucia Soares Chaves, Randhir Singh
    Physiology and Molecular Biology of Plants 2009 15 2
  • Brassinosteroid Regulates Fiber Development on Cultured Cotton Ovules
    Yan Sun, Suresh Veerabomma, Haggag A. Abdel-Mageed, Mohamed Fokar, Tadao Asami, Shigeo Yoshida, Randy D. Allen
    Plant and Cell Physiology 2005 46 8
  • Catalysts of plant cell wall loosening
    Daniel J. Cosgrove
    F1000Research 2016 5
  • A role for expansins in dehydration and rehydration of the resurrection plantCraterostigma plantagineum
    Louise Jones, Simon McQueen-Mason
    FEBS Letters 2004 559 1-3
  • Expansins are involved in the formation of nematode-induced syncytia in roots ofArabidopsis thaliana
    Krzysztof Wieczorek, Bettina Golecki, Lars Gerdes, Petra Heinen, Dagmar Szakasits, Daniel M. Durachko, Daniel J. Cosgrove, David P. Kreil, Piotr S. Puzio, Holger Bohlmann, Florian M. W. Grundler
    The Plant Journal 2006 48 1
  • Differential expression of seven α-expansin genes during growth and ripening of pear fruit
    Kyoko Hiwasa, Jocelyn K. C. Rose, Ryohei Nakano, Akitsugu Inaba, Yasutaka Kubo
    Physiologia Plantarum 2003 117 4
  • Cell Wall Modifying Proteins Mediate Plant Acclimatization to Biotic and Abiotic Stresses
    Rashmi Sasidharan, Laurentius ACJ Voesenek, Ronald Pierik
    Critical Reviews in Plant Sciences 2011 30 6
  • How do cell walls regulate plant growth?
    David Stuart Thompson
    Journal of Experimental Botany 2005 56 419
  • RhEXPA4, a rose expansin gene, modulates leaf growth and confers drought and salt tolerance to Arabidopsis
    Peitao Lü, Mei Kang, Xinqiang Jiang, Fanwei Dai, Junping Gao, Changqing Zhang
    Planta 2013 237 6
  • A sub-proteome of Arabidopsis thaliana mature stems trapped on Concanavalin A is enriched in cell wall glycoside hydrolases
    Zoran Minic, Elisabeth Jamet, Luc Négroni, P Arsene der Garabedian, Michel Zivy, Lise Jouanin
    Journal of Experimental Botany 2007 58 10
  • Structure-Function Analysis of the Bacterial Expansin EXLX1
    Nikolaos Georgelis, Akira Tabuchi, Nikolas Nikolaidis, Daniel J. Cosgrove
    Journal of Biological Chemistry 2011 286 19
  • Spatial distributions of tissue expansion and cell division rates are related to irradiance and to sugar content in the growing zone of maize roots
    B. Muller, M. Stosser, F. Tardieu
    Plant, Cell and Environment 1998 21 2
  • Arabidopsiswhole-transcriptome profiling defines the features of coordinated regulations that occur during secondary growth
    Jae-heung Ko, Kyung-hwan Han
    Plant Molecular Biology 2004 55 3
  • Expansins expression is associated with grain size dynamics in wheat (Triticum aestivum L.)
    X. C. Lizana, R. Riegel, L. D. Gomez, J. Herrera, A. Isla, S. J. McQueen-Mason, D. F. Calderini
    Journal of Experimental Botany 2010 61 4
  • The Role of Auxin in Cell Wall Expansion
    Mateusz Majda, Stéphanie Robert
    International Journal of Molecular Sciences 2018 19 4
  • Cell wall biosynthesis and the molecular mechanism of plant enlargement
    John S. Boyer
    Functional Plant Biology 2009 36 5
  • Modification of polysaccharides and plant cell wall by endo-1,4-β-glucanase and cellulose-binding domains
    Ilan Levy, Ziv Shani, Oded Shoseyov
    Biomolecular Engineering 2002 19 1
  • Molecular Aspects of Cell Wall Modifications during Fruit Ripening
    M. D. Brownleader, P. Jackson, A. Mobasheri, A. T. Pantelides, S. Sumar, M. Trevan, P. M. Dey
    Critical Reviews in Food Science and Nutrition 1999 39 2
  • Xyloglucan endotransglycosylase/hydrolase genes in cotton and their role in fiber elongation
    Joohyun Lee, Teresa H. Burns, Ginger Light, Yan Sun, Mohamed Fokar, Yoshihisha Kasukabe, Koichi Fujisawa, Yoshihiko Maekawa, Randy D. Allen
    Planta 2010 232 5
  • Regulatory Mechanisms of Textural Changes in Ripening Fruits
    Xian Li, Changjie Xu, Schuyler S. Korban, Kunsong Chen
    Critical Reviews in Plant Sciences 2010 29 4
  • Plant cell enlargement and the action of expansins
    Daniel J. Cosgrove
    BioEssays 1996 18 7
  • A Model of Cell Wall Expansion Based on Thermodynamics of Polymer Networks
    Boris A. Veytsman, Daniel J. Cosgrove
    Biophysical Journal 1998 75 5
  • Bacterial expansins and related proteins from the world of microbes
    Nikolaos Georgelis, Nikolas Nikolaidis, Daniel J. Cosgrove
    Applied Microbiology and Biotechnology 2015 99 9
  • Cell Wall Composition, Biosynthesis and Remodeling during Pollen Tube Growth
    Jean-Claude Mollet, Christelle Leroux, Flavien Dardelle, Arnaud Lehner
    Plants 2013 2 1
  • Genes expression analyses of sea-island cotton (Gossypium barbadense L.) during fiber development
    Li-Li Tu, Xian-Long Zhang, Shao-Guang Liang, Di-Qiu Liu, Long-Fu Zhu, Fan-Chang Zeng, Yi-Chun Nie, Xiao-Ping Guo, Feng-Lin Deng, Jia-Fu Tan, Li Xu
    Plant Cell Reports 2007 26 8
  • Overexpression of OsEXPA8, a Root-Specific Gene, Improves Rice Growth and Root System Architecture by Facilitating Cell Extension
    Nana Ma, Ying Wang, Shichun Qiu, Zhenhui Kang, Shugang Che, Guixue Wang, Junli Huang, Malcolm Bennett
    PLoS ONE 2013 8 10
  • Salt stress differentially affects growth-mediating β-expansins in resistant and sensitive maize (Zea mays L.)
    Christoph-Martin Geilfus, Christian Zörb, Karl H. Mühling
    Plant Physiology and Biochemistry 2010 48 12
  • The gibberellin-induced, cysteine-rich protein GIP2 fromPetunia hybridaexhibitsin plantaantioxidant activity
    Noa Wigoda, Gili Ben-Nissan, David Granot, Amnon Schwartz, David Weiss
    The Plant Journal 2006 48 5
  • Expression of a plant expansin is involved in the establishment of root knot nematode parasitism in tomato
    Tali Z. Gal, Elitsur R. Aussenberg, Saul Burdman, Yoram Kapulnik, Hinanit Koltai
    Planta 2006 224 1
  • EXPANSINA17 Up-Regulated by LBD18/ASL20 Promotes Lateral Root Formation During the Auxin Response
    Han Woo Lee, Jungmook Kim
    Plant and Cell Physiology 2013 54 10
  • Biochemical analysis of expansin-like proteins from microbes
    Nikolaos Georgelis, Nikolas Nikolaidis, Daniel J. Cosgrove
    Carbohydrate Polymers 2014 100
  • Softening in mango (Mangifera indica cv. Dashehari) is correlated with the expression of an early ethylene responsive, ripening related expansin gene, MiExpA1
    Vidhu A. Sane, Amita Chourasia, Pravendra Nath
    Postharvest Biology and Technology 2005 38 3
  • An expansin-like protein from Hahella chejuensis binds cellulose and enhances cellulase activity
    Hee Jin Lee, Saeyoung Lee, Hyeok-jin Ko, Kyoung Heon Kim, In-Geol Choi
    Molecules and Cells 2010 29 4
  • Brassinosteroids control AtEXPA5 gene expression in Arabidopsis thaliana
    Chan Ho Park, Tae-Wuk Kim, Seung-Hyun Son, Jung-Yun Hwang, Sang Cheul Lee, Soo Chul Chang, Soo-Hwan Kim, Si Wouk Kim, Seong-Ki Kim
    Phytochemistry 2010 71 4
  • Overexpression of PhEXPA1 increases cell size, modifies cell wall polymer composition and affects the timing of axillary meristem development in Petunia hybrida
    Sara Zenoni, Marianna Fasoli, Giovanni Battista Tornielli, Silvia Dal Santo, Andrea Sanson, Peter de Groot, Sara Sordo, Sandra Citterio, Francesca Monti, Mario Pezzotti
    New Phytologist 2011 191 3
  • A Cotton BURP Domain Protein Interacts With α-Expansin and Their Co-Expression Promotes Plant Growth and Fruit Production
    Bing Xu, Jin-Ying Gou, Fu-Guang Li, Xiao-Xia Shangguan, Bo Zhao, Chang-Qing Yang, Ling-Jian Wang, Sheng Yuan, Chang-Jun Liu, Xiao-Ya Chen
