Abstract Background Plant stress responses and mechanisms determining tolerance are controlled by diverse sets of genes. Transcription factors (TFs) have been implicated in conferring drought tolerance under drought stress conditions, and the identification of their target genes can elucidate molecular regulatory networks that orchestrate tolerance mechanisms. Results We generated transgenic rice plants overexpressing the 4 rice TFs, OsNAC5, 6, 9, and 10, under the control of the root-specific RCc3 promoter. We showed that they were tolerant to drought stress with reduced loss of grain yield under drought conditions compared with wild type plants. To understand the molecular mechanisms underlying this tolerance, we here performed chromatin ...
HIGHLIGHTSOverexpressing and RNA interfering OsDRAP1 transgenic rice plants exhibited significantly ...
<p align="right"> <table align="left" border="1" cellpadding="0" cellspacing="0" styl...
Drought is a major constraint affecting rice production and causing yield reduction of up to 60% in ...
Background Plant stress responses and mechanisms determining tolerance are controll...
학위논문 (석사)-- 서울대학교 국제농업기술대학원 : 국제농업기술학과, 2017. 2. 김주곤.Environmental stresses such as drought, negativ...
<p>Plants have evolved to have sophisticated adaptation mechanisms to cope with drought stress by re...
<p>Plants have evolved to have sophisticated adaptation mechanisms to cope with drought stress by re...
<p>Plants have evolved to have sophisticated adaptation mechanisms to cope with drought stress by re...
Plants have evolved to have sophisticated adaptation mechanisms to cope with drought stress by repro...
<p>Plants have evolved to have sophisticated adaptation mechanisms to cope with drought stress by re...
<p>Plants have evolved to have sophisticated adaptation mechanisms to cope with drought stress by re...
<p>Plants have evolved to have sophisticated adaptation mechanisms to cope with drought stress by re...
© 2022 Elsevier B.V.Land plants have developed a comprehensive system to cope with the drought stres...
<div><p>Understanding the molecular mechanisms that underlie plant responses to drought stress is ch...
Understanding the molecular mechanisms that underlie plant responses to drought stress is challengin...
HIGHLIGHTSOverexpressing and RNA interfering OsDRAP1 transgenic rice plants exhibited significantly ...
<p align="right"> <table align="left" border="1" cellpadding="0" cellspacing="0" styl...
Drought is a major constraint affecting rice production and causing yield reduction of up to 60% in ...
Background Plant stress responses and mechanisms determining tolerance are controll...
학위논문 (석사)-- 서울대학교 국제농업기술대학원 : 국제농업기술학과, 2017. 2. 김주곤.Environmental stresses such as drought, negativ...
<p>Plants have evolved to have sophisticated adaptation mechanisms to cope with drought stress by re...
<p>Plants have evolved to have sophisticated adaptation mechanisms to cope with drought stress by re...
<p>Plants have evolved to have sophisticated adaptation mechanisms to cope with drought stress by re...
Plants have evolved to have sophisticated adaptation mechanisms to cope with drought stress by repro...
<p>Plants have evolved to have sophisticated adaptation mechanisms to cope with drought stress by re...
<p>Plants have evolved to have sophisticated adaptation mechanisms to cope with drought stress by re...
<p>Plants have evolved to have sophisticated adaptation mechanisms to cope with drought stress by re...
© 2022 Elsevier B.V.Land plants have developed a comprehensive system to cope with the drought stres...
<div><p>Understanding the molecular mechanisms that underlie plant responses to drought stress is ch...
Understanding the molecular mechanisms that underlie plant responses to drought stress is challengin...
HIGHLIGHTSOverexpressing and RNA interfering OsDRAP1 transgenic rice plants exhibited significantly ...
<p align="right"> <table align="left" border="1" cellpadding="0" cellspacing="0" styl...
Drought is a major constraint affecting rice production and causing yield reduction of up to 60% in ...