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Research ArticleGROWTH AND DEVELOPMENT
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Gibberellins and Seed Development in Maize. I. Evidence That Gibberellin/Abscisic Acid Balance Governs Germination versus Maturation Pathways

Constance N. White, William M. Proebsting, Peter Hedden, Carol J. Rivin
Constance N. White
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William M. Proebsting
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Peter Hedden
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Carol J. Rivin
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Published April 2000. DOI: https://doi.org/10.1104/pp.122.4.1081

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Author Information

  1. Constance N. White2,1,
  2. William M. Proebsting2,
  3. Peter Hedden3 and
  4. Carol J. Rivin * ,1
  1. 1 Department of Botany and Plant Pathology, Center for Gene Research and Biotechnology, Oregon State University, Corvallis, Oregon 97331–2902 (C.N.W., C.J.R.);
  2. 2 Department of Horticulture, Oregon State University, Corvallis, Oregon 97331–7304 (W.M.P.); and
  3. 3 IACR-Long Ashton Research Station, Department of Agricultural Science, University of Bristol, Long Ashton, Bristol BS18 9AF, United Kingdom (P.H.)
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Article Information

vol. 122 no. 4 1081-1088
DOI 
https://doi.org/10.1104/pp.122.4.1081
PubMed 
10759503

Published By 
American Society of Plant Biologists
Print ISSN 
0032-0889
Online ISSN 
1532-2548
Published Online 
April 01, 2000

Copyright & Usage 
Copyright © 2000 American Society of Plant Physiologists

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Gibberellins and Seed Development in Maize. I. Evidence That Gibberellin/Abscisic Acid Balance Governs Germination versus Maturation Pathways
Constance N. White, William M. Proebsting, Peter Hedden, Carol J. Rivin
Plant Physiology Apr 2000, 122 (4) 1081-1088; DOI: 10.1104/pp.122.4.1081

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Gibberellins and Seed Development in Maize. I. Evidence That Gibberellin/Abscisic Acid Balance Governs Germination versus Maturation Pathways
Constance N. White, William M. Proebsting, Peter Hedden, Carol J. Rivin
Plant Physiology Apr 2000, 122 (4) 1081-1088; DOI: 10.1104/pp.122.4.1081
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Plant Physiology: 122 (4)
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Vol. 122, Issue 4
Apr 2000
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  • Independent Action of ELF3 and phyB to Control Hypocotyl Elongation and Flowering Time
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