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
Research ArticleDEVELOPMENT AND HORMONE ACTION
Open Access

Strigolactones Are Involved in Root Response to Low Phosphate Conditions in Arabidopsis

Einav Mayzlish-Gati, Carolien De-Cuyper, Sofie Goormachtig, Tom Beeckman, Marnik Vuylsteke, Philip B. Brewer, Christine A. Beveridge, Uri Yermiyahu, Yulia Kaplan, Yael Enzer, Smadar Wininger, Natalie Resnick, Maja Cohen, Yoram Kapulnik, Hinanit Koltai
Einav Mayzlish-Gati
Institute of Plant Sciences, Agricultural Research Organization, Bet Dagan 50250, Israel (E.M.-G., Y.K., Y.E., S.W., N.R., M.C., Y.K., H.K.); Department of Plant Systems Biology and Department of Plant Biotechnology and Bioinformatics, Ghent University, B-9052 Ghent, Belgium (C.D.-C., S.G., T.B., M.V.); School of Biological Sciences, The University of Queensland, St Lucia, Brisbane 4072, Australia (P.B.B., C.A.B.); Gilat Research Center, Agricultural Research Organization, Negev 2 85280, Israel (U.Y.); and Mina and Everard Goodman Faculty of Life Sciences, Bar-ilan University, Ramat Gan 52900, Israel (M.C.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Carolien De-Cuyper
Institute of Plant Sciences, Agricultural Research Organization, Bet Dagan 50250, Israel (E.M.-G., Y.K., Y.E., S.W., N.R., M.C., Y.K., H.K.); Department of Plant Systems Biology and Department of Plant Biotechnology and Bioinformatics, Ghent University, B-9052 Ghent, Belgium (C.D.-C., S.G., T.B., M.V.); School of Biological Sciences, The University of Queensland, St Lucia, Brisbane 4072, Australia (P.B.B., C.A.B.); Gilat Research Center, Agricultural Research Organization, Negev 2 85280, Israel (U.Y.); and Mina and Everard Goodman Faculty of Life Sciences, Bar-ilan University, Ramat Gan 52900, Israel (M.C.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Sofie Goormachtig
Institute of Plant Sciences, Agricultural Research Organization, Bet Dagan 50250, Israel (E.M.-G., Y.K., Y.E., S.W., N.R., M.C., Y.K., H.K.); Department of Plant Systems Biology and Department of Plant Biotechnology and Bioinformatics, Ghent University, B-9052 Ghent, Belgium (C.D.-C., S.G., T.B., M.V.); School of Biological Sciences, The University of Queensland, St Lucia, Brisbane 4072, Australia (P.B.B., C.A.B.); Gilat Research Center, Agricultural Research Organization, Negev 2 85280, Israel (U.Y.); and Mina and Everard Goodman Faculty of Life Sciences, Bar-ilan University, Ramat Gan 52900, Israel (M.C.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Tom Beeckman
Institute of Plant Sciences, Agricultural Research Organization, Bet Dagan 50250, Israel (E.M.-G., Y.K., Y.E., S.W., N.R., M.C., Y.K., H.K.); Department of Plant Systems Biology and Department of Plant Biotechnology and Bioinformatics, Ghent University, B-9052 Ghent, Belgium (C.D.-C., S.G., T.B., M.V.); School of Biological Sciences, The University of Queensland, St Lucia, Brisbane 4072, Australia (P.B.B., C.A.B.); Gilat Research Center, Agricultural Research Organization, Negev 2 85280, Israel (U.Y.); and Mina and Everard Goodman Faculty of Life Sciences, Bar-ilan University, Ramat Gan 52900, Israel (M.C.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Marnik Vuylsteke
Institute of Plant Sciences, Agricultural Research Organization, Bet Dagan 50250, Israel (E.M.-G., Y.K., Y.E., S.W., N.R., M.C., Y.K., H.K.); Department of Plant Systems Biology and Department of Plant Biotechnology and Bioinformatics, Ghent University, B-9052 Ghent, Belgium (C.D.-C., S.G., T.B., M.V.); School of Biological Sciences, The University of Queensland, St Lucia, Brisbane 4072, Australia (P.B.B., C.A.B.); Gilat Research Center, Agricultural Research Organization, Negev 2 85280, Israel (U.Y.); and Mina and Everard Goodman Faculty of Life Sciences, Bar-ilan University, Ramat Gan 52900, Israel (M.C.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Philip B. Brewer
Institute of Plant Sciences, Agricultural Research Organization, Bet Dagan 50250, Israel (E.M.-G., Y.K., Y.E., S.W., N.R., M.C., Y.K., H.K.); Department of Plant Systems Biology and Department of Plant Biotechnology and Bioinformatics, Ghent University, B-9052 Ghent, Belgium (C.D.-C., S.G., T.B., M.V.); School of Biological Sciences, The University of Queensland, St Lucia, Brisbane 4072, Australia (P.B.B., C.A.B.); Gilat Research Center, Agricultural Research Organization, Negev 2 85280, Israel (U.Y.); and Mina and Everard Goodman Faculty of Life Sciences, Bar-ilan University, Ramat Gan 52900, Israel (M.C.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Christine A. Beveridge
Institute of Plant Sciences, Agricultural Research Organization, Bet Dagan 50250, Israel (E.M.-G., Y.K., Y.E., S.W., N.R., M.C., Y.K., H.K.); Department of Plant Systems Biology and Department of Plant Biotechnology and Bioinformatics, Ghent University, B-9052 Ghent, Belgium (C.D.-C., S.G., T.B., M.V.); School of Biological Sciences, The University of Queensland, St Lucia, Brisbane 4072, Australia (P.B.B., C.A.B.); Gilat Research Center, Agricultural Research Organization, Negev 2 85280, Israel (U.Y.); and Mina and Everard Goodman Faculty of Life Sciences, Bar-ilan University, Ramat Gan 52900, Israel (M.C.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Uri Yermiyahu
