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对番茄耐热相关转录因子DREBA4型(SlDREBA4)的特性分析

Characterization of the DREBA4-Type Transcription Factor (SlDREBA4), Which Contributes to Heat Tolerance in Tomatoes.

作者信息

Mao Lianzhen, Deng Minghua, Jiang Shurui, Zhu Haishan, Yang Zhengan, Yue Yanling, Zhao Kai

机构信息

College of Horticulture and Landscape, Yunnan Agricultural University, Kunming, China.

出版信息

Front Plant Sci. 2020 Sep 30;11:554520. doi: 10.3389/fpls.2020.554520. eCollection 2020.

Abstract

Dehydration-responsive element binding (DREB) transcription factors play crucial regulatory roles in abiotic stress. The only DREB transcription factor in tomato (), SlDREBA4 (Accession No. MN197531), which was determined to be a DREBA4 subfamily member, was isolated from cv. Microtom using high-temperature-induced digital gene expression (DGE) profiling technology. The constitutive expression of was detected in different tissues of Microtom plants. In addition to responding to high temperature, was up-regulated after exposure to abscisic acid (ABA), cold, drought and high-salt conditions. Transgenic overexpression and silencing systems revealed that  could alter the resistance of transgenic Microtom plants to heat stress by altering the content of osmolytes and stress hormones, and the activities of antioxidant enzymes at the physiologic level. Moreover, regulated the downstream gene expression of many heat shock proteins (Hsp), as well as calcium-binding protein enriched in the pathways of protein processing in endoplasmic reticulum (ko04141) and plant-pathogen interaction (ko04626) at the molecular level. SlDREBA4 also induces the expression of biosynthesis genes in jasmonic acid (JA), salicylic acid (SA), and ethylene (ETH), and specifically binds to the DRE elements (core sequence, A/GCCGAC) of the genes downstream from SlDREBA4. This study provides new genetic resources and rationales for tomato heat-tolerance breeding and the heat-related regulatory mechanisms of DREBs.

摘要

脱水响应元件结合(DREB)转录因子在非生物胁迫中发挥着关键的调控作用。番茄中唯一的DREB转录因子SlDREBA4(登录号MN197531),经鉴定为DREBA4亚家族成员,采用高温诱导数字基因表达(DGE)谱技术从Microtom品种中分离得到。在Microtom植株的不同组织中检测到SlDREBA4的组成型表达。除了对高温有响应外,SlDREBA4在暴露于脱落酸(ABA)、低温、干旱和高盐条件后也会上调。转基因过表达和沉默系统表明,SlDREBA4可通过改变渗透调节物质和胁迫激素的含量以及生理水平上抗氧化酶的活性,改变转基因Microtom植株对热胁迫的抗性。此外,SlDREBA4在分子水平上调控许多热休克蛋白(Hsp)的下游基因表达,以及在内质网蛋白质加工途径(ko04141)和植物-病原体相互作用途径(ko04626)中富集的钙结合蛋白。SlDREBA4还诱导茉莉酸(JA)合成基因、水杨酸(SA)合成基因和乙烯(ETH)合成基因的表达,并特异性结合SlDREBA4下游基因的DRE元件(核心序列,A/GCCGAC)。本研究为番茄耐热性育种以及DREB与热相关的调控机制提供了新的遗传资源和理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ecdc/7554514/354cb848bfb1/fpls-11-554520-g001.jpg

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