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The Plant Genome|November 24, 2020
A Transcriptome Profile for Developing Seed of Polyploid CottonRan Hovav, Adi Faigenboim-Doron, Noa Kadmon, et al.Plant Physiology|March 13, 2024
Subtilisin-like proteases from Fusarium graminearum induce plant cell death and contribute to virulenceJiang Xiong, Mingyu Luo, Yunshen Chen, et al.Plant Molecular Biology|April 2, 2025
A large-scale gene co-expression network analysis reveals Glutamate Dehydrogenase 2 (GhGDH2_D03) as a hub regulator of salt and salt-alkali tolerance in cottonRui Hao, Zhan Gao, Xianliang Zhang, et al.Proceedings of the National Academy of Sciences of the United States of America|December 14, 2011
Parallel up-regulation of the profilin gene family following independent domestication of diploid and allopolyploid cotton (Gossypium)Ying Bao, Guanjing Hu, Lex E Flagel, et al.Genes|June 28, 2023
Domestication over Speciation in Allopolyploid Cotton Species: A Stronger Transcriptomic PullJosef J Jareczek, Corrinne E Grover, Guanjing Hu, et al.Genome Biology and Evolution|January 8, 2017
Evolutionary Conservation and Divergence of Gene Coexpression Networks in Gossypium (Cotton) SeedsGuanjing Hu, Ran Hovav, Corrinne E Grover, et al.G3 (Bethesda, Md.)|April 19, 2021
The Gossypium stocksii genome as a novel resource for cotton improvementCorrinne E Grover, Daojun Yuan, Mark A Arick, et al.G3 (Bethesda, Md.)|September 22, 2021
The Gossypium anomalum genome as a resource for cotton improvement and evolutionary analysis of hybrid incompatibilityCorrinne E Grover, Daojun Yuan, Mark A Arick, et al.Journal of Agricultural and Food Chemistry|May 7, 2024
Integrated Transcriptomic and Metabolomic Analysis Reveal the Dynamic Process of Bama Hemp Seed Development and the Accumulation Mechanism of α-Linolenic Acid and Linoleic AcidJingzhi Nie, Wenyue Ma, Xueyuan Ma, et al.Advanced Science (Weinheim, Baden-Wurttemberg, Germany)|May 24, 2021
Parallel and Intertwining Threads of Domestication in Allopolyploid CottonDaojun Yuan, Corrinne E Grover, Guanjing Hu, et al.Pageof 5