Institute of Plant Sciences, Agricultural Research Organization, Bet Dagan 50250, Israel (E.M.-G., Y.K., Y.E., S.W., N.R., M.C., Y.K., H.K.); Department of Plant Systems Biology and Department of Plant Biotechnology and Bioinformatics, Ghent University, B-9052 Ghent, Belgium (C.D.-C., S.G., T.B., M.V.); School of Biological Sciences, The University of Queensland, St Lucia, Brisbane 4072, Australia (P.B.B., C.A.B.); Gilat Research Center, Agricultural Research Organization, Negev 2 85280, Israel (U.Y.); and Mina and Everard Goodman Faculty of Life Sciences, Bar-ilan University, Ramat Gan 52900, Israel (M.C.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Yulia Kaplan
Institute of Plant Sciences, Agricultural Research Organization, Bet Dagan 50250, Israel (E.M.-G., Y.K., Y.E., S.W., N.R., M.C., Y.K., H.K.); Department of Plant Systems Biology and Department of Plant Biotechnology and Bioinformatics, Ghent University, B-9052 Ghent, Belgium (C.D.-C., S.G., T.B., M.V.); School of Biological Sciences, The University of Queensland, St Lucia, Brisbane 4072, Australia (P.B.B., C.A.B.); Gilat Research Center, Agricultural Research Organization, Negev 2 85280, Israel (U.Y.); and Mina and Everard Goodman Faculty of Life Sciences, Bar-ilan University, Ramat Gan 52900, Israel (M.C.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Yael Enzer
Institute of Plant Sciences, Agricultural Research Organization, Bet Dagan 50250, Israel (E.M.-G., Y.K., Y.E., S.W., N.R., M.C., Y.K., H.K.); Department of Plant Systems Biology and Department of Plant Biotechnology and Bioinformatics, Ghent University, B-9052 Ghent, Belgium (C.D.-C., S.G., T.B., M.V.); School of Biological Sciences, The University of Queensland, St Lucia, Brisbane 4072, Australia (P.B.B., C.A.B.); Gilat Research Center, Agricultural Research Organization, Negev 2 85280, Israel (U.Y.); and Mina and Everard Goodman Faculty of Life Sciences, Bar-ilan University, Ramat Gan 52900, Israel (M.C.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Smadar Wininger
Institute of Plant Sciences, Agricultural Research Organization, Bet Dagan 50250, Israel (E.M.-G., Y.K., Y.E., S.W., N.R., M.C., Y.K., H.K.); Department of Plant Systems Biology and Department of Plant Biotechnology and Bioinformatics, Ghent University, B-9052 Ghent, Belgium (C.D.-C., S.G., T.B., M.V.); School of Biological Sciences, The University of Queensland, St Lucia, Brisbane 4072, Australia (P.B.B., C.A.B.); Gilat Research Center, Agricultural Research Organization, Negev 2 85280, Israel (U.Y.); and Mina and Everard Goodman Faculty of Life Sciences, Bar-ilan University, Ramat Gan 52900, Israel (M.C.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Natalie Resnick
Institute of Plant Sciences, Agricultural Research Organization, Bet Dagan 50250, Israel (E.M.-G., Y.K., Y.E., S.W., N.R., M.C., Y.K., H.K.); Department of Plant Systems Biology and Department of Plant Biotechnology and Bioinformatics, Ghent University, B-9052 Ghent, Belgium (C.D.-C., S.G., T.B., M.V.); School of Biological Sciences, The University of Queensland, St Lucia, Brisbane 4072, Australia (P.B.B., C.A.B.); Gilat Research Center, Agricultural Research Organization, Negev 2 85280, Israel (U.Y.); and Mina and Everard Goodman Faculty of Life Sciences, Bar-ilan University, Ramat Gan 52900, Israel (M.C.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Maja Cohen
Institute of Plant Sciences, Agricultural Research Organization, Bet Dagan 50250, Israel (E.M.-G., Y.K., Y.E., S.W., N.R., M.C., Y.K., H.K.); Department of Plant Systems Biology and Department of Plant Biotechnology and Bioinformatics, Ghent University, B-9052 Ghent, Belgium (C.D.-C., S.G., T.B., M.V.); School of Biological Sciences, The University of Queensland, St Lucia, Brisbane 4072, Australia (P.B.B., C.A.B.); Gilat Research Center, Agricultural Research Organization, Negev 2 85280, Israel (U.Y.); and Mina and Everard Goodman Faculty of Life Sciences, Bar-ilan University, Ramat Gan 52900, Israel (M.C.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Yoram Kapulnik
Institute of Plant Sciences, Agricultural Research Organization, Bet Dagan 50250, Israel (E.M.-G., Y.K., Y.E., S.W., N.R., M.C., Y.K., H.K.); Department of Plant Systems Biology and Department of Plant Biotechnology and Bioinformatics, Ghent University, B-9052 Ghent, Belgium (C.D.-C., S.G., T.B., M.V.); School of Biological Sciences, The University of Queensland, St Lucia, Brisbane 4072, Australia (P.B.B., C.A.B.); Gilat Research Center, Agricultural Research Organization, Negev 2 85280, Israel (U.Y.); and Mina and Everard Goodman Faculty of Life Sciences, Bar-ilan University, Ramat Gan 52900, Israel (M.C.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
Hinanit Koltai
Institute of Plant Sciences, Agricultural Research Organization, Bet Dagan 50250, Israel (E.M.-G., Y.K., Y.E., S.W., N.R., M.C., Y.K., H.K.); Department of Plant Systems Biology and Department of Plant Biotechnology and Bioinformatics, Ghent University, B-9052 Ghent, Belgium (C.D.-C., S.G., T.B., M.V.); School of Biological Sciences, The University of Queensland, St Lucia, Brisbane 4072, Australia (P.B.B., C.A.B.); Gilat Research Center, Agricultural Research Organization, Negev 2 85280, Israel (U.Y.); and Mina and Everard Goodman Faculty of Life Sciences, Bar-ilan University, Ramat Gan 52900, Israel (M.C.)
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
  • For correspondence: hkoltai@volcani.agri.gov.il

