首页> 外文期刊>Journal of Experimental Botany >Lignin metabolism has a central role in the resistance of cotton to the wilt fungus Verticillium dahliae as revealed by RNA-Seq-dependent transcriptional analysis and histochemistry
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Lignin metabolism has a central role in the resistance of cotton to the wilt fungus Verticillium dahliae as revealed by RNA-Seq-dependent transcriptional analysis and histochemistry

机译:依赖于RNA-Seq的转录分析和组织化学表明,木质素代谢在棉花对枯萎黄萎病菌的抗性中具有重要作用

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The incompatible pathosystem between resistant cotton (Gossypium barbadense cv. 7124) and Verticillium dahliae strain V991 was used to study the cotton transcriptome changes after pathogen inoculation by RNA-Seq. Of 32 774 genes detected by mapping the tags to assembly cotton contigs, 3442 defence-responsive genes were identified. Gene cluster analyses and functional assignments of differentially expressed genes indicated a significant transcriptional complexity. Quantitative real-time PCR (qPCR) was performed on selected genes with different expression levels and functional assignments to demonstrate the utility of RNA-Seq for gene expression profiles during the cotton defence response. Detailed elucidation of responses of leucine-rich repeat receptor-like kinases (LRR-RLKs), phytohormone signalling-related genes, and transcription factors described the interplay of signals that allowed the plant to fine-tune defence responses. On the basis of global gene regulation of phenylpropanoid metabolism-related genes, phenylpropanoid metabolism was deduced to be involved in the cotton defence response. A closer look at the expression of these genes, enzyