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Proceedings of the National Academy of Sciences of the United States of America|June 7, 2018
Cellulose synthase complexes display distinct dynamic behaviors during xylem transdifferentiationYoichiro Watanabe, Rene Schneider, Sarah Barkwill, et al.The Plant Cell|May 28, 2017
Cellulose Synthesis and Cell Expansion Are Regulated by Different Mechanisms in Growing Arabidopsis HypocotylsAlexander Ivakov, Anna Flis, Federico Apelt, et al.Journal of Experimental Botany|April 4, 2017
The 2'-O-methyladenosine nucleoside modification gene OsTRM13 positively regulates salt stress tolerance in riceYoumei Wang, Dongqin Li, Junbao Gao, et al.Plant Physiology|August 6, 2015
Salt-Related MYB1 Coordinates Abscisic Acid Biosynthesis and Signaling during Salt Stress in ArabidopsisTing Wang, Takayuki Tohge, Alexander Ivakov, et al.Proceedings of the National Academy of Sciences of the United States of America|July 10, 2010
Identification of a cellulose synthase-associated protein required for cellulose biosynthesisYing Gu, Nick Kaplinsky, Martin Bringmann, et al.BMC Genomics|January 11, 2017
Domestication of rice has reduced the occurrence of transposable elements within gene coding regionsXukai Li, Kai Guo, Xiaobo Zhu, et al.The Plant Cell|January 24, 2007
The Arabidopsis irregular xylem8 mutant is deficient in glucuronoxylan and homogalacturonan, which are essential for secondary cell wall integrityStaffan Persson, Kerry Hosmer Caffall, Glenn Freshour, et al.Science Advances|September 19, 2025
Auxin controls rice root angle via kinase OsILA1-mediated cell wall modificationsXiaoyun Song, Suhang Yu, Qiaoyi Li, et al.The Plant Cell|October 23, 2020
Grass-Specific EPAD1 Is Essential for Pollen Exine Patterning in RiceHuanJun Li, Yu-Jin Kim, Liu Yang, et al.Science Advances|November 29, 2024
FERONIA adjusts CC1 phosphorylation to control microtubule array behavior in response to salt stressXin Liu, Liu Wang, Linlin Liu, et al.Pageof 20