Published November 2012. DOI: https://doi.org/10.1104/pp.112.202358

  • Article
  • Figures & Data
  • Info & Metrics
  • PDF
Loading

Statistics from Altmetric.com

Article usage

Article usage: September 2012 to January 2021

AbstractFullPdf
Sep 20129290392
Oct 20122210197
Nov 20122197144480
Dec 201246680131
Jan 201331258119
Feb 201326935120
Mar 20131452674
Apr 20131393783
May 20131074254
Jun 2013872338
Jul 2013973160
Aug 2013882845
Sep 2013962942
Oct 20131253667
Nov 2013993152
Dec 2013853070
Jan 2014732137
Feb 2014733249
Mar 2014642833
Apr 2014641737
May 2014591857
Jun 2014752547
Jul 2014672840
Aug 2014421629
Sep 2014531728
Oct 2014551544
Nov 2014502737
Dec 2014452438
Jan 2015742339
Feb 2015471938
Mar 2015252236
Apr 2015321427
May 2015342538
Jun 2015342125
Jul 2015341134
Aug 2015261524
Sep 2015342346
Oct 2015361333
Nov 2015381835
Dec 2015501832
Jan 2016683546
Feb 2016382755
Mar 2016251829
Apr 2016271423
May 2016332530
Jun 2016502734
Jul 2016431631
Aug 2016332220
Sep 2016292121
Oct 2016492122
Nov 2016562026
Dec 2016471213
Jan 2017501916
Feb 2017442218
Mar 2017371815
Apr 2017322511
May 2017635425
Jun 20175010025
Jul 201712336
Aug 2017102814
Sep 2017193420
Oct 2017183926
Nov 2017174623
Dec 2017173927
Jan 2018193918
Feb 2018153712
Mar 2018245129
Apr 201875715
May 2018127015
Jun 2018184520
Jul 2018103616
Aug 20181115118
Sep 20183018954
Oct 2018176924
Nov 2018147421
Dec 2018119517
Jan 201976911
Feb 2019127717
Mar 20192114122
Apr 20191815933
May 20191710919
Jun 2019167620
Jul 20191918414
Aug 2019183279
Sep 20191430010
Oct 20191633223
Nov 20191820915
Dec 20191614210
Jan 2020182811
Feb 2020142728
Mar 2020101914
Apr 202074440
May 202076524
Jun 2020102626
Jul 202042114
Aug 202061919
Sep 202063415
Oct 2020114319
Nov 2020165232
Dec 2020143425
Jan 202142317

Author Information

  1. Einav Mayzlish-Gati,
  2. Carolien De-Cuyper,
  3. Sofie Goormachtig,
  4. Tom Beeckman,
  5. Marnik Vuylsteke,
  6. Philip B. Brewer,
  7. Christine A. Beveridge,
  8. Uri Yermiyahu,
  9. Yulia Kaplan,
  10. Yael Enzer,
  11. Smadar Wininger,
  12. Natalie Resnick,
  13. Maja Cohen,
  14. Yoram Kapulnik and
  15. Hinanit Koltai*
  1. Institute of Plant Sciences, Agricultural Research Organization, Bet Dagan 50250, Israel (E.M.-G., Y.K., Y.E., S.W., N.R., M.C., Y.K., H.K.); Department of Plant Systems Biology and Department of Plant Biotechnology and Bioinformatics, Ghent University, B-9052 Ghent, Belgium (C.D.-C., S.G., T.B., M.V.); School of Biological Sciences, The University of Queensland, St Lucia, Brisbane 4072, Australia (P.B.B., C.A.B.); Gilat Research Center, Agricultural Research Organization, Negev 2 85280, Israel (U.Y.); and Mina and Everard Goodman Faculty of Life Sciences, Bar-ilan University, Ramat Gan 52900, Israel (M.C.)
  1. ↵*Corresponding author; e-mail hkoltai{at}volcani.agri.gov.il.
View Full Text

Cited By...