    Molecular Plant 2013 6 3
  • A fibre-reinforced fluid model of anisotropic plant cell growth
    R. J. DYSON, O. E. JENSEN
    Journal of Fluid Mechanics 2010 655
  • Ectopic expression of Expansin3 or Expansinβ1 causes enhanced hormone and salt stress sensitivity in Arabidopsis
    Ye Rim Kwon, Hee Jin Lee, Kyoung Heon Kim, Suk-Whan Hong, Sung Joon Lee, Hojoung Lee
    Biotechnology Letters 2008 30 7
  • CHEMICAL BIOLOGY OF MULTI-HOST/PATHOGEN INTERACTIONS: Chemical Perception and Metabolic Complementation
    Andrew G. Palmer, Rong Gao, Justin Maresh, W. Kaya Erbil, David G. Lynn
    Annual Review of Phytopathology 2004 42 1
  • Specific expression of an expansin gene during elongation of cotton fibres
    Sharon J. Orford, Jeremy N. Timmis
    Biochimica et Biophysica Acta (BBA) - Gene Structure and Expression 1998 1398 3
  • AtEXP2 Is Involved in Seed Germination and Abiotic Stress Response in Arabidopsis
    An Yan, Minjie Wu, Limei Yan, Rui Hu, Imran Ali, Yinbo Gan, John Schiefelbein
    PLoS ONE 2014 9 1
  • Overexpression of two cambium-abundant Chinese fir (Cunninghamia lanceolata) α-expansin genes ClEXPA1 and ClEXPA2 affect growth and development in transgenic tobacco and increase the amount of cellulose in stem cell walls
    Guifeng Wang, Yan Gao, Jinjun Wang, Liwei Yang, Rentao Song, Xiaorong Li, Jisen Shi
    Plant Biotechnology Journal 2011 9 4
  • Grass group I pollen allergens (β-expansins) lack proteinase activity and do not cause wall loosening via proteolysis
    Lian-Chao Li, Daniel J. Cosgrove
    European Journal of Biochemistry 2001 268 15
  • Genome-wide identification and characterization of maize expansin genes expressed in endosperm
    Wei Zhang, Hanwei Yan, Weijun Chen, Jinyang Liu, Cuiping Jiang, Haiyang Jiang, Suwen Zhu, Beijiu Cheng
    Molecular Genetics and Genomics 2014 289 6
  • Transgenic Tobacco Plants Overexpressing a Grass PpEXP1 Gene Exhibit Enhanced Tolerance to Heat Stress
    Qian Xu, Xiao Xu, Yang Shi, Jichen Xu, Bingru Huang, M. Lucrecia Alvarez
    PLoS ONE 2014 9 7
  • Elena del Campillo
    1999 46
  • Matrix solubilization and cell wall weakening by β-expansin (group-1 allergen) from maize pollen
    Akira Tabuchi, Lian-Chao Li, Daniel J. Cosgrove
    The Plant Journal 2011 68 3
  • Role of (1,3)(1,4)-β-Glucan in Cell Walls: Interaction with Cellulose
    Sarah N. Kiemle, Xiao Zhang, Alan R. Esker, Guillermo Toriz, Paul Gatenholm, Daniel J. Cosgrove
    Biomacromolecules 2014 15 5
  • Cell wall remodeling in Arabidopsis stamen abscission zones
    Coralie C. Lashbrook, Suqin Cai
    Plant Signaling & Behavior 2008 3 9
  • Dynamics of biomass partitioning, stem gene expression, cell wall biosynthesis, and sucrose accumulation during development ofSorghum bicolor
    Brian McKinley, William Rooney, Curtis Wilkerson, John Mullet
    The Plant Journal 2016 88 4
  • Expression of three expansin genes during development and maturation of Kyoho grape berries
    Megumi Ishimaru, David L. Smith, Kenneth C. Gross, Shozo Kobayashi
    Journal of Plant Physiology 2007 164 12
  • Leaf expansion in grasses under salt stress
    Edith Taleisnik, Andrés Alberto Rodríguez, Dolores Bustos, László Erdei, Leandro Ortega, María Eugenia Senn
    Journal of Plant Physiology 2009 166 11
  • Multiple forms of α-expansin genes are expressed during banana fruit ripening and development
    Asha, Vidhu A. Sane, Aniruddha P. Sane, Pravendra Nath
    Postharvest Biology and Technology 2007 45 2
  • Petal abscission in rose (Rosa bourboniana var Gruss an Teplitz) is associated with the enhanced expression of an alpha expansin gene, RbEXPA1
    Aniruddha P. Sane, Siddharth Kaushal Tripathi, Pravendra Nath
    Plant Science 2007 172 3
  • Action of Xyloglucan Hydrolase within the Native Cell Wall Architecture and Its Effect on Cell Wall Extensibility in Azuki Bean Epicotyls
    Tomomi Kaku, Akira Tabuchi, Kazuyuki Wakabayashi, Seiichiro Kamisaka, Takayuki Hoson
    Plant and Cell Physiology 2002 43 1
  • Comparative effects of regulated deficit irrigation (RDI) and partial root-zone drying (PRD) on growth and cell wall peroxidase activity in tomato fruits
    Sladjana Savić, Radmila Stikić, Biljana Vucelić Radović, Biljana Bogičević, Zorica Jovanović, Vesna Hadži-Tašković Šukalović
    Scientia Horticulturae 2008 117 1
  • Down-regulation of theIbEXP1gene enhanced storage root development in sweetpotato
    Seol Ah Noh, Haeng-Soon Lee, Youn-Sung Kim, Kyung-Hee Paek, Jeong Sheop Shin, Jung Myung Bae
    Journal of Experimental Botany 2013 64 1
  • Expression of expansin genes during postharvest lignification and softening of ‘Luoyangqing’ and ‘Baisha’ loquat fruit under different storage conditions
    Shaolan Yang, Chongde Sun, Ping Wang, Lanlan Shan, Chong Cai, Bo Zhang, Wangshu Zhang, Xian Li, Ian Ferguson, Kunsong Chen
    Postharvest Biology and Technology 2008 49 1
  • Microarray analysis and functional tests suggest the involvement of expansins in the early stages of symbiosis of the arbuscular mycorrhizal fungusGlomus intraradiceson tomato (Solanum lycopersicum)
    VLADIMIR DERMATSEV, CARMIYA WEINGARTEN-BAROR, NATHALIE RESNICK, VIJAY GADKAR, SMADAR WININGER, IGOR KOLOTILIN, EINAV MAYZLISH-GATI, AVIA ZILBERSTEIN, HINANIT KOLTAI, YORAM KAPULNIK
    Molecular Plant Pathology 2010 11 1
  • The isolation of wall‐bound proteins regulating yield threshold tension in glycerinated hollow cylinders of cowpea hypocotyl
    A. Okamoto‐Nakazato, T. Nakamura, H. Okamoto
    Plant, Cell & Environment 2000 23 2
  • Binding characteristics of a bacterial expansin (BsEXLX1) for various types of pretreated lignocellulose
    In Jung Kim, Hyeok-Jin Ko, Tae-Wan Kim, Ki Hyun Nam, In-Geol Choi, Kyoung Heon Kim
    Applied Microbiology and Biotechnology 2013 97 12
  • Molecular cloning of yieldins regulating the yield threshold of cowpea cell walls: cDNA cloning and characterization of recombinant yieldin
    A. Okamoto‐Nakazato, K. Takahashi, N. Kido, K. Owaribe, K. Katou
    Plant, Cell & Environment 2000 23 2
  • Evolutionary divergence of β-expansin structure and function in grasses parallels emergence of distinctive primary cell wall traits
    Javier Sampedro, Mara Guttman, Lian-Chao Li, Daniel J. Cosgrove
    The Plant Journal 2015 81 1
  • Expansins: Proteins involved in cell wall softening during plant growth and morphogenesis
    E. I. Sharova
    Russian Journal of Plant Physiology 2007 54 6
  • Overexpression of the Arabidopsis α-expansin gene AtEXPA1 accelerates stomatal opening by decreasing the volumetric elastic modulus
    Xiu-Qing Zhang, Peng-Cheng Wei, Yan-Mei Xiong, Yi Yang, Jia Chen, Xue-Chen Wang
    Plant Cell Reports 2011 30 1
  • Properties of group I allergens from grass pollen and their relation to cathepsin B, a member of the C1 family of cysteine proteinases
    Kay Grobe, Marco Pöppelmann, Wolf-Meinhard Becker, Arnd Petersen
    European Journal of Biochemistry 2002 269 8
  • Relationship between fruit cracking and expression of the expansin gene MdEXPA3 in ‘Fuji’ apples (Malus domestica Borkh.)
    Satoshi Kasai, Hiroko Hayama, Yoshiki Kashimura, Satoshi Kudo, Yoshiaki Osanai
    Scientia Horticulturae 2008 116 2
  • How endogenous plant cell-wall degradation mechanisms can help achieve higher efficiency in saccharification of biomass
    Eveline Q. P. Tavares, Amanda P. De Souza, Marcos S. Buckeridge
