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JRE4 是番茄中与防御相关的甾体糖生物碱的主要转录调控因子。

JRE4 is a master transcriptional regulator of defense-related steroidal glycoalkaloids in tomato.

机构信息

Graduate School of Agricultural Science, Kobe University, Kobe, Japan.

Faculty of Industrial Science and Technology, Tokyo University of Science, Tokyo, Japan.

出版信息

Plant J. 2018 Jun;94(6):975-990. doi: 10.1111/tpj.13911. Epub 2018 Apr 29.

Abstract

Steroidal glycoalkaloids (SGAs) are specialized anti-nutritional metabolites that accumulate in Solanum lycopersicum (tomato) and Solanum tuberosum (potato). A series of SGA biosynthetic genes is known to be upregulated in Solanaceae species by jasmonate-responsive Ethylene Response Factor transcription factors, including JRE4 (otherwise known as GAME9), but the exact regulatory significance in planta of each factor has remained unaddressed. Here, via TILLING-based screening of an EMS-mutagenized tomato population, we isolated a JRE4 loss-of-function line that carries an amino acid residue missense change in a region of the protein important for DNA binding. In this jre4 mutant, we observed downregulated expression of SGA biosynthetic genes and decreased SGA accumulation. Moreover, JRE4 overexpression stimulated SGA production. Further characterization of jre4 plants revealed their increased susceptibility to the generalist herbivore Spodoptera litura larvae. This susceptibility illustrates that herbivory resistance is dependent on JRE4-mediated defense responses, which include SGA accumulation. Ethylene treatment attenuated the jasmonate-mediated JRE4 expression induction and downstream SGA biosynthesis in tomato leaves and hairy roots. Overall, this study indicated that JRE4 functions as a primary master regulator of SGA biosynthesis, and thereby contributes toward plant defense against chewing insects.

摘要

甾体糖苷生物碱(SGAs)是在茄科植物(番茄和马铃薯)中积累的特殊抗营养代谢物。茉莉酸响应乙烯响应因子转录因子(包括 JRE4,也称为 GAME9)已知可上调茄科植物中的一系列 SGA 生物合成基因,但每个因子在植物体内的确切调控意义尚未得到解决。在这里,我们通过基于 TILLING 的 EMS 诱变番茄群体的筛选,分离到一个 JRE4 功能丧失系,该系在蛋白质中与 DNA 结合重要的区域发生氨基酸残基错义变化。在这个 jre4 突变体中,我们观察到 SGA 生物合成基因的表达下调和 SGA 积累减少。此外,JRE4 的过表达刺激了 SGA 的产生。对 jre4 植物的进一步表征表明,它们对多食性鳞翅目昆虫烟青虫幼虫的敏感性增加。这种易感性表明,抗虫性依赖于 JRE4 介导的防御反应,包括 SGA 积累。乙烯处理减弱了番茄叶片和毛状根中茉莉酸介导的 JRE4 表达诱导和下游 SGA 生物合成。总的来说,这项研究表明,JRE4 作为 SGA 生物合成的主要主调控因子发挥作用,从而有助于植物抵御咀嚼昆虫。

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