  • 109 Citations
  • 110 Citations
  • Google Scholar

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

  • Network Analysis of the MVA and MEP Pathways for Isoprenoid Synthesis
    Eva Vranová, Diana Coman, Wilhelm Gruissem
    Annual Review of Plant Biology 2013 64 1
  • Strigolactones, a Novel Carotenoid-Derived Plant Hormone
    Salim Al-Babili, Harro J. Bouwmeester
    Annual Review of Plant Biology 2015 66 1
  • Root exudates mediated interactions belowground
    Feth el Zahar Haichar, Catherine Santaella, Thierry Heulin, Wafa Achouak
    Soil Biology and Biochemistry 2014 77
  • The Plant Vascular System: Evolution, Development and FunctionsF
    William J. Lucas, Andrew Groover, Raffael Lichtenberger, Kaori Furuta, Shri-Ram Yadav, Ykä Helariutta, Xin-Qiang He, Hiroo Fukuda, Julie Kang, Siobhan M. Brady, John W. Patrick, John Sperry, Akiko Yoshida, Ana-Flor López-Millán, Michael A. Grusak, Pradeep Kachroo
    Journal of Integrative Plant Biology 2013 55 4
  • Lateral root development in Arabidopsis: fifty shades of auxin
    Julien Lavenus, Tatsuaki Goh, Ianto Roberts, Soazig Guyomarc’h, Mikaël Lucas, Ive De Smet, Hidehiro Fukaki, Tom Beeckman, Malcolm Bennett, Laurent Laplaze
    Trends in Plant Science 2013 18 8
  • Interplay between reactive oxygen species and hormones in the control of plant development and stress tolerance
    Xiao-Jian Xia, Yan-Hong Zhou, Kai Shi, Jie Zhou, Christine H. Foyer, Jing-Quan Yu
    Journal of Experimental Botany 2015 66 10
  • Strigolactone Signaling and Evolution
    Mark T. Waters, Caroline Gutjahr, Tom Bennett, David C. Nelson
    Annual Review of Plant Biology 2017 68 1
  • Diverse Roles of Strigolactones in Plant Development
    Philip B. Brewer, Hinanit Koltai, Christine A. Beveridge
    Molecular Plant 2013 6 1
  • Molecular mechanisms underlying phosphate sensing, signaling, and adaptation in plants
    Zhaoliang Zhang, Hong Liao, William J. Lucas
    Journal of Integrative Plant Biology 2014 56 3
  • Matching roots to their environment
    Philip J. White, Timothy S. George, Peter J. Gregory, A. Glyn Bengough, Paul D. Hallett, Blair M. McKenzie
    Annals of Botany 2013 112 2
  • Strigolactones are involved in phosphate- and nitrate-deficiency-induced root development and auxin transport in rice
    Huwei Sun, Jinyuan Tao, Shangjun Liu, Shuangjie Huang, Si Chen, Xiaonan Xie, Koichi Yoneyama, Yali Zhang, Guohua Xu
    Journal of Experimental Botany 2014 65 22
  • Roots Withstanding their Environment: Exploiting Root System Architecture Responses to Abiotic Stress to Improve Crop Tolerance
    Iko T. Koevoets, Jan Henk Venema, J. Theo. M. Elzenga, Christa Testerink
    Frontiers in Plant Science 2016 07
  • Osmotic stress represses strigolactone biosynthesis in Lotus japonicus roots: exploring the interaction between strigolactones and ABA under abiotic stress
    Junwei Liu, Hanzi He, Marco Vitali, Ivan Visentin, Tatsiana Charnikhova, Imran Haider, Andrea Schubert, Carolien Ruyter-Spira, Harro J. Bouwmeester, Claudio Lovisolo, Francesca Cardinale
    Planta 2015 241 6
  • Regulation of root morphogenesis in arbuscular mycorrhizae: what role do fungal exudates, phosphate, sugars and hormones play in lateral root formation?
    Anna Fusconi
    Annals of Botany 2014 113 1
  • Strigolactone signalling: standing on the shoulders of DWARFs
    Tom Bennett, Ottoline Leyser
    Current Opinion in Plant Biology 2014 22
  • A Dual Role of Strigolactones in Phosphate Acquisition and Utilization in Plants
    Olaf Czarnecki, Jun Yang, David Weston, Gerald Tuskan, Jin-Gui Chen
    International Journal of Molecular Sciences 2013 14 4
  • Insights into plant phosphate sensing and signaling
    Byung-Kook Ham, Jieyu Chen, Yan Yan, William J Lucas
    Current Opinion in Biotechnology 2018 49
  • Hypocotyl adventitious root organogenesis differs from lateral root development
    Inge Verstraeten, Sébastien Schotte, Danny Geelen
    Frontiers in Plant Science 2014 5
  • Novel signals in the regulation of Pi starvation responses in plants: facts and promises
    María Isabel Puga, Mónica Rojas-Triana, Laura de Lorenzo, Antonio Leyva, Vicente Rubio, Javier Paz-Ares
    Current Opinion in Plant Biology 2017 39
  • Strigolactones in plant adaptation to abiotic stresses: An emerging avenue of plant research
    Mohammad Golam Mostofa, Weiqiang Li, Kien Huu Nguyen, Masayuki Fujita, Lam-Son Phan Tran
    Plant, Cell & Environment 2018 41 10
  • The Structure of the Karrikin-Insensitive Protein (KAI2) in Arabidopsis thaliana
    Rohan Bythell-Douglas, Mark T. Waters, Adrian Scaffidi, Gavin R. Flematti, Steven M. Smith, Charles S. Bond, Richard David Newcomb
    PLoS ONE 2013 8 1
  • Understanding plant responses to phosphorus starvation for improvement of plant tolerance to phosphorus deficiency by biotechnological approaches
    Sukbong Ha, Lam-Son Tran
    Critical Reviews in Biotechnology 2014 34 1
  • An Arabidopsis ABC Transporter Mediates Phosphate Deficiency-Induced Remodeling of Root Architecture by Modulating Iron Homeostasis in Roots
    Jinsong Dong, Miguel A. Piñeros, Xiaoxuan Li, Haibing Yang, Yu Liu, Angus S. Murphy, Leon V. Kochian, Dong Liu
    Molecular Plant 2017 10 2
  • Light as stress factor to plant roots – case of root halotropism
    Ken Yokawa, Rossella Fasano, Tomoko Kagenishi, František Baluška
    Frontiers in Plant Science 2014 5
  • Strigolactones are required for nitric oxide to induce root elongation in response to nitrogen and phosphate deficiencies in rice
    Huwei Sun, Yang Bi, Jinyuan Tao, Shuangjie Huang, Mengmeng Hou, Ren Xue, Zhihao Liang, Pengyuan Gu, Koichi Yoneyama, Xiaonan Xie, Qirong Shen, Guohua Xu, Yali Zhang
    Plant, Cell & Environment 2016 39 7
  • Ecological relevance of strigolactones in nutrient uptake and other abiotic stresses, and in plant-microbe interactions below-ground