    Journal of Experimental Botany 2015 66 14
  • Cotton (Gossypium hirsutum) 14-3-3 proteins participate in regulation of fibre initiation and elongation by modulating brassinosteroid signalling
    Ying Zhou, Ze-Ting Zhang, Mo Li, Xin-Zheng Wei, Xiao-Jie Li, Bing-Ying Li, Xue-Bao Li
    Plant Biotechnology Journal 2015 13 2
  • Role of auxin and gibberellin in citrus canker development and in the transcriptional control of cell-wall remodeling genes modulated by Xanthomonas axonopodis pv. citri
    Raúl Andrés Cernadas, Celso Eduardo Benedetti
    Plant Science 2009 177 3
  • Physiology and molecular mode of action of brassinosteroids
    Carsten Müssig, Thomas Altmann
    Plant Physiology and Biochemistry 1999 37 5
  • Expression of five expansin genes during softening of Fragaria chiloensis fruit: Effect of auxin treatment
    Carlos R. Figueroa, Paula Pimentel, Marcela C. Dotto, Pedro M. Civello, Gustavo A. Martínez, Raúl Herrera, María Alejandra Moya-León
    Postharvest Biology and Technology 2009 53 1-2
  • Microbial Expansins
    Daniel J. Cosgrove
    Annual Review of Microbiology 2017 71 1
  • Ectopic expression of wheat expansin geneTaEXPA2improved the salt tolerance of transgenic tobacco by regulating Na+/K+and antioxidant competence
    Yanhui Chen, Yangyang Han, Xiangzhu Kong, Hanhan Kang, Yuanqing Ren, Wei Wang
    Physiologia Plantarum 2017 159 2
  • Hemicellulose fine structure is affected differently during ripening of tomato lines with contrasted texture
    Marc Lahaye, Bernard Quemener, Mathilde Causse, Graham B. Seymour
    International Journal of Biological Macromolecules 2012 51 4
  • Plant Cell Walls
    David A. Brummell, Mark H. Harpster
    2001
  • Two tomato α-expansins show distinct spatial and temporal expression patterns during development of nematode-induced syncytia
    Sylwia Fudali, Slawomir Janakowski, Miroslaw Sobczak, Michaela Griesser, Florian M. W. Grundler, Wladyslaw Golinowski
    Physiologia Plantarum 2008 132 3
  • Discovery of Glycoside Hydrolase Enzymes in an Avicel-Adapted Forest Soil Fungal Community by a Metatranscriptomic Approach
    Kazuto Takasaki, Takamasa Miura, Manabu Kanno, Hideyuki Tamaki, Satoshi Hanada, Yoichi Kamagata, Nobutada Kimura, Vishal Shah
    PLoS ONE 2013 8 2
  • Expression of ?-expansin genes during root acclimations to O2 deficiency in Rumex palustris
    T. D. Colmer, A. J. M. Peeters, C. A. M. Wagemaker, W. H. Vriezen, A. Ammerlaan, L. A. C. J. Voesenek
    Plant Molecular Biology 2004 56 3
  • Synergism between cucumber α-expansin, fungal endoglucanase and pectin lyase
    Wei Wei, Chun Yang, Jun Luo, Changmei Lu, Yajun Wu, Sheng Yuan
    Journal of Plant Physiology 2010 167 14
  • A synthetic auxin (NAA) suppresses secondary wall cellulose synthesis and enhances elongation in cultured cotton fiber
    Bir Singh, Hannah D. Cheek, Candace H. Haigler
    Plant Cell Reports 2009 28 7
  • Exploring Trichoderma and Aspergillus secretomes: Proteomics approaches for the identification of enzymes of biotechnological interest
    Nicholas de Mojana di Cologna, Diana Paola Gómez-Mendoza, Fabiana Fonseca Zanoelo, Giovana Cristina Giannesi, Nelciele Cavalieri de Alencar Guimarães, Leonora Rios de Souza Moreira, Edivaldo Ximenes Ferreira Filho, Carlos André Ornelas Ricart
    Enzyme and Microbial Technology 2018 109
  • Identification of novel bacterial expansins and their synergistic actions on cellulose degradation
    Benjarat Bunterngsook, Wuttichai Mhuantong, Verawat Champreda, Arinthip Thamchaipenet, Lily Eurwilaichitr
    Bioresource Technology 2014 159
  • Stem Elongation and Cell Wall Proteins in Flowering Plants
    U. Kutschera
    Plant Biology 2001 3 5
  • The gladiolus GgEXPA1 is a GA-responsive alpha-expansin gene expressed ubiquitously during expansion of all floral tissues and leaves but repressed during organ senescence
    Abdul Azeez, Aniruddha P. Sane, Siddharth Kaushal Tripathi, D. Bhatnagar, Pravendra Nath
    Postharvest Biology and Technology 2010 58 1
  • Desiccation-tolerant plants in dry environments
    T.-N. Le, S. J. McQueen-Mason
    Reviews in Environmental Science and Bio/Technology 2006 5 2-3
  • EXPANSIN A1-mediated radial swelling of pericycle cells positions anticlinal cell divisions during lateral root initiation
    Priya Ramakrishna, Paola Ruiz Duarte, Graham A. Rance, Martin Schubert, Vera Vordermaier, Lam Dai Vu, Evan Murphy, Amaya Vilches Barro, Kamal Swarup, Kamaljit Moirangthem, Bodil Jørgensen, Brigitte van de Cotte, Tatsuaki Goh, Zhefeng Lin, Ute Voβ, Tom Beeckman, Malcolm J. Bennett, Kris Gevaert, Alexis Maizel, Ive De Smet
    Proceedings of the National Academy of Sciences 2019 116 17
  • Expanisns
    Mark W. Shieh, Daniel J. Cosgrove
    Journal of Plant Research 1998 111 1
  • Expansins in Plant Growth and Development: an Update on an Emerging Topic
    S. J. McQueen-Mason, F. Rochange
    Plant Biology 1999 1 1
  • Expression of multiple expansin genes is associated with cell expansion in potato organs
    Jieun Jung, Erin M. O’Donoghue, Paul P. Dijkwel, David A. Brummell
    Plant Science 2010 179 1-2
  • Overexpression of sweetpotato expansin cDNA (IbEXP1) increases seed yield in Arabidopsis
    Jung Myung Bae, Man Sup Kwak, Seol Ah Noh, Mi-Joung Oh, Youn-Sung Kim, Jeong Sheop Shin
    Transgenic Research 2014 23 4
  • Polymer mobility in cell walls of cucumber hypocotyls
    K.M Fenwick, D.C Apperley, D.J Cosgrove, M.C Jarvis
    Phytochemistry 1999 51 1
  • Cellular Aspects of Wood Formation
    Jörg Fromm
    2013 20
  • Characterization of soybean β-expansin genes and their expression responses to symbiosis, nutrient deficiency, and hormone treatment
    Xinxin Li, Jing Zhao, Thomas C. Walk, Hong Liao
    Applied Microbiology and Biotechnology 2014 98 6
  • Overexpression of the carbohydrate binding module of strawberry expansin2 in Arabidopsis thaliana modifies plant growth and cell wall metabolism
    Cristina F. Nardi, Natalia M. Villarreal, Franco R. Rossi, Santiago Martínez, Gustavo A. Martínez, Pedro M. Civello
    Plant Molecular Biology 2015 88 1-2
  • Plant Desiccation Tolerance
    Dorothea Bartels, Syed Sarfraz Hussain
    2011 215
  • Creeping walls, softening fruit, and penetrating pollen tubes: The growing roles of expansins
    D. J. Cosgrove
    Proceedings of the National Academy of Sciences 1997 94 11
  • Incorporating Advances in Plant Pathology
    Dongsu Choi, Jeong Hoe Kim, Yi Lee
    2008 47
  • pH and expansin action on single suspension-cultured tomato (Lycopersicon esculentum) cells
    C. X. Wang, L. Wang, S. J. McQueen-Mason, J. Pritchard, C. R. Thomas
    Journal of Plant Research 2008 121 5
  • Hydroxyproline O ‐arabinosyltransferase mutants oppositely alter tip growth in Arabidopsis thaliana and Physcomitrella patens
    Cora A. MacAlister, Carlos Ortiz‐Ramírez, Jörg D. Becker, José A. Feijó, Zachary B. Lippman
    The Plant Journal 2016 85 2
  • Differential gene expression in shoots and roots under heat stress for a geothermal and non-thermal Agrostis grass species contrasting in heat tolerance
    Jichen Xu, Faith Belanger, Bingru Huang
    Environmental and Experimental Botany 2008 63 1-3
  • Stipe wall extension of Flammulina velutipes could be induced by an expansin-like protein from Helix aspersa
    Hejian Fang, Wenming Zhang, Xin Niu, Zhonghua Liu, Changmei Lu, Hua Wei, Sheng Yuan
