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Frontiers in Plant Science|October 27, 2015
Transition from somatic embryo to friable embryogenic callus in cassava: dynamic changes in cellular structure, physiological status, and gene expression profilesQiuxiang Ma, Wenzhi Zhou, Peng ZhangJournal of Pineal Research|March 19, 2016
Melatonin attenuates postharvest physiological deterioration of cassava storage rootsQiuxiang Ma, Ting Zhang, Peng Zhang, et al.Journal of Integrative Plant Biology|May 14, 2011
Cassava genetic transformation and its application in breedingJia Liu, Qijie Zheng, Qiuxiang Ma, et al.Frontiers in Plant Science|May 13, 2022
MeNPF4.5 Improves Cassava Nitrogen Use Efficiency and Yield by Regulating Nitrogen Uptake and AllocationQiongyue Liang, Mengmeng Dong, Minghua Gu, et al.International Journal of Molecular Sciences|August 26, 2022
Knockdown of p-Coumaroyl Shikimate/Quinate 3'-Hydroxylase Delays the Occurrence of Post-Harvest Physiological Deterioration in Cassava Storage RootsQiuxiang Ma, Jia Xu, Yancai Feng, et al.Frontiers in Plant Science|December 22, 2016
Divergent Regulation of CBF Regulon on Cold Tolerance and Plant Phenotype in Cassava Overexpressing Arabidopsis CBF3 GeneDong An, Qiuxiang Ma, Wei Yan, et al.Plant Molecular Biology|March 5, 2017
Cassava C-repeat binding factor 1 gene responds to low temperature and enhances cold tolerance when overexpressed in Arabidopsis and cassavaDong An, Qiuxiang Ma, Hongxia Wang, et al.Journal of Integrative Plant Biology|February 23, 2022
Lysozyme inhibits postharvest physiological deterioration of cassavaXiaoyun Wu, Jia Xu, Qiuxiang Ma, et al.Scientific Reports|August 31, 2017
Alpha-Glucan, Water Dikinase 1 Affects Starch Metabolism and Storage Root Growth in Cassava (Manihot esculenta Crantz)Wenzhi Zhou, Shutao He, Maliwan Naconsie, et al.Journal of Experimental Botany|February 8, 2022
Starch synthase II plays a crucial role in starch biosynthesis and the formation of multienzyme complexes in cassava storage rootsShutao He, Xiaomeng Hao, Shanshan Wang, et al.Pageof 2