    Beatriz Andreo-Jimenez, Carolien Ruyter-Spira, Harro J. Bouwmeester, Juan A. Lopez-Raez
    Plant and Soil 2015 394 1-2
  • Strigolactones fine-tune the root system
    Amanda Rasmussen, Stephen Depuydt, Sofie Goormachtig, Danny Geelen
    Planta 2013 238 4
  • Cellular events of strigolactone signalling and their crosstalk with auxin in roots: Fig. 1.
    Hinanit Koltai
    Journal of Experimental Botany 2015 66 16
  • The Role of Strigolactones in Nutrient-Stress Responses in Plants
    Marek Marzec, Aleksandra Muszynska, Damian Gruszka
    International Journal of Molecular Sciences 2013 14 5
  • Strigolactones spatially influence lateral root development through the cytokinin signaling network
    Lingxiang Jiang, Cedrick Matthys, Belen Marquez-Garcia, Carolien De Cuyper, Lien Smet, Annick De Keyser, François-Didier Boyer, Tom Beeckman, Stephen Depuydt, Sofie Goormachtig
    Journal of Experimental Botany 2016 67 1
  • Striga hermonthica MAX2restores branching but not the Very Low Fluence Response in theArabidopsis thaliana max2mutant
    Qing Liu, Yanxia Zhang, Radoslava Matusova, Tatsiana Charnikhova, Maryam Amini, Muhammad Jamil, Monica Fernandez-Aparicio, Kan Huang, Michael P. Timko, James H. Westwood, Carolien Ruyter-Spira, Sander van der Krol, Harro J. Bouwmeester
    New Phytologist 2014 202 2
  • Carotenoids in Nature
    Juan Camilo Moreno Beltran, Claudia Stange
    2016 79
  • Strigolactone Regulates Anthocyanin Accumulation, Acid Phosphatases Production and Plant Growth under Low Phosphate Condition in Arabidopsis
    Shinsaku Ito, Tomoko Nozoye, Eriko Sasaki, Misaki Imai, Yuh Shiwa, Mari Shibata-Hatta, Taichiro Ishige, Kosuke Fukui, Ken Ito, Hiromi Nakanishi, Naoko K. Nishizawa, Shunsuke Yajima, Tadao Asami, Girdhar K. Pandey
    PLOS ONE 2015 10 3
  • Strigolactones Biosynthesis and Their Role in Abiotic Stress Resilience in Plants: A Critical Review
    Wajeeha Saeed, Saadia Naseem, Zahid Ali
    Frontiers in Plant Science 2017 8
  • StrigoQuant: A genetically encoded biosensor for quantifying strigolactone activity and specificity
    Sophia L. Samodelov, Hannes M. Beyer, Xiujie Guo, Maximilian Augustin, Kun-Peng Jia, Lina Baz, Oliver Ebenhöh, Peter Beyer, Wilfried Weber, Salim Al-Babili, Matias D. Zurbriggen
    Science Advances 2016 2 11
  • Strigolactones activate different hormonal pathways for regulation of root development in response to phosphate growth conditions
    Hinanit Koltai
    Annals of Botany 2013 112 2
  • SMAX1/SMXL2 regulate root and root hair development downstream of KAI2-mediated signalling in Arabidopsis
    José Antonio Villaécija-Aguilar, Maxime Hamon-Josse, Samy Carbonnel, Annika Kretschmar, Christian Schmidt, Corinna Dawid, Tom Bennett, Caroline Gutjahr, Gloria K. Muday
    PLOS Genetics 2019 15 8
  • The Whats, the Wheres and the Hows of strigolactone action in the roots
    Cedrick Matthys, Alan Walton, Sylwia Struk, Elisabeth Stes, François-Didier Boyer, Kris Gevaert, Sofie Goormachtig
    Planta 2016 243 6
  • Arabidopsis response to low-phosphate conditions includes active changes in actin filaments and PIN2 polarization and is dependent on strigolactone signalling
    Manoj Kumar, Nirali Pandya-Kumar, Anandamoy Dam, Hila Haor, Einav Mayzlish-Gati, Eduard Belausov, Smadar Wininger, Mohamad Abu-Abied, Christopher S. P. McErlean, Liam J. Bromhead, Cristina Prandi, Yoram Kapulnik, Hinanit Koltai
    Journal of Experimental Botany 2015 66 5
  • Changes in the allocation of endogenous strigolactone improve plant biomass production on phosphate-poor soils
    Guowei Liu, Johannes Pfeifer, Rita de Brito Francisco, Aurelia Emonet, Marina Stirnemann, Christian Gübeli, Olivier Hutter, Joëlle Sasse, Christian Mattheyer, Ernst Stelzer, Achim Walter, Enrico Martinoia, Lorenzo Borghi
    New Phytologist 2018 217 2
  • Strigolactone-Regulated Proteins Revealed by iTRAQ-Based Quantitative Proteomics in Arabidopsis
    Zhou Li, Olaf Czarnecki, Karuna Chourey, Jun Yang, Gerald A. Tuskan, Gregory B. Hurst, Chongle Pan, Jin-Gui Chen
    Journal of Proteome Research 2014 13 3
  • A humic substances product extracted from biochar reduces Arabidopsis root hair density and length under P-sufficient and P-starvation conditions
    E. R. Graber, L. Tsechansky, E. Mayzlish-Gati, R. Shema, H. Koltai
    Plant and Soil 2015 395 1-2
  • Impairment in karrikin but not strigolactone sensing enhances root skewing in Arabidopsis thaliana
    Stéphanie M. Swarbreck, Yannick Guerringue, Elsa Matthus, Fiona J. C. Jamieson, Julia M. Davies
    The Plant Journal 2019 98 4
  • Carlactone-independent seedling morphogenesis in Arabidopsis
    Adrian Scaffidi, Mark T. Waters, Emilio L. Ghisalberti, Kingsley W. Dixon, Gavin R. Flematti, Steven M. Smith
    The Plant Journal 2013
  • Construction of small RNA-mediated gene regulatory networks in the roots of rice (Oryza sativa)
    Xiaoxia Ma, Chaogang Shao, Huizhong Wang, Yongfeng Jin, Yijun Meng
    BMC Genomics 2013 14 1
  • Largely additive effects of gibberellin and strigolactone on gene expression inArabidopsis thalianaseedlings
    Ourania Lantzouni, Carina Klermund, Claus Schwechheimer
    The Plant Journal 2017 92 5
  • The Response of the Root Proteome to the Synthetic Strigolactone GR24 in Arabidopsis
    Alan Walton, Elisabeth Stes, Geert Goeminne, Lukas Braem, Marnik Vuylsteke, Cedrick Matthys, Carolien De Cuyper, An Staes, Jonathan Vandenbussche, François-Didier Boyer, Ruben Vanholme, Justine Fromentin, Wout Boerjan, Kris Gevaert, Sofie Goormachtig
    Molecular & Cellular Proteomics 2016 15 8
  • Characterization of MORE AXILLARY GROWTH Genes in Populus
    Olaf Czarnecki, Jun Yang, Xiaoping Wang, Shucai Wang, Wellington Muchero, Gerald A. Tuskan, Jin-Gui Chen, Jin-Song Zhang
    PLoS ONE 2014 9 7
  • The role of strigolactones in root development
    Huwei Sun, Jinyuan Tao, Pengyuan Gu, Guohua Xu, Yali Zhang
    Plant Signaling & Behavior 2016 11 1
