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Journal of Experimental Botany|August 31, 2006
Cloning of an H+-PPase gene from Thellungiella halophila and its heterologous expression to improve tobacco salt toleranceFeng Gao, Qiang Gao, XiaoGuang Duan, et al.Plant Science : an International Journal of Experimental Plant Biology|October 9, 2016
miRNA alterations are important mechanism in maize adaptations to low-phosphate environmentsZhaoxia Li, Xinrui Zhang, Xiuxia Liu, et al.Plant & Cell Physiology|June 14, 2008
Overexpression of an H+-PPase gene from Thellungiella halophila in cotton enhances salt tolerance and improves growth and photosynthetic performanceSulian Lv, Kewei Zhang, Qiang Gao, et al.BMC Plant Biology|June 19, 2012
Phosphate starvation of maize inhibits lateral root formation and alters gene expression in the lateral root primordium zoneZhaoxia Li, Changzheng Xu, Kunpeng Li, et al.Molecular Biology Reports|April 6, 2010
Heterologous expression of ApGSMT2 and ApDMT2 genes from Aphanothece halophytica enhanced drought tolerance in transgenic tobaccoYing He, Chunmei He, Lihua Li, et al.Planta|November 5, 2014
Reduced expression of starch branching enzyme IIa and IIb in maize endosperm by RNAi constructs greatly increases the amylose content in kernel with nearly normal morphologyYajie Zhao, Ning Li, Bei Li, et al.Journal of Experimental Botany|July 4, 2019
The bHLH family member ZmPTF1 regulates drought tolerance in maize by promoting root development and abscisic acid synthesisZhaoxia Li, Can Liu, Ying Zhang, et al.Planta|February 12, 2011
Overexpression of transcription factor ZmPTF1 improves low phosphate tolerance of maize by regulating carbon metabolism and root growthZhaoxia Li, Qiang Gao, Yazheng Liu, et al.Frontiers in Plant Science|October 31, 2018
Heterologous Expression of the Transcription Factor EsNAC1 in Arabidopsis Enhances Abiotic Stress Resistance and Retards Growth by Regulating the Expression of Different Target GenesCan Liu, Qinghua Sun, Lei Zhao, et al.The Plant Journal : for Cell and Molecular Biology|May 21, 2008
Comparative proteome analyses of phosphorus responses in maize (Zea mays L.) roots of wild-type and a low-P-tolerant mutant reveal root characteristics associated with phosphorus efficiencyKunpeng Li, Changzheng Xu, Zhaoxia Li, et al.Pageof 5