The transcription factor ZmNAC49 reduces stomatal density and improves drought tolerance in maize
Xiang Yang, Sun Xiujuan, Bian Xiangli, Wei Tianhui, Han Tong, Yan Jingwei, Zhang Aying
Journal:JOURNAL OF EXPERIMENTAL BOTANY
IF:5.91
DOI:10.1093/jxb/eraa507
PMID:33130877
Published:2020-11-01
research field:分子生物学农业遗传学进化生物学植物科学
Abstract
Drought stress severely limits the growth, development, and productivity of crops, and therefore understanding the mechanisms by which plants respond to drought is crucial. In this study, we cloned a maize NAC transcription factor, ZmNAC49, and identified its function in response to drought stress. We found that ZmNAC49 is localized in the nucleus and has transcriptional activation activity. ZmNAC49 expression is rapidly and strongly induced by drought stress, and overexpression enhances stress tolerance in maize. Overexpression also significant decreases the transpiration rate, stomatal conductance, and stomatal density in maize. Detailed study showed that ZmNAC49 overexpression affects the expression of genes related to stomatal development, namely ZmTMM, ZmSDD1, ZmMUTE, and ZmFAMA. In addition, we found that ZmNAC49 can directly bind to the promoter of ZmMUTE and suppress its expression. Taken together, our results show that the transcription factor ZmNAC49 represses ZmMUTE expression, reduces stomatal density, and thereby enhances drought tolerance in maize.
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