Physiological characteristics and related gene expression of after-ripening on seed dormancy release in rice
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Title
Physiological characteristics and related gene expression of after-ripening on seed dormancy release in rice
Authors
Keywords
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Journal
PLANT BIOLOGY
Volume 17, Issue 6, Pages 1156-1164
Publisher
Wiley
Online
2015-07-23
DOI
10.1111/plb.12371
References
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Related references
Note: Only part of the references are listed.- Dynamic quantitative trait locus analysis of seed dormancy at three development stages in rice
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- Regulation of Wheat Seed Dormancy by After-Ripening Is Mediated by Specific Transcriptional Switches That Induce Changes in Seed Hormone Metabolism and Signaling
- (2013) Aihua Liu et al. PLoS One
- Auxin controls seed dormancy through stimulation of abscisic acid signaling by inducing ARF-mediated ABI3 activation in Arabidopsis
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- Highly sensitive and quantitative profiling of acidic phytohormones using derivatization approach coupled with nano-LC–ESI-Q-TOF-MS analysis
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- QTL Analysis of Na+ and K+ Concentrations in Roots and Shoots under Different Levels of NaCl Stress in Rice (Oryza sativa L.)
- (2012) Zhoufei Wang et al. PLoS One
- Identification of QTLs with main, epistatic and QTL × environment interaction effects for salt tolerance in rice seedlings under different salinity conditions
- (2012) Zhoufei Wang et al. THEORETICAL AND APPLIED GENETICS
- Targeted mRNA Oxidation Regulates Sunflower Seed Dormancy Alleviation during Dry After-Ripening
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- Abscisic acid and the control of seed dormancy and germination
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- Genome-wide analysis of genes targeted by qLTG3-1 controlling low-temperature germinability in rice
- (2009) Kenji Fujino et al. PLANT MOLECULAR BIOLOGY
- Anatomical and Transcriptomic Studies of the Coleorhiza Reveal the Importance of This Tissue in Regulating Dormancy in Barley
- (2009) J. M. Barrero et al. PLANT PHYSIOLOGY
- Molecular networks regulating Arabidopsis seed maturation, after-ripening, dormancy and germination
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- Molecular identification of a major quantitative trait locus, qLTG3-1, controlling low-temperature germinability in rice
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- High Temperature-Induced Abscisic Acid Biosynthesis and Its Role in the Inhibition of Gibberellin Action in Arabidopsis Seeds
- (2007) S. Toh et al. PLANT PHYSIOLOGY
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