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转录因子 ZmNAC20 通过促进气孔关闭和激活玉米中应激响应基因的表达来提高耐旱性。

Transcription Factor ZmNAC20 Improves Drought Resistance by Promoting Stomatal Closure and Activating Expression of Stress-Responsive Genes in Maize.

机构信息

College of Life Sciences, National Key Laboratory of Wheat and Maize Crop Science, Henan Agricultural University, Zhengzhou 450046, China.

出版信息

Int J Mol Sci. 2023 Mar 1;24(5):4712. doi: 10.3390/ijms24054712.

Abstract

Drought is a major environmental threat that limits crop growth, development, and productivity worldwide. Improving drought resistance with genetic engineering methods is necessary to tackle global climate change. It is well known that NAC (NAM, ATAF and CUC) transcription factors play a critical role in coping with drought stress in plants. In this study, we identified an NAC transcription factor ZmNAC20, which regulates drought stress response in maize. expression was rapidly upregulated by drought and abscisic acid (ABA). Under drought conditions, the -overexpressing plants had higher relative water content and survival rate than the wild-type maize inbred B104, suggesting that overexpression of improved drought resistance in maize. The detached leaves of -overexpressing plants lost less water than those of wild-type B104 after dehydration. Overexpression of promoted stomatal closure in response to ABA. ZmNAC20 was localized in the nucleus and regulated the expression of many genes involved in drought stress response using RNA-Seq analysis. The study indicated that ZmNAC20 improved drought resistance by promoting stomatal closure and activating the expression of stress-responsible genes in maize. Our findings provide a valuable gene and new clues on improving crop drought resistance.

摘要

干旱是一种主要的环境威胁,限制了全球作物的生长、发育和生产力。为了应对全球气候变化,必须采用遗传工程方法来提高作物的抗旱性。众所周知,NAC(NAM、ATAF 和 CUC)转录因子在植物应对干旱胁迫中起着关键作用。本研究鉴定了一个 NAC 转录因子 ZmNAC20,它调节玉米对干旱胁迫的反应。表达被干旱和脱落酸(ABA)迅速上调。在干旱条件下,过表达植物的相对水含量和存活率均高于野生型自交系 B104,表明过表达提高了玉米的抗旱性。过表达植物的离体叶片在脱水后比野生型 B104 失水更少。过表达促进了 ABA 诱导的气孔关闭。ZmNAC20 定位于细胞核内,并通过 RNA-Seq 分析调节许多参与干旱胁迫反应的基因的表达。研究表明,ZmNAC20 通过促进气孔关闭和激活玉米中与胁迫相关基因的表达来提高抗旱性。我们的研究结果为提高作物抗旱性提供了有价值的基因和新线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/67fa/10003513/813e36583d5e/ijms-24-04712-g001.jpg

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