The histidine phosphotransfer <scp>AHP4</scp> plays a negative role in <i>Arabidopsis</i> plant response to drought
Chien Van Ha(Texas Tech University), Lam‐Son Phan Tran(Texas Tech University), David J. Burritt(University of Otago), Mohammad Golam Mostofa(Bangabandhu Sheikh Mujibur Rahman Agricultural University), Keiichi Mochida(Kihara Institute for Biological Research), Maho Tanaka(Pioneer (United States)), Hien Thuy Bui(University of Missouri), Mayuko Sato(RIKEN Center for Sustainable Resource Science), Kiminori Toyooka(RIKEN Center for Sustainable Resource Science), Kien Huu Nguyen(Agricultural Genetics Institute), Yasuko Watanabe(RIKEN Center for Sustainable Resource Science), Motoaki Seki(RIKEN Center for Sustainable Resource Science), Cheyenne M. Anderson(Donald Danforth Plant Science Center), Weiqiang Li(Anhui University), Ru Zhang(Chongqing University), Cuong Duy Tran(RIKEN Center for Sustainable Resource Science), Yuriko Osakabe(Tokushima University), Huong Mai Nguyen(Sungkyunkwan University), Vy Le(Texas Tech University)
Cited by 18
Related Papers
Response of plants to water stress
|Frontiers in Plant Science|2014|1.6k
Ectopic colonization of oral bacteria in the intestine drives T <sub>H</sub> 1 cell induction and inflammation
|Science|2017|952
Hydrogen peroxide priming modulates abiotic oxidative stress tolerance: insights from ROS detoxification and scavenging
|Frontiers in Plant Science|2015|817
Nitric Oxide Mitigates Salt Stress by Regulating Levels of Osmolytes and Antioxidant Enzymes in Chickpea
|Frontiers in Plant Science|2016|582