  • Phytohormone regulation of root growth triggered by P deficiency or Al toxicity
    Lili Sun, Jiang Tian, Haiyan Zhang, Hong Liao
    Journal of Experimental Botany 2016 67 12
  • Emerging Roles of Strigolactones in Plant Responses to Stress and Development
    Amita Pandey, Manisha Sharma, Girdhar K. Pandey
    Frontiers in Plant Science 2016 7
  • Signaling role of Strigolactones at the interface between plants, (micro)organisms, and a changing environment
    Junwei Liu, Claudio Lovisolo, Andrea Schubert, Francesca Cardinale
    Journal of Plant Interactions 2013 8 1
  • Strigolactones
    Eloise Foo, Kaori Yoneyama, Cassandra Hugill, Laura J. Quittenden, James B. Reid
    Plant Signaling & Behavior 2013 8 3
  • Strigolactones: multi-level regulation of biosynthesis and diverse responses in plant abiotic stresses
    Aditya Banerjee, Aryadeep Roychoudhury
    Acta Physiologiae Plantarum 2018 40 5
  • Effects of strigolactone signaling on Arabidopsis growth under nitrogen deficient stress condition
    Shinsaku Ito, Ken Ito, Naoko Abeta, Ryo Takahashi, Yasuyuki Sasaki, Shunsuke Yajima
    Plant Signaling & Behavior 2016 11 1
  • Regulation of Ubiquitination Is Central to the Phosphate Starvation Response
    Wenbo Pan, Yaorong Wu, Qi Xie
    Trends in Plant Science 2019 24 8
  • Utilization of molecular markers for improving the phosphorus efficiency in crop plants
    Theivanayagam Maharajan, Stanislaus Antony Ceasar, Thumadath Palayullaparambil Ajeesh krishna, Muthusamy Ramakrishnan, Veeramuthu Duraipandiyan, Al-Dhabi Naif Abdulla, Savarimuthu Ignacimuthu, R. Tuberosa
    Plant Breeding 2018 137 1
  • Apple F-Box Protein MdMAX2 Regulates Plant Photomorphogenesis and Stress Response
    Jian-Ping An, Rui Li, Feng-Jia Qu, Chun-Xiang You, Xiao-Fei Wang, Yu-Jin Hao
    Frontiers in Plant Science 2016 7
  • Fine-tuning by strigolactones of root response to low phosphate
    Yoram Kapulnik, Hinanit Koltai
    Journal of Integrative Plant Biology 2016 58 3
  • OsPIN1b is Involved in Rice Seminal Root Elongation by Regulating Root Apical Meristem Activity in Response to Low Nitrogen and Phosphate
    Huwei Sun, Jinyuan Tao, Yang Bi, Mengmeng Hou, Jiajing Lou, Xinni Chen, Xuhong Zhang, Le Luo, Xiaonan Xie, Koichi Yoneyama, Quanzhi Zhao, Guohua Xu, Yali Zhang
    Scientific Reports 2018 8 1
  • Plant Transcription Factors
    Michael Nicolas, Pilar Cubas
    2016
  • Physiological controls of chrysanthemum DgD27 gene expression in regulation of shoot branching
    Chao Wen, Qingcui Zhao, Jing Nie, Guoqin Liu, Lin Shen, Chenxia Cheng, Lin Xi, Nan Ma, Liangjun Zhao
    Plant Cell Reports 2016 35 5
  • Strigolactones affect the translocation of nitrogen in rice
    Le Luo, Hongxuan Wang, Xiaohong Liu, Jinqi Hu, Xueli Zhu, Shou Pan, Ruyi Qin, Yifeng Wang, Pingping Zhao, Xiaorong Fan, Guohua Xu
    Plant Science 2018 270
  • A novel CO 2 ‐responsive systemic signaling pathway controlling plant mycorrhizal symbiosis
    Yanhong Zhou, Shibei Ge, Lijuan Jin, Kaiqian Yao, Yu Wang, Xiaodan Wu, Jie Zhou, Xiaojian Xia, Kai Shi, Christine H. Foyer, Jingquan Yu
    New Phytologist 2019 224 1
  • Strigolactone signaling in root development and phosphate starvation
    Manoj Kumar, Nirali Pandya-Kumar, Yoram Kapulnik, Hinanit Koltai
    Plant Signaling & Behavior 2015 10 7
  • Strigolactones and their crosstalk with other phytohormones
    L O Omoarelojie, M G Kulkarni, J F Finnie, J Van Staden
    Annals of Botany 2019 124 5
  • The Systems Biology of Lateral Root Formation: Connecting the Dots
    J.A. Santos Teixeira, K.H. ten Tusscher
    Molecular Plant 2019 12 6
  • Effect of strigolactones and auxins on growth and metabolite content of Sutherlandia frutescens (L.) R. Br. microplants in vitro
    Maria C. Grobbelaar, Nokwanda P. Makunga, Marietjie A. Stander, Jens Kossmann, Paul N. Hills
    Plant Cell, Tissue and Organ Culture (PCTOC) 2014 117 3
  • Expression of MAX2 under SCARECROW promoter enhances the strigolactone/MAX2 dependent response of Arabidopsis roots to low-phosphate conditions
    Ortal Madmon, Moran Mazuz, Puja Kumari, Anandamoy Dam, Aurel Ion, Einav Mayzlish-Gati, Eduard Belausov, Smadar Wininger, Mohamad Abu-Abied, Christopher S. P. McErlean, Liam J. Bromhead, Rafael Perl-Treves, Cristina Prandi, Yoram Kapulnik, Hinanit Koltai
    Planta 2016 243 6
  • From little things big things grow: karrikins and new directions in plant development
    Mark T. Waters
    Functional Plant Biology 2017 44 4
  • Hormonal regulation of root hair growth and responses to the environment in Arabidopsis
    Kris Vissenberg, Naomi Claeijs, Daria Balcerowicz, Sébastjen Schoenaers, Miriam Gifford
    Journal of Experimental Botany 2020 71 8
  • Long-Distance Systemic Signaling and Communication in Plants
    Hinanit Koltai, Christine A. Beveridge
    2013 19
  • Transcriptome analysis reveals candidate genes related to phosphorus starvation tolerance in sorghum
    Jinglong Zhang, Fangfang Jiang, Yixin Shen, Qiuwen Zhan, Binqiang Bai, Wei Chen, Yingjun Chi
    BMC Plant Biology 2019 19 1
  • Triazolide Strigolactone Mimics Influence Root Development in Arabidopsis
    Marcela Dvorakova, Petr Soudek, Tomas Vanek
    Journal of Natural Products 2017 80 5
  • Annual Plant Reviews Volume 48
    Wolf-Rüdiger Scheible, Monica Rojas-Triana
    2015
  • Cloning and functional identification of a strigolactone receptor gene MdD14 in apple
    Yu-Ying Yang, Yi-Ran Ren, Peng-Fei Zheng, Ling-Ling Zhao, Chun-Xiang You, Xiao-Fei Wang, Yu-Jin Hao
    Plant Cell, Tissue and Organ Culture (PCTOC) 2020 140 1
  • Identification of Differentially Expressed Proteins and Phosphorylated Proteins in Rice Seedlings in Response to Strigolactone Treatment
    Fangyu Chen, Liangrong Jiang, Jingsheng Zheng, Rongyu Huang, Houcong Wang, Zonglie Hong, Yumin Huang, Tianzhen Zhang
    PLoS ONE 2014 9 4
  • Roles of DgD14 in regulation of shoot branching in chrysanthemum ( Dendranthema grandiflorum ‘Jinba’)