    Fungal Biology 2014 118 1
  • Evaluation of Bacterial Expansin EXLX1 as a Cellulase Synergist for the Saccharification of Lignocellulosic Agro-Industrial Wastes
    Hui Lin, Qi Shen, Ju-Mei Zhan, Qun Wang, Yu-Hua Zhao, Nikolas Nikolaidis
    PLoS ONE 2013 8 9
  • Molecular dynamics of the Bacillus subtilis expansin EXLX1: interaction with substrates and structural basis of the lack of activity of mutants
    Rodrigo L. Silveira, Munir S. Skaf
    Physical Chemistry Chemical Physics 2016 18 5
  • Slow softening of Kanzi apples (Malus×domestica L.) is associated with preservation of pectin integrity in middle lamella
    Sunny George Gwanpua, Bert E. Verlinden, Maarten L.A.T.M. Hertog, Bart M. Nicolai, Marc Hendrickx, Annemie Geeraerd
    Food Chemistry 2016 211
  • The carbohydrate-binding module of Fragaria × ananassa expansin 2 (CBM-FaExp2) binds to cell wall polysaccharides and decreases cell wall enzyme activities “in vitro”
    Cristina Nardi, Cristian Escudero, Natalia Villarreal, Gustavo Martínez, Pedro Marcos Civello
    Journal of Plant Research 2013 126 1
  • Brassinolides and IAA induce the transcription of four α-expansin genes related to development in Cicer arietinum
    Ma Angeles Sánchez, Isabel Mateos, Emilia Labrador, Berta Dopico
    Plant Physiology and Biochemistry 2004 42 9
  • Enzyme-Less Growth in Chara and Terrestrial Plants
    John S. Boyer
    Frontiers in Plant Science 2016 7
  • Growth retardation and differential regulation of expansin genes in chilling-stressed sweetpotato
    Seol Ah Noh, Sun Hee Park, Gyung Hye Huh, Kyung-Hee Paek, Jeong Sheop Shin, Jung Myung Bae
    Plant Biotechnology Reports 2009 3 1
  • Over-expression of AtEXLA2 alters etiolated arabidopsis hypocotyl growth
    Agnieszka Karolina Boron, Bram Van Loock, Dmitry Suslov, Marios Nektarios Markakis, Jean-Pierre Verbelen, Kris Vissenberg
    Annals of Botany 2015 115 1
  • Pollination drops as dynamic apoplastic secretions
    Andrea Coulter, Brett A.D. Poulis, Patrick von Aderkas
    Flora - Morphology, Distribution, Functional Ecology of Plants 2012 207 7
  • The Plant Cell Wall
    Daniel J. Cosgrove
    2011 715
  • Transcriptional analysis of differentially expressed genes in response to stem inclination in young seedlings of pine
    P. Ramos, G. Le Provost, C. Gantz, C. Plomion, R. Herrera
    Plant Biology 2012 14 6
  • Distribution of XTH, expansin, and secondary-wall-related CesA in floral and fruit abscission zones during fruit development in tomato (Solanum lycopersicum)
    Mutsumi Tsuchiya, Shinobu Satoh, Hiroaki Iwai
    Frontiers in Plant Science 2015 6
  • Effect of N deficiency on leaf growth and cell wall peroxidase activity in contrasting maize genotypes
    Z. Jovanovic, T. Djakovic, R. Stikic, Lj. Prokic, V. Hadzi-Taskovic Sukalovic
    Plant and Soil 2004 265 1-2
  • Expression patterns of three α-expansin isoforms in Coffea arabica during fruit development
    I. G. F. Budzinski, T. B. Santos, T. Sera, D. Pot, L. G. E. Vieira, L. F. P. Pereira
    Plant Biology 2011 13 3
  • Fertilization in Higher Plants
    A. Geitmann
    1999
  • How do expansins control plant growth? A model for cell wall loosening via defect migration in cellulose microfibrils
    Andrei Lipchinsky
    Acta Physiologiae Plantarum 2013 35 12
  • Plant development: pulled up by the roots
    Liam Dolan, Keith Roberts
    Current Opinion in Genetics & Development 1995 5 4
  • Impact of acidic pH on plant cell wall polysaccharide structure and dynamics: insights into the mechanism of acid growth in plants from solid-state NMR
    Pyae Phyo, Ying Gu, Mei Hong
    Cellulose 2019 26 1
  • Modified MERI5 expression alters cell expansion in transgenic Arabidopsis plants
    Joseph A. Verica, June I. Medford
    Plant Science 1997 125 2
  • Tobacco alpha-expansin EXPA4 plays a role in Nicotiana benthamiana defence against Tobacco mosaic virus
    Li-Juan Chen, Wen-Shan Zou, Guo Wu, Hong-Hui Lin, De-Hui Xi
    Planta 2018 247 2
  • Transcriptional profiling of cell wall protein genes in chickpea embryonic axes during germination and growth
    J. Hernández-Nistal, E. Labrador, I. Martín, T. Jiménez, B. Dopico
    Plant Physiology and Biochemistry 2006 44 11-12
  • Changes in growth and cell wall extensibility of maize silks following pollination
    N. U. Sella Kapu, D. J. Cosgrove
    Journal of Experimental Botany 2010 61 14
  • Differential expression and regulation of longan XET genes in relation to fruit growth
    Hai-ling Feng, Yu-xiong Zhong, Hui Xie, Jian-ye Chen, Jiang-guo Li, Wang-jin Lu
    Plant Science 2008 174 1
  • Differential response of cell-cycle and cell-expansion regulators to heat stress in apple ( Malus domestica ) fruitlets
    Moshe A. Flaishman, Yuval Peles, Yardena Dahan, Shira Milo-Cochavi, Aviad Frieman, Amos Naor
    Plant Science 2015 233
  • Grape expansins, VvEXPA14 and VvEXPA18 promote cell expansion in transgenic Arabidopsis plant
    Hikaru Suzuki, Eri Oshita, Nozomi Fujimori, Yuko Nakajima, Yumi Kawagoe, Shunji Suzuki
    Plant Cell, Tissue and Organ Culture (PCTOC) 2015 120 3
  • Regulation of stomatal opening by the guard cell expansinAtEXPA1
    Peng-Cheng Wei, Xiu-Qing Zhang, Ping Zhao, Xue-Chen Wang
    Plant Signaling & Behavior 2011 6 5
  • Two expansins, EXP1 and EXPB2, are correlated with the growth and development of maize roots
    Min -Jeong Kam, Hye Sup Yun, Peter B. Kaufman, Soo Chul Chang, Seon g-Ki Kim
    Journal of Plant Biology 2005 48 3
  • Understanding the structure and function of bacterial expansins: a prerequisite towards practical applications for the bioenergy and agricultural industries
    Claudia Martinez‐Anaya
    Microbial Biotechnology 2016 9 6
  • Growth and biomechanics of shoot organs
    Emilie Echevin, Constance Le Gloanec, Nikolina Skowrońska, Anne-Lise Routier-Kierzkowska, Agata Burian, Daniel Kierzkowski
    Journal of Experimental Botany 2019 70 14
  • Growth behaviour of rice coleoptiles
    Y. Masuda, S. Kamisaka, T. Hoson
    Journal of Plant Physiology 1998 152 2-3
  • PRGL: A cell wall proline-rich protein containning GASA domain in Gerbera hybrida
    JianZong Peng, LiuJing Lai, XiaoJing Wang
    Science in China Series C: Life Sciences 2008 51 6
  • Proteomics analysis reveals differentially activated pathways that operate in peanut gynophores at different developmental stages
    Chuanzhi Zhao, Shuzhen Zhao, Lei Hou, Han Xia, Jiangshan Wang, Changsheng Li, Aiqin Li, Tingting Li, Xinyou Zhang, Xingjun Wang
    BMC Plant Biology 2015 15 1
  • The dual effects of ethylene on the negative gravicurvature of arabidopsis inflorescence, an intriguing action model for the plant hormone ethylene
    Bingwen Lu, Lai Kwan Pei, Wai-Kin Chan, Hong Zhang, Guang Zhu, Jiayang Li, Ning Li
    Chinese Science Bulletin 2001 46 4
  • Cloning, characterization, and expression of the BjEXPA1 gene and its promoter region from Brassica juncea L.
    Tao Sun, Yuxiu Zhang, Tuanyao Chai
    Plant Growth Regulation 2011 64 1
  • Examination of expansin genes as related to apple fruit crispness
    Diana I. Trujillo, Harpartap S. Mann, Cindy B. S. Tong
    Tree Genetics & Genomes 2012 8 1
  • Growth, Differentiation and Sexuality
    Jordi F. Pelkmans, Luis G. Lugones, Han A. B. Wösten
    2016
  • Regulation of cell wall remodeling in grapevine (Vitis vinifera L.) callus under individual mineral stress deficiency
