Feifei Yu,Yaorong Wu,Qi Xie. Precise protein post-translational modifications modulate ABI5 activity. Trends in Plant Science. DOI:10.1016/j.tplants.2015.05.004
2015-06-23Hong Yu,Jiayang Li. Plant and animal organelles in cell death. Oncotarget
2015-06-23Yang C, Ma B, He SJ, Xiong Q, Duan KX, Yin CC, Chen H, Lu X, Chen SY, Zhang JS. MHZ6/OsEIL1 and OsEIL2 Regulate Ethylene Response of Roots and Coleoptiles and Negatively Affect Salt Tolerance in Rice. Plant Physiology. DOI:10.1104/pp.15.00353
2015-06-04Debao Huang,Shaogan Wang,Baocai Zhang,Keke Shang-Guan,Yanyun Shi,Dongmei Zhang,Xiangling Liu,Kun Wu,Zuopeng Xu,Xiangdong Fu and Yihua Zhou. A Gibberellin-Mediated DELLA-NAC Signaling Cascade Regulates Cellulose Synthesis in Rice. The Plant Cell. DOI:10.1105/tpc.15.00015
2015-05-25Tao JJ,Cao YR,Chen HW,Wei W,Li QT,Ma B,Zhang WK,Chen SY and Zhang JS. Tobacco TCTP interacts with ethylene receptor NTHK1 and enhances plant growth through promotion of cell proliferation. Plant Physiology. DOI:10.1104/pp.15.00355
2015-05-15Shuaibin Zhang,Bing Zhou,Yanyuan Kang,Xia Cui,Ao Liu,Angelique Deleris,Maxim VC Greenberg,Xiekui Cui,Qi Qiu,Falong Lu,James A Wohlschlegel,Steven E Jacobsen & Xiaofeng Cao. C-terminal domains of histone demethylase JMJ14 interact with a pair of NAC transcription factors to mediate specific chromatin association. Cell Discovery. DOI:10.1038/celldisc.2015.3
2015-04-30Chengzhen Liang,Guangyong Zheng,Wenzhen Li,Yiqin Wang,Bin Hu,Hongru Wang,Hongkai Wu,Yangwen Qian,Xin-Guang Zhu,Duan-Xian Tan,Shou-Yi Chen and Chengcai Chu. Melatonin Delays Leaf Senescence and Enhances Salt Stress Tolerance in Rice. Journal of Pineal Research. DOI:10.1111/jpi.12243
2015-04-29Cui-Cui Yin,Biao Ma,Derek Phillip Collinge,Barry James Pogson,Si-Jie He,Qing Xiong,Kai-Xuan Duan,Hui Chen,Chao Yang,Xiang Lu,Yi-Qin Wang,Wan-Ke Zhang,Cheng-Cai Chu,Xiao-Hong Sun,Shuang Fang,Jin-Fang Chu,Tie-Gang Lu,Shou-Yi Chen,and Jin-Song Zhang. Ethylene Responses in Rice Roots and Coleoptiles Are Differentially Regulated by a Carotenoid Isomerase-Mediated Abscisic Acid Pathway. The Plant Cell. DOI:10.1105/tpc.15.00080
2015-04-06Bing Wang,Jinfang Chu,Tianying Yu,Qian Xu,Xiaohong Sun,Jia Yuan,Guosheng Xiong,Guodong Wang,Yonghong Wang,and Jiayang Li. Tryptophan-independent auxin biosynthesis contributes to early embryogenesis in Arabidopsis. PNAS. DOI:10.1073/pnas.1503998112
2015-03-27