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SbMYC2 通过直接激活高粱中的 SbGR1 介导茉莉酸信号转导提高耐旱性。

SbMYC2 mediates jasmonic acid signaling to improve drought tolerance via directly activating SbGR1 in sorghum.

机构信息

State Key Laboratory of Pharmaceutical Biotechnology, School of Life Sciences, Nanjing University, Nanjing, 210023, China.

College of Life Science and Technology, Heilongjiang Bayi Agricultural University, Daqing, 163319, Heilongjiang Province, China.

出版信息

Theor Appl Genet. 2024 Mar 6;137(3):72. doi: 10.1007/s00122-024-04578-0.

Abstract

SbMYC2 functions as a key regulator under JA signaling in enhancing drought tolerance of sorghum through direct activating SbGR1. Drought stress is one of the major threats to crop yield. In response to drought stress, functions of basic helix-loop-helix (bHLH) transcription factors (TFs) have been reported in Arabidopsis and rice, but little is known for sorghum. Here, we characterized the function of SbMYC2, a bHLH TF in sorghum, and found that SbMYC2 responded most significantly to PEG-simulated drought stress and JA treatments. Overexpression of SbMYC2 significantly enhanced drought tolerance in Arabidopsis, rice and sorghum. In addition, it reduced reactive oxygen species (ROS) accumulation and increased chlorophyll content in sorghum leaves. While silencing SbMYC2 by virus-induced gene silencing (VIGS) resulted in compromised drought tolerance of sorghum seedlings. Moreover, SbMYC2 can directly activate the expression of GLUTATHIONE-DISULFIDE REDUCTASE gene SbGR1. SbGR1 silencing led to significantly weakened drought tolerance of sorghum, and higher ROS accumulation and lower chlorophyll content in sorghum leaves were detected. In addition, SbMYC2 can interact with SbJAZs, suppressors of JA signaling, and thus can mediate JA signaling to activate SbGR1, thereby regulating sorghum's tolerance to drought stress. Overall, our findings demonstrate that bHLH TF SbMYC2 plays an important role in sorghum's response to drought stress, thus providing one theoretical basis for genetic enhancement of sorghum and even rice.

摘要

SbMYC2 在 JA 信号转导下作为关键调控因子发挥作用,通过直接激活 SbGR1 增强高粱的耐旱性。干旱胁迫是作物产量的主要威胁之一。在应对干旱胁迫时,已在拟南芥和水稻中报道了基本螺旋-环-螺旋(bHLH)转录因子(TF)的功能,但对高粱知之甚少。在这里,我们研究了 SbMYC2 在高粱中的功能,它是一个 bHLH TF,发现 SbMYC2 对 PEG 模拟的干旱胁迫和 JA 处理响应最显著。SbMYC2 的过表达显著增强了拟南芥、水稻和高粱的耐旱性。此外,它减少了高粱叶片中活性氧(ROS)的积累并增加了叶绿素含量。而通过病毒诱导的基因沉默(VIGS)沉默 SbMYC2 导致高粱幼苗的耐旱性受损。此外,SbMYC2 可以直接激活谷胱甘肽-二硫化物还原酶基因 SbGR1 的表达。SbGR1 的沉默导致高粱耐旱性显著减弱,高粱叶片中 ROS 积累增加,叶绿素含量降低。此外,SbMYC2 可以与 SbJAZs 相互作用,抑制 JA 信号,从而介导 JA 信号激活 SbGR1,从而调节高粱对干旱胁迫的耐受性。总之,我们的研究结果表明,bHLH TF SbMYC2 在高粱应对干旱胁迫中起着重要作用,从而为高粱甚至水稻的遗传改良提供了一个理论基础。

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