    João C. Fernandes, Luis F. Goulao, Sara Amâncio
    Journal of Plant Physiology 2016 190
  • Solutions for a local equation of anisotropic plant cell growth: an analytical study of expansin activity
    Mariusz Pietruszka
    Journal of The Royal Society Interface 2011 8 60
  • An α-expansin, VfEXPA1, is involved in regulation of stomatal movement in Vicia faba L.
    PengCheng Wei, Su Chen, XiuQing Zhang, Ping Zhao, YanMei Xiong, WenLong Wang, Jia Chen, XueChen Wang
    Chinese Science Bulletin 2011 56 33
  • Expansin gene expression in Datura ferox L. seeds is regulated by the low-fluence response, but not by the high-irradiance response, of phytochromes
    R. Alejandra Mella, Maria José Burgin, Rodolfo A. Sánchez
    Seed Science Research 2004 14 1
  • Expansins: expanding importance in plant growth and development
    Dongsu Choi, Hyung-Taeg Cho, Yi Lee
    Physiologia Plantarum 2006
  • Global Transcriptome Profiling Analysis of Inhibitory Effects of Paclobutrazol on Leaf Growth in Lily (Lilium Longiflorum-Asiatic Hybrid)
    Xiaopei Zhu, Min Chai, Yang Li, Meiyu Sun, Jinzheng Zhang, Guofeng Sun, Chuangdao Jiang, Lei Shi
    Frontiers in Plant Science 2016 7
  • Unlocking the mysteries of leaf primordia formation
    R. E. Cleland
    Proceedings of the National Academy of Sciences 2001 98 20
  • Decrease in Fruit Moisture Content Heralds and Might Launch the Onset of Ripening Processes
    Chaim Frenkel, Thomas G. Hartman
    Journal of Food Science 2012 77 10
  • Heterogenous expression of Pyrus pyrifolia PpCAD2 and PpEXP2 in tobacco impacts lignin accumulation in transgenic plants
    Yuling Wang, Xinfu Zhang, Shaolan Yang, Caihong Wang, Guilong Lu, Ran Wang, Yingjie Yang, Dingli Li
    Gene 2017 637
  • Morphological and Physiological Responses of Sugarcane to Leifsonia xyli subsp. xyli Infection
    Xiaoqiu Zhang, Minghui Chen, Yongjian Liang, Yongxiu Xing, Litao Yang, Minghui Chen, Jack C. Comstock, Yangrui Li, Litao Yang
    Plant Disease 2016 100 12
  • The impact of long-term water stress on relative growth rate and morphology of needles and shoots of Metasequoia glyptostroboides seedlings: research toward identifying mechanistic models
    Yanxiang Zhang, Maria Alejandra Equiza, Quanshui Zheng, Melvin T. Tyree
    Physiologia Plantarum 2011 143 1
  • Chitinases Play a Key Role in Stipe Cell Wall Extension in the Mushroom Coprinopsis cinerea
    Jiangsheng Zhou, Liqin Kang, Cuicui Liu, Xin Niu, Xiaojun Wang, Hailong Liu, Wenming Zhang, Zhonghua Liu, Jean-Paul Latgé, Sheng Yuan, Marie A. Elliot
    Applied and Environmental Microbiology 2019 85 15
  • Histological and cell wall polysaccharide chemical variability among apricot varieties
    Marc Lahaye, Xavier Falourd, Bernard Quemener, Marie-Françoise Devaux, Jean-Marc Audergon
    LWT - Food Science and Technology 2014 58 2
  • Influence of plant growth regulators on Expansin2 expression in strawberry fruit. Cloning and functional analysis of FaEXP2 promoter region
    C.F. Nardi, N.M. Villarreal, M.C. Dotto, M.T. Ariza, J.G. Vallarino, G.A. Martínez, V. Valpuesta, P.M. Civello
    Postharvest Biology and Technology 2016 114
  • Oxidized Cellulose Binding to Allergens with a Carbohydrate-Binding Module Attenuates Allergic Reactions
    Nir Shani, Ziv Shani, Oded Shoseyov, Rufayda Mruwat, David Shoseyov
    The Journal of Immunology 2011 186 2
  • Progress in Botany
    Ulrich Schurr
    1998 59
  • A comprehensive expression analysis of the expansin gene family in potato (Solanum tuberosum) discloses stress-responsive expansin-like B genes for drought and heat tolerances
    Yongkun Chen, Bo Zhang, Canhui Li, Chunxia Lei, Chunyan Kong, Yu Yang, Ming Gong, Dorin Gupta
    PLOS ONE 2019 14 7
  • Comparative in silico study of the differences in the structure and ligand interaction properties of three alpha-expansin proteins from Fragaria chiloensis fruit
    Felipe Valenzuela-Riffo, Carlos Gaete-Eastman, Yazmina Stappung, Rodrigo Lizana, Raúl Herrera, María Alejandra Moya-León, Luis Morales-Quintana
    Journal of Biomolecular Structure and Dynamics 2019 37 12
  • Ethylene negatively regulates EXPA5 expression in Arabidopsis thaliana
    Seung-Hyun Son, Soo Chul Chang, Chan Ho Park, Seong-Ki Kim
    Physiologia Plantarum 2012 144 3
  • Identification and Characterization of Expansins from Bursaphelenchus xylophilus (Nematoda: Aphelenchoididae)
    Dae-Weon Lee, Jong Bok Seo, Jae Soon Kang, Sang-Hyun Koh, Si-Hyeock Lee, Young Ho Koh
    The Plant Pathology Journal 2012 28 4
  • Implications of expansin-like 3 gene in Dictyostelium morphogenesis
    Takefumi Kawata, Yuri Nakamura, Yukika Saga, Yumi Iwade, Megumi Ishikawa, Aya Sakurai, Nao Shimada
    SpringerPlus 2015 4 1
  • Osmiophilic Particles at the Plasma Membrane - what Role do they play in Extension Growth?
    D. G. Robinson
    Botanica Acta 1996 109 2
  • Plant cell wall sugars: sweeteners for a bio-based economy
    Dorien Van de Wouwer, Wout Boerjan, Bartel Vanholme
    Physiologia Plantarum 2018 164 1
  • Repression of OsEXPA3 Expression Leads to Root System Growth Suppression in Rice
    Shichun Qiu, Nana Ma, Shugang Che, Ying Wang, Xiaoyan Peng, Guopeng Zhang, Guixue Wang, Junli Huang
    Crop Science 2014 54 5
  • A Cell Wall Proteome and Targeted Cell Wall Analyses Provide Novel Information on Hemicellulose Metabolism in Flax
    Malika Chabi, Estelle Goulas, Celine C. Leclercq, Isabelle de Waele, Christophe Rihouey, Ugo Cenci, Arnaud Day, Anne-Sophie Blervacq, Godfrey Neutelings, Ludovic Duponchel, Patrice Lerouge, Jean-François Hausman, Jenny Renaut, Simon Hawkins
    Molecular & Cellular Proteomics 2017 16 9
  • A comparative cell wall proteomic analysis of cucumber leaves under Sphaerotheca fuliginea stress
    Xiangnan Meng, Tiefeng Song, Haiyan Fan, Yang Yu, Na Cui, Juyong Zhao, Kexin Meng
    Acta Physiologiae Plantarum 2016 38 11
  • Analysis of the Binding of Expansin Exl1, from Pectobacterium carotovorum, to Plant Xylem and Comparison to EXLX1 from Bacillus subtilis
    Omar E. Tovar-Herrera, Mabel Rodríguez, Miguel Olarte-Lozano, Jimmy Andrés Sampedro-Guerrero, Adán Guerrero, Raúl Pinto-Cámara, Xóchitl Alvarado-Affantranger, Christopher D. Wood, Jose M. Moran-Mirabal, Nina Pastor, Lorenzo Segovia, Claudia Martínez-Anaya
    ACS Omega 2018 3 6
  • Cloning and characterization of an expansin gene, RiEXP1, and a 1-aminocyclopropane-1-carboxylic acid synthase gene, RiACS1 in ripening fruit of raspberry (Rubus idaeus L.)
    Desen Zheng, Geza Hrazdina
    Plant Science 2010 179 1-2
  • Computational study of FaEXPA1, a strawberry alpha expansin protein, through molecular modeling and molecular dynamics simulation studies
    Felipe Valenzuela-Riffo, Patricio Ramos, Luis Morales-Quintana
    Computational Biology and Chemistry 2018 76
  • Ectopic expression of a wood-abundant expansin PttEXPA1 promotes cell expansion in primary and secondary tissues in aspen
    Madoka Gray-Mitsumune, Kristina Blomquist, Simon McQueen-Mason, Tuula T. Teeri, Björn Sundberg, Ewa J. Mellerowicz
    Plant Biotechnology Journal 2007
  • Overexpression of the carbohydrate binding module from Solanum lycopersicum expansin 1 ( Sl-EXP1 ) modifies tomato fruit firmness and Botrytis cinerea susceptibility
    M.A. Perini, I.N. Sin, N.M. Villarreal, M. Marina, A.L.T. Powell, G.A. Martínez, P.M. Civello
    Plant Physiology and Biochemistry 2017 113
  • Progress in Botany
    Rainer Lösch