    Chao Wen, Lin Xi, Bin Gao, Keyong Wang, Suhui Lv, Yaping Kou, Nan Ma, Liangjun Zhao
    Plant Physiology and Biochemistry 2015 96
  • Signaling Pathways in Plants
    Guosheng Xiong, Yonghong Wang, Jiayang Li
    2014 35
  • Strigolactones and interaction with auxin regulating root elongation in tall fescue under different temperature regimes
    Qiannan Hu, Shuoxin Zhang, Bingru Huang
    Plant Science 2018 271
  • A Strigolactone Signal Inhibits Secondary Lateral Root Development in Rice
    Huwei Sun, Fugui Xu, Xiaoli Guo, Daxia Wu, Xuhong Zhang, Manman Lou, Feifei Luo, Quanzhi Zhao, Guohua Xu, Yali Zhang
    Frontiers in Plant Science 2019 10
  • Hormone Metabolism and Signaling in Plants
    Bing Wang, Yonghong Wang, Jiayang Li
    2017
  • Phytohormones: A Window to Metabolism, Signaling and Biotechnological Applications
    Hinanit Koltai, Cristina Prandi
    2014
  • The Apocarotenoid Zaxinone Is a Positive Regulator of Strigolactone and Abscisic Acid Biosynthesis in Arabidopsis Roots
    Abdugaffor Ablazov, Jianing Mi, Muhammad Jamil, Kun-Peng Jia, Jian You Wang, Qitong Feng, Salim Al-Babili
    Frontiers in Plant Science 2020 11
  • Tissue-specific transcriptomic profiling of Plantago major provides insights for the involvement of vasculature in phosphate deficiency responses
    Jing Huang, Zhiqiang Huang, Xiangjun Zhou, Chao Xia, Muhammad Imran, Shujuan Wang, Congshan Xu, Manrong Zha, Yan Liu, Cankui Zhang
    Molecular Genetics and Genomics 2019 294 1
  • Comparing and Contrasting the Multiple Roles of Butenolide Plant Growth Regulators: Strigolactones and Karrikins in Plant Development and Adaptation to Abiotic Stresses
    Tao Yang, Yuke Lian, Chongying Wang
    International Journal of Molecular Sciences 2019 20 24
  • Long-Distance Systemic Signaling and Communication in Plants
    Aaron P. Smith
    2013 19
  • Root Biology
    De-Jian Zhang, Yu-Jie Yang, Chun-Yan Liu, Fei Zhang, Qiang-Sheng Wu
    2018 52
  • Strigolactones - Biology and Applications
    Catherine Rameau, Sofie Goormachtig, Francesca Cardinale, Tom Bennett, Pilar Cubas
    2019
  • Strigolactones Control Root System Architecture and Tip Anatomy in Solanum lycopersicum L. Plants under P Starvation
    Veronica Santoro, Michela Schiavon, Francesco Gresta, Andrea Ertani, Francesca Cardinale, Craig J. Sturrock, Luisella Celi, Andrea Schubert
    Plants 2020 9 5
  • Strigolactones in an experimental context
    Barbara Kramna, Sylva Prerostova, Radomira Vankova
    Plant Growth Regulation 2019 88 2
  • The Control of Zealactone Biosynthesis and Exudation is Involved in the Response to Nitrogen in Maize Root
    Laura Ravazzolo, Sara Trevisan, Alessandro Manoli, St�phanie Boutet-Mercey, Fran�ois Perreau, Silvia Quaggiotti
    Plant and Cell Physiology 2019 60 9
  • Unraveling Arbuscular Mycorrhiza-Induced Changes in Plant Primary and Secondary Metabolome
    Sukhmanpreet Kaur, Vidya Suseela
    Metabolites 2020 10 8
  • eLS
    Cristina Prandi, Francesca Cardinale
    2014
  • An Improved Mesocotyl Elongation Assay for the Rapid Identification and Characterization of Strigolactone-Related Rice Mutants
    Suyash Patil, Syed Adeel Zafar, Muhammad Uzair, Jinfeng Zhao, Jingjing Fang, Xueyong Li
    Agronomy 2019 9 4
  • Annual Plant Reviews online
    Wolf-Rüdiger Scheible, Monica Rojas-Triana
    2018
  • Lotus japonicus karrikin receptors display divergent ligand-binding specificities and organ-dependent redundancy
    Samy Carbonnel, Salar Torabi, Maximilian Griesmann, Elias Bleek, Yuhong Tang, Stefan Buchka, Veronica Basso, Mitsuru Shindo, François-Didier Boyer, Trevor L. Wang, Michael Udvardi, Mark T. Waters, Caroline Gutjahr, Hao Yu
    PLOS Genetics 2020 16 12
  • Plant Life Under Changing Environment
    Zahra Souri, Naser Karimi, Muhammad Ansar Farooq, Javaid Akhtar
    2020
  • Root Engineering
    Hinanit Koltai, Yoram Kapulnik
    2014 40
  • Translation of Strigolactones from Plant Hormone to Agriculture: Achievements, Future Perspectives, and Challenges
    Rebecca J. Chesterfield, Claudia E. Vickers, Christine A. Beveridge
    Trends in Plant Science 2020 25 11
  • Hiromu KAMEOKA, Junko KYOZUKA
    Kagaku To Seibutsu 2015 53 12
  • Crop Science
    P. Carvalho, M. J. Foulkes
    2019
  • Encyclopedia of Sustainability Science and Technology
    P. Carvalho, M. J. Foulkes
    2018
  • Interplay between Hormones and Several Abiotic Stress Conditions on Arabidopsis thaliana Primary Root Development
    Brenda Anabel López-Ruiz, Estephania Zluhan-Martínez, María de la Paz Sánchez, Elena R. Álvarez-Buylla, Adriana Garay-Arroyo
    Cells 2020 9 12
  • Mechanistic Insights into Strigolactone Biosynthesis, Signaling, and Regulation During Plant Growth and Development
    Kaiser Iqbal Wani, Andleeb Zehra, Sadaf Choudhary, M. Naeem, M. Masroor A. Khan, Christian Danve M. Castroverde, Tariq Aftab
    Journal of Plant Growth Regulation 2020
  • Pi-starvation is mitigated in Medicago truncatula plants with upregulated auxin transport through auxin–strigolactone interaction
    Miglena Revalska, Anelia Iantcheva
    Plant Cell, Tissue and Organ Culture (PCTOC) 2018 133 3
  • Plant Stress Physiology [Working Title]
    Mehtab Muhammad Aslam, Kashif Akhtar, Joseph K. Karanja, Noor-ul-Ain, Fasih Ullah Haider
    2020
  • Root Biology
    Adrianus P. Claassens, Paul N. Hills
    2018 52
  • Strigolactone could enhances gas-exchange through augmented antioxidant defense system in Salvia nemorosa L. plants subjected to saline conditions stress
    Parisa Sharifi, Siamak Shirani Bidabadi
    Industrial Crops and Products 2020 151
  • Strigolactones Promote Leaf Elongation in Tall Fescue through Upregulation of Cell Cycle Genes and Downregulation of Auxin Transport Genes in Tall Fescue under Different Temperature Regimes
    Hu, Zhang, Huang
    International Journal of Molecular Sciences 2019 20 8

