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Research ArticleDEVELOPMENT AND HORMONE ACTION
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ZmPIN1-Mediated Auxin Transport Is Related to Cellular Differentiation during Maize Embryogenesis and Endosperm Development

Cristian Forestan, Silvia Meda, Serena Varotto
Cristian Forestan
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Silvia Meda
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Serena Varotto
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  • For correspondence: serena.varotto@unipd.it

Published March 2010. DOI: https://doi.org/10.1104/pp.109.150193

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Author Information

  1. Cristian Forestan,
  2. Silvia Meda and
  3. Serena Varotto*
  1. Department of Environmental Agronomy and Crop Production, University of Padova, Agripolis, 35020 Legnaro, Italy
  1. *Corresponding author; e-mail serena.varotto{at}unipd.it.
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Article Information

vol. 152 no. 3 1373-1390
DOI 
https://doi.org/10.1104/pp.109.150193
PubMed 
20044449

Published By 
American Society of Plant Biologists
Print ISSN 
0032-0889
Online ISSN 
1532-2548
Published Online 
March 03, 2010

Article Versions

  • Older version (December 31, 2009 - 08:09).
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Copyright & Usage 
© 2010 American Society of Plant Biologists

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ZmPIN1-Mediated Auxin Transport Is Related to Cellular Differentiation during Maize Embryogenesis and Endosperm Development
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ZmPIN1-Mediated Auxin Transport Is Related to Cellular Differentiation during Maize Embryogenesis and Endosperm Development
Cristian Forestan, Silvia Meda, Serena Varotto
Plant Physiology Mar 2010, 152 (3) 1373-1390; DOI: 10.1104/pp.109.150193

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ZmPIN1-Mediated Auxin Transport Is Related to Cellular Differentiation during Maize Embryogenesis and Endosperm Development
Cristian Forestan, Silvia Meda, Serena Varotto
Plant Physiology Mar 2010, 152 (3) 1373-1390; DOI: 10.1104/pp.109.150193
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Plant Physiology: 152 (3)
Plant Physiology
Vol. 152, Issue 3
Mar 2010
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More in this TOC Section

  • An Endogenous Carbon-Sensing Pathway Triggers Increased Auxin Flux and Hypocotyl Elongation
  • Role for Apyrases in Polar Auxin Transport in Arabidopsis
  • 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
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