    1999 60
  • Structure, computational and biochemical analysis of PcCel45A endoglucanase from Phanerochaete chrysosporium and catalytic mechanisms of GH45 subfamily C members
    Andre S. Godoy, Caroline S. Pereira, Marina Paglione Ramia, Rodrigo L. Silveira, Cesar M. Camilo, Marco A. Kadowaki, Lene Lange, Peter K. Busk, Alessandro S. Nascimento, Munir S. Skaf, Igor Polikarpov
    Scientific Reports 2018 8 1
  • The Expanding Cell
    Ingo Burgert, Peter Fratzl
    2007 6
  • Transcriptional and computational study of expansins differentially expressed in response to inclination in radiata pine
    Patricio Mateluna, Felipe Valenzuela-Riffo, Luis Morales-Quintana, Raúl Herrera, Patricio Ramos
    Plant Physiology and Biochemistry 2017 115
  • Transcriptome analysis reveals potential mechanisms for different grain size between natural and resynthesized allohexaploid wheats with near-identical AABB genomes
    Lei Yan, Zhenshan Liu, Huanwen Xu, Xiaoping Zhang, Aiju Zhao, Fei Liang, Mingming Xin, Huiru Peng, Yingyin Yao, Qixin Sun, Zhongfu Ni
    BMC Plant Biology 2018 18 1
  • Annual Plant Reviews online
    Jocelyn K.C. Rose, Carmen Catalá, Zinnia H. Gonzalez-Carranza, Jeremy A. Roberts
    2018
  • Botrytis – the Fungus, the Pathogen and its Management in Agricultural Systems
    Barbara Blanco-Ulate, John M. Labavitch, Estefania Vincenti, Ann L. T. Powell, Dario Cantu
    2016
  • Integration of Bacterial Expansin on Agarolytic Complexes to Enhance the Degrading Activity of Red Algae by Control of Gelling Properties
    Da Woon Jeong, Jeong Eun Hyeon, Young-Chul Joo, Sang Kyu Shin, Sung Ok Han
    Marine Biotechnology 2018 20 1
  • Plasma Membrane Redox Systems and their Role in Biological Stress and Disease
    José A. González-Reyes, Francisco Córdoba, Plácido Navas
    1998
  • Pollen Tip Growth
    Sébastjen Schoenaers, Daria Balcerowicz, Kris Vissenberg
    2017
  • TaEXPB7-B, a β-expansin gene involved in low-temperature stress and abscisic acid responses, promotes growth and cold resistance in Arabidopsis thaliana
    Xu Feng, Yongqing Xu, Lina Peng, Xingyu Yu, Qiaoqin Zhao, Shanshan Feng, Ziyi Zhao, Fenglan Li, Baozhong Hu
    Journal of Plant Physiology 2019 240
  • Aspects of cell wall extensibility in Ceratonia siliqua L.
    Sophia Rhizopoulou
    Flora - Morphology, Distribution, Functional Ecology of Plants 2004 199 4
  • Expression patterns of two Arabidopsis endo-β-1,4-glucanase genes (At3g43860, At4g39000) in reproductive development
    Xiao-Jun Xie, Jun-Jun Huang, Huan-Huan Gao, Guang-Qin Guo
    Molecular Biology 2011 45 3
  • Measurement of expansin activity and plant cell wall creep by using a commercial texture analyzer
    Mauro A. Perini, Ignacio N. Sin, Gustavo Adolfo Martinez, Pedro M. Civello
    Electronic Journal of Biotechnology 2017 26
  • Molecular Microbial Ecology of the Rhizosphere
    Mandira Kochar, A Vaishnavi, Anamika Upadhyay, Sheela Srivastava
    2013
  • Morphological and transcriptional responses ofLycopersicon esculentumto hexavalent chromium in agricultural soil
    Shi-Guo Li, Jing Hou, Xin-Hui Liu, Bao-Shan Cui, Jun-Hong Bai
    Environmental Toxicology and Chemistry 2016 35 7
  • Narrow leaf 1 (NAL1) regulates leaf shape by affecting cell expansion in rice (Oryza sativa L.)
    Lihao Lin, Yunfeng Zhao, Fang Liu, Qian Chen, Juncang Qi
    Biochemical and Biophysical Research Communications 2019 516 3
  • Over-expression of the cucumber expansin gene (Cs-EXPA1) in transgenic maize seed for cellulose deconstruction
    Sangwoong Yoon, Shivakumar P. Devaiah, Seo-eun Choi, Jeff Bray, Robert Love, Jeffrey Lane, Carol Drees, John H. Howard, Elizabeth E. Hood
    Transgenic Research 2016 25 2
  • Plant Cell Walls
    Catherine P. Darley, Andrew M. Forrester, Simon J. McQueen-Mason
    2001
  • Plant Developmental Biology - Biotechnological Perspectives
    H. Ezura, K. Hiwasa-Tanase
    2010
  • Plant-symbiont interactions: the functional role of expansins
    Sudipta Kumar Mohanty, Manoj-Kumar Arthikala, Kalpana Nanjareddy, Miguel Lara
    Symbiosis 2018 74 1
  • Root Hairs
    E. Nielsen
    2009 12
  • Root Hairs
    E. Nielsen
    2009 12
  • The Expression of Potato Expansin A3 (StEXPA3) and Extensin4 (StEXT4) Genes with Distribution of StEXPAs and HRGPs-Extensin Changes as an Effect of Cell Wall Rebuilding in Two Types of PVYNTN–Solanum tuberosum Interactions
    Katarzyna Otulak-Kozieł, Edmund Kozieł, Benham E. L. Lockhart, Józef J. Bujarski
    Viruses 2020 12 1
  • Catherine A Kidner, Marja C.P Timmermans, Mary E Byrne, Robert A Martienssen
    2002 38
  • Astrobiology
    Heide Schnabl
    2002
  • Biology and Biotechnology of the Plant Hormone Ethylene
    J. K. C. Rose, C. Catala, D. A. Brummell, C. C. Lashbrook, C. Gonzalez-Bosch, A. B. Bennett
    1997
  • Cellular and Molecular Biology of Filamentous Fungi
    Christian P. Kubicek, Verena Seidl, Bernhard Seiboth
    2014
  • Concepts in Cell Biology - History and Evolution
    Alexis Peaucelle
    2018 23
  • Conserved Transcriptional Regulatory Programs Underlying Rice and Barley Germination
    Li Lin, Shulan Tian, Shawn Kaeppler, Zongrang Liu, Yong-Qiang (Charles) An, Norman Johnson
    PLoS ONE 2014 9 2
  • Deep sequencing revealed molecular signature of horizontal gene transfer of plant like transcripts in the mosquito Anopheles culicifacies: an evolutionary puzzle
    Punita Sharma, Tanwee Das De, Swati Sharma, Ashwani Kumar Mishra, Tina Thomas, Sonia Verma, Vandana Kumari, Suman Lata, Namita Singh, Neena Valecha, Kailash Chand Pandey, Rajnikant Dixit
    F1000Research 2015 4
  • Differential protein expression reveals salt tolerance mechanisms of Desmostachya bipinnata at moderate and high levels of salinity
    Hina Asrar, Tabassum Hussain, Bilquees Gul, M. Ajmal Khan, Brent L. Nielsen
    Functional Plant Biology 2018 45 8
  • In silicoidentification, phylogeny and expression analysis of expansin superfamily inMedicago truncatula
    Ying Liu, Jun Zhang, Wei Li, Changhong Guo, Yongjun Shu
    Biotechnology & Biotechnological Equipment 2016 30 1
  • Plant Biotechnology and In Vitro Biology in the 21st Century
    Ziv Shani, Mara Dekel, Galit Tsabary, Christian Sig Jensen, Tzvi Tzfira, Raphael Goren, Arie Altman, Oded Shoseyov
    1999 36
  • Quantification of tomato expansins in nematode feeding sites of cyst and root-knot nematodes
    M. Griesser, F. M. W. Grundler
    Journal of Plant Diseases and Protection 2008 115 6
  • Role of xyloglucan in gravitropic bending of azuki bean epicotyl
    Toshimitsu Ikushima, Kouichi Soga, Takayuki Hoson, Teruo Shimmen
    Physiologia Plantarum 2008 132 4
  • Texture in Food
    G. Tucker
    2004
  • The Kiwifruit Genome
    Ross G. Atkinson, Roswitha Schröder
    2016
  • Transcriptome profiling reveals phase-specific gene expression in the developing barley inflorescence
    Huiran Liu, Gang Li, Xiujuan Yang, Hendrik N.J. Kuijer, Wanqi Liang, Dabing Zhang
    The Crop Journal 2020 8 1
  • Directed in vitro evolution of bacterial expansin BsEXLX1 for higher cellulose binding and its consequences for plant cell wall‐loosening activities
    Nathan K. Hepler, Daniel J. Cosgrove
    FEBS Letters 2019 593 18
  • Exogenous fibrolytic enzymes and recombinant bacterial expansins synergistically improve hydrolysis and in vitro digestibility of bermudagrass haylage