Article Information

vol. 160 no. 3 1329-1341
DOI 
https://doi.org/10.1104/pp.112.202358
PubMed 
22968830

Published By 
American Society of Plant Biologists
Print ISSN 
0032-0889
Online ISSN 
1532-2548
Published Online 
November 01, 2012

Article Versions

  • Older version (September 11, 2012 - 10:23).
  • You are viewing the most recent version of this article.
Copyright & Usage 
© 2012 American Society of Plant Biologists. All Rights Reserved.

PreviousNext
Back to top

Table of Contents

Print
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.
Strigolactones Are Involved in Root Response to Low Phosphate Conditions in Arabidopsis
(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
Strigolactones Are Involved in Root Response to Low Phosphate Conditions in Arabidopsis
Einav Mayzlish-Gati, Carolien De-Cuyper, Sofie Goormachtig, Tom Beeckman, Marnik Vuylsteke, Philip B. Brewer, Christine A. Beveridge, Uri Yermiyahu, Yulia Kaplan, Yael Enzer, Smadar Wininger, Natalie Resnick, Maja Cohen, Yoram Kapulnik, Hinanit Koltai
Plant Physiology Nov 2012, 160 (3) 1329-1341; DOI: 10.1104/pp.112.202358

Citation Manager Formats

  • BibTeX
  • Bookends
  • EasyBib
  • EndNote (tagged)
  • EndNote 8 (xml)
  • Medlars
  • Mendeley
  • Papers
  • RefWorks Tagged
  • Ref Manager
  • RIS
  • Zotero
Request Permissions
Share
Strigolactones Are Involved in Root Response to Low Phosphate Conditions in Arabidopsis
Einav Mayzlish-Gati, Carolien De-Cuyper, Sofie Goormachtig, Tom Beeckman, Marnik Vuylsteke, Philip B. Brewer, Christine A. Beveridge, Uri Yermiyahu, Yulia Kaplan, Yael Enzer, Smadar Wininger, Natalie Resnick, Maja Cohen, Yoram Kapulnik, Hinanit Koltai
Plant Physiology Nov 2012, 160 (3) 1329-1341; DOI: 10.1104/pp.112.202358
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
    • Abstract
    • RESULTS
    • DISCUSSION
    • MATERIALS AND METHODS
    • Acknowledgments
    • Footnotes
    • REFERENCES
  • Figures & Data
  • Info & Metrics
  • PDF

In this issue

Plant Physiology: 160 (3)
Plant Physiology
Vol. 160, Issue 3
Nov 2012
  • Table of Contents
  • Table of Contents (PDF)
  • About the Cover
  • Index by author
  • Advertising (PDF)
  • Ed Board (PDF)
  • Front Matter (PDF)
View this article with LENS

More in this TOC Section

  • An Endogenous Carbon-Sensing Pathway Triggers Increased Auxin Flux and Hypocotyl Elongation
  • Arabidopsis COP1 and SPA Genes Are Essential for Plant Elongation But Not for Acceleration of Flowering Time in Response to a Low Red Light to Far-Red Light Ratio
  • Dynamic Changes in the Distribution of Minerals in Relation to Phytic Acid Accumulation during Rice Seed Development
Show more Article

Similar Articles

Subjects

  • Phosphorus Plant Physiology

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