耐旱性
生物
MYB公司
渗入
基因
等位基因
索引
栽培
基因敲除
转录因子
表型
农学
遗传学
基因型
单核苷酸多态性
作者
Hude Mao,Shumin Li,Bin Chen,Chao Jian,Fangming Mei,Yifang Zhang,Fangfang Li,Nan Chen,Tian Li,Linying Du,Li Ding,Zhongxue Wang,Xinxiu Cheng,Xiaojing Wang,Zhensheng Kang
出处
期刊:Molecular Plant
[Elsevier BV]
日期:2021-11-15
卷期号:15 (2): 276-292
被引量:246
标识
DOI:10.1016/j.molp.2021.11.007
摘要
Drought is a major environmental factor limiting wheat production worldwide, and developing drought-tolerant cultivars is a central challenge for wheat breeders globally. Therefore, it is important to identify genetic components determining drought tolerance in wheat. In this study, we identified a wheat NAC gene (TaNAC071-A) that is tightly associated with drought tolerance by a genome-wide association study. Knockdown of TaNAC071-A in wheat attenuated plant drought tolerance, whereas its overexpression significantly enhanced drought tolerance through improved water-use efficiency and increased expression of stress-responsive genes. This heightened water-saving mechanism mitigated the yield loss caused by water deficit. Further candidate gene association analysis showed that a 108-bp insertion in the promoter of TaNAC071-A alters its expression level and contributes to variation in drought tolerance among wheat accessions. This insertion contains two MYB cis-regulatory elements (CREs) that can be directly bound by the MYB transcription activator, TaMYBL1, thereby leading to increased TaNAC071-A expression and plant drought tolerance. Importantly, introgression of this 108-bp insertion allele, TaNAC071-AIn-693, into drought-sensitive cultivars could improve their drought tolerance, demonstrating that it is a valuable genetic resource for wheat breeding. Taken together, our findings highlight a major breakthrough in determining the genetic basis underlying phenotypic variation in wheat drought tolerance and showcase the potential of exploiting CRE-containing indels for improving important agronomical traits.
科研通智能强力驱动
Strongly Powered by AbleSci AI