    A.A. Pech-Cervantes, I. Muhammad, I.M. Ogunade, Y. Jiang, D.H. Kim, C.F. Gonzalez, T.J. Hackmann, A.S. Oliveira, D. Vyas, A.T. Adesogan
    Journal of Dairy Science 2019 102 9
  • FORCE-ing the shape
    Peter Grones, Sara Raggi, Stéphanie Robert
    Current Opinion in Plant Biology 2019 52
  • Failure to over-express expansin in multiple heterologous systems
    Jessica P. Yactayo-Chang, Sangwoong Yoon, Keat Thomas Teoh, Nathan C. Hood, Argelia Lorence, Elizabeth E. Hood
    New Negatives in Plant Science 2016 3-4
  • Influence of 1-MCP on texture, related enzymes, quality and their relative gene expression in ‘Amrapali’ mango (Mangifera indica L.) fruits
    S. V. R. Reddy, R. R. Sharma, S. Barthakur
    Journal of Food Science and Technology 2017 54 12
  • Model and Molecular Dynamic Simulations of Active and Inactive Endo-β-1,4-Mannanase in Tomato Fruit
    Jiahuang Li, J. Derek Bewley, Zichun Hua, Weijuan Zheng, Aoxue Wang
    The Protein Journal 2008 27 6
  • Regulation of α-expansins genes in Arabidopsis thaliana seeds during post-osmopriming germination
    Alessandra Ferreira Ribas, Nathalia Volpi e Silva, Tiago Benedito dos Santos, Fabiana Lima Abrantes, Ceci Castilho Custódio, Nelson Barbosa Machado-Neto, Luiz Gonzaga Esteves Vieira
    Physiology and Molecular Biology of Plants 2019 25 2
  • The EST Analysis of A Suppressive Subtraction cDNA Library of Chinese Wild Vitis pseudoreticulata Inoculated with Uncinula necator
    Jiang-li SHI, Yue-jin WANG, Zi-guo ZHU, Chao-hong ZHANG
    Agricultural Sciences in China 2010 9 2
  • The hydrolysis mechanism of a GH45 cellulase and its potential relation to lytic transglycosylase and expansin function
    Vivek S. Bharadwaj, Brandon C. Knott, Jerry Ståhlberg, Gregg T. Beckham, Michael F. Crowley
    Journal of Biological Chemistry 2020 295 14
  • Annual Plant Reviews online
    Aaron H. Liepman, David M. Cavalier, Olivier Lerouxel, Kenneth Keegstra
    2018
  • Annual Plant Reviews online
    Daniel J. Cosgrove
    2018
  • Ascorbic Acid in Plant Growth, Development and Stress Tolerance
    Yi Xu, Bingru Huang
    2017
  • Basic and Applied Aspects of Seed Biology
    O. V. Antipova
    1997 30
  • Environmental and Microbial Relationships
    Jonas Ramoni, Bernhard Seiboth
    2016
  • Expansin Genes Expressed Differentially in Peduncle Elongation of Near-Isogenic Wheat Rht Lines
    Jia-li WANG, Dong-cheng LIU, Xiao-li GUO, Wen-long YANG, Ai-min ZHANG
    Journal of Integrative Agriculture 2014 13 10
  • Genes and plant cell walls: a difficult relationship
    PRZEMYSŁAW WOJTASZEK
    Biological Reviews 2007 75 3
  • How the Depletion in Mineral Major Elements Affects Grapevine (Vitis vinifera L.) Primary Cell Wall
    Luís F. Goulao, João C. Fernandes, Sara Amâncio
    Frontiers in Plant Science 2017 8
  • Life in Extreme Environments
    T.-N. Le, S. J. McQueen-Mason
    2007
  • Molecular and structural insights into FaEXPA5, an alpha-expansin protein related with cell wall disassembly during ripening of strawberry fruit
    Felipe Valenzuela-Riffo, Carolina Parra-Palma, Patricio Ramos, Luis Morales-Quintana
    Plant Physiology and Biochemistry 2020 154
  • Non-enzymatic action of expansins
    Daniel J. Cosgrove
    Journal of Biological Chemistry 2020 295 19
  • Physiology of Cotton
    Carolyn Zieher
    2010
  • Physiology of Woody Plants
    2008
  • Reserve Mobilization, Membrane Damage and Solutes Leakage in Fenugreek Imbibed with Urban Treated Wastewater
    Takwa Missaoui, Moêz Smiri, Amor Hafiane
    Bulletin of Environmental Contamination and Toxicology 2019 103 3
  • Study of the structure and binding site features of FaEXPA2, an α-expansin protein involved in strawberry fruit softening
    Felipe Valenzuela-Riffo, Luis Morales-Quintana
    Computational Biology and Chemistry 2020 87
  • Synchronous Transcription of Cytoskeleton-Associated Genes is Critical to Cotton Fiber Elongation
    Dhananjay K. Pandey, Bhupendra Chaudhary
    Journal of Plant Growth Regulation 2019 38 3
  • Transcriptome analysis of table grapes (Vitis vinifera L.) identified a gene network module associated with berry firmness
    Li Ma, Lingjun Sun, Yinshan Guo, Hong Lin, Zhendong Liu, Kun Li, Xiuwu Guo, Panagiotis Kalaitzis
    PLOS ONE 2020 15 8
  • Zwitterionic Polypeptides: Chemoenzymatic Synthesis and Loosening Function for Cellulose Crystals
    Kousuke Tsuchiya, Neval Yilmaz, Takaaki Miyamoto, Hiroyasu Masunaga, Keiji Numata
    Biomacromolecules 2020 21 5
  • Annual Plant Reviews online
    Grace K. Dolan, Gleb E. Yakubov, Jason R. Stokes
    2018
  • Annual Plant Reviews online
    James J. Giovannoni
    2018
  • Annual Plant Reviews online
    Catherine Martel, James Giovannoni
    2018
  • Comparative Transcriptomic Analysis of the Development of Sepal Morphology in Tomato (Solanum Lycopersicum L.)
    Jingyi Liu, Meijing Shi, Jing Wang, Bo Zhang, Yushun Li, Jin Wang, Ahmed. H. El-Sappah, Yan Liang
    International Journal of Molecular Sciences 2020 21 16
  • Effect of Enzymes on Serum and Particle Properties of Carrot Cell Suspensions
    Ashwin K Sankaran, Jaap Nijsse, Ruth Cardinaels, Lucy Bialek, Avi Shpigelman, Marc Hendrickx, Paula Moldenaers, Ann M. Van Loey
    Food Biophysics 2015 10 4
  • Genetic Improvement of Solanaceous Crops Volume 2
    Elizabeth Fox, Jim Giovannoni
    2006
  • Growth Control in Woody Plants
    1997
  • Immunolocalization of α-Expansin Protein (NtEXPA5) in Tobacco Roots in the Presence of the Arbuscular Mycorrhizal Fungus Glomus Mosseae Nicol. & Gerd
    Magdalena Wiśniewska, Władysław Golinowski
    Acta Biologica Cracoviensia Series Botanica 2011 53 2
  • Machine Learning Approaches for Prediction of Expansin Gene Family in Indica Rice
    N. Hemalatha, M. K. Rajesh, N. K. Narayanan
    Agricultural Research 2013 2 4
  • Overexpression of NtEXPA11 modulates plant growth and development and enhances stress tolerance in tobacco
    Prince Marowa, Anming Ding, Zongchang Xu, Yingzhen Kong
    Plant Physiology and Biochemistry 2020 151
  • Petunia
    Sara Zenoni, Anita Zamboni, Andrea Porceddu, Mario Pezzotti
    2009
  • Plant Adaptation Strategies in Changing Environment
    Farah Deeba, Vivek Pandey
    2017
  • Plant Omics: Trends and Applications
    M. Asif Shahzad, Aimal Khan, Maria Khalid, Alvina Gul
    2016
  • Plant Small RNA
    Neeti Sanan-Mishra, Anita Kumari
    2020
  • Profile of Daniel J. Cosgrove
    T. H. Davis
    Proceedings of the National Academy of Sciences 2006 103 40
  • The Expanding Cell
    Simon McQueen-Mason, Ngoc Tuan Le, David Brocklehurst
    2007 6
  • The Plant Cell Wall
    Daniel J. Cosgrove
    2020 2149
  • The dilemma of bacterial expansins evolution. The unusual case of Streptomyces acidiscabies and Kutzneria sp. 744
    Vinicio Armijos-Jaramillo, Daniela Santander-Gordón, Eduardo Tejera, Yunierkis Perez-Castillo
    Communicative & Integrative Biology 2018 11 5-6
  • The molecular mechanism of stipe cell wall extension for mushroom stipe elongation growth
    Cuicui Liu, Jingjing Bi, Liqin Kang, Jiangsheng Zhou, Xiao Liu, Zhonghua Liu, Sheng Yuan
    Fungal Biology Reviews 2020
  • Transcriptome analyses provide insights into the effect of temperature change on fiber quality of ramie
    Pingan Guo, Bo Wang, Yancheng Zheng, Jie Chen, Wenlue Li, Lijun Liu, Dingxiang Peng
    Industrial Crops and Products 2020 152
  • Transgenic Crops IV
    G. Tucker, P. Walley, G. Seymour
    2007 59

