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首页> 外文期刊>Molecular & cellular proteomics: MCP >Proteomic and Virus-induced Gene Silencing (VIGS) analyses reveal that gossypol, brassinosteroids, and jasmonic acid contribute to the resistance of cotton to verticillium dahliae
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Proteomic and Virus-induced Gene Silencing (VIGS) analyses reveal that gossypol, brassinosteroids, and jasmonic acid contribute to the resistance of cotton to verticillium dahliae

机译:蛋白质组学和病毒诱导的基因沉默(VIGS)分析表明棉酚,油菜素甾体和茉莉酸有助于棉花对黄萎病的抗性

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摘要

Verticillium wilt causes massive annual losses of cotton yield, but the mechanism of cotton resistance to Verticillium dahliae is complex and poorly understood. In this study, a comparative proteomic analysis was performed in resistant cotton (Gossypium barbadense cv7124) on infection with V. dahliae. A total of 188 differentially expressed proteins were identified by mass spectrometry (MALDI-TOF/TOF) analysis and could be classified into 17 biological processes based on Gene Ontology annotation. Most of these proteins were implicated in stimulus response, cellular processes and metabolic processes. Based on the proteomic analysis, several genes involved in secondary metabolism, reactive oxygen burst and phytohormone signaling pathways were identified for further physiological and molecular analysis. The roles of the corresponding genes were further characterized by employing virus-induced gene silencing (VIGS). Based on the results, we suggest that the production of gossypol is sufficient to affect the cotton resistance to V. dahliae. Silencing of GbCAD1, a key enzyme involving in gossypol biosynthesis, compromised cotton resistance to V. dahliae. Reactive oxygen species and salicylic acid signaling may be also implicated as regulators in cotton responsive to V. dahliae according to the analysis of GbSSI2, an important regulator in the crosstalk between salicylic acid and jasmonic acid signal pathways. Moreover, brassinosteroids and jasmonic acid signaling may play essential roles in the cotton disease resistance to V. dahliae. The brassinosteroids signaling was activated in cotton on inoculation with V. dahliae and the disease resistance of cotton was enhanced after exogenous application of brassinolide. Meanwhile, jasmonic acid signaling was also activated in cotton after inoculation with V. dahliae and brassinolide application. These data provide highlights in the molecular basis of cotton resistance to V. dahliae.
机译:黄萎病每年造成棉花产量的巨大损失,但是棉花对大黄萎病的抗性机制很复杂,人们对此知之甚少。在这项研究中,在抗性棉(Gossypium barbadense cv7124)上感染了大丽花弧菌,进行了比较蛋白质组学分析。质谱(MALDI-TOF / TOF)分析共鉴定了188个差异表达蛋白,根据基因本体论注释,该蛋白可分为17个生物学过程。这些蛋白质中的大多数与刺激反应,细胞过程和代谢过程有关。基于蛋白质组学分析,鉴定了涉及次级代谢,活性氧爆发和植物激素信号传导途径的几个基因,用于进一步的生理和分子分析。通过采用病毒诱导的基因沉默(VIGS)进一步表征了相应基因的作用。根据结果​​,我们认为棉酚的产量足以影响棉花对大丽花的抗性。棉酚生物合成中的关键酶GbCAD1的沉默降低了棉花对大丽花的抗性。根据GbSSI2的分析,活性氧和水杨酸信号传导也可能是棉花中响应大丽花的调节因子,而GbSSI2是水杨酸和茉莉酸信号通路之间串扰的重要调节因子。此外,油菜素固醇和茉莉酸信号可能在棉花对大丽花弧菌的抗性中起重要作用。接种大黄弧菌后,棉花中的油菜素类固醇信号转导被激活,外源施用油菜素内酯后,棉花的抗病性得到增强。同时,在接种大丽弧菌和油菜素内酯后,棉花中的茉莉酸信号也被激活。这些数据在棉花对大丽花抗性的分子基础上提供了亮点。

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