Article Information

vol. 107 no. 1 87-100
DOI 
https://doi.org/10.1104/pp.107.1.87
PubMed 
11536663

Published By 
American Society of Plant Biologists
Print ISSN 
0032-0889
Online ISSN 
1532-2548
Published Online 
January 01, 1995

Copyright & Usage 
Copyright © 1995 by American Society of Plant Biologists

PreviousNext
Back to top

Table of Contents

Download PDF
Email Article

Thank you for your interest in spreading the word on Plant Physiology.

NOTE: We only request your email address so that the person you are recommending the page to knows that you wanted them to see it, and that it is not junk mail. We do not capture any email address.

Enter multiple addresses on separate lines or separate them with commas.
Expansin Mode of Action on Cell Walls (Analysis of Wall Hydrolysis, Stress Relaxation, and Binding)
(Your Name) has sent you a message from Plant Physiology
(Your Name) thought you would like to see the Plant Physiology web site.
CAPTCHA
This question is for testing whether or not you are a human visitor and to prevent automated spam submissions.
Citation Tools
Expansin Mode of Action on Cell Walls (Analysis of Wall Hydrolysis, Stress Relaxation, and Binding)
S. J. McQueen-Mason, D. J. Cosgrove
Plant Physiology Jan 1995, 107 (1) 87-100; DOI: 10.1104/pp.107.1.87

Citation Manager Formats

  • BibTeX
  • Bookends
  • EasyBib
  • EndNote (tagged)
  • EndNote 8 (xml)
  • Medlars
  • Mendeley
  • Papers
  • RefWorks Tagged
  • Ref Manager
  • RIS
  • Zotero
Request Permissions
Share
Expansin Mode of Action on Cell Walls (Analysis of Wall Hydrolysis, Stress Relaxation, and Binding)
S. J. McQueen-Mason, D. J. Cosgrove
Plant Physiology Jan 1995, 107 (1) 87-100; DOI: 10.1104/pp.107.1.87
del.icio.us logo Digg logo Reddit logo Twitter logo CiteULike logo Facebook logo Google logo Mendeley logo
  • Tweet Widget
  • Facebook Like
  • Google Plus One

Jump to section

  • Article
  • Info & Metrics
  • PDF

In this issue

Plant Physiology
Vol. 107, Issue 1
Jan 1995
  • Table of Contents
  • Index by author

More in this TOC Section

  • Dedicated Roles of Plastid Transketolases during the Early Onset of Isoprenoid Biogenesis in Pepper Fruits1
  • Characterization of Euphorbia characias Latex Amine Oxidase
  • Brittle-1, an Adenylate Translocator, Facilitates Transfer of Extraplastidial Synthesized ADP-Glucose into Amyloplasts of Maize Endosperms
Show more BIOCHEMISTRY AND ENZYMOLOGY

Similar Articles

Our Content

  • Home
  • Current Issue
  • Plant Physiology Preview
  • Archive
  • Focus Collections
  • Classic Collections
  • The Plant Cell
  • Plant Direct
  • Plantae
  • ASPB

For Authors

  • Instructions
  • Submit a Manuscript
  • Editorial Board and Staff
  • Policies
  • Recognizing our Authors

For Reviewers

  • Instructions
  • Journal Miles
  • Policies

Other Services

  • Permissions
  • Librarian resources
  • Advertise in our journals
  • Alerts
  • RSS Feeds

Copyright © 2021 by The American Society of Plant Biologists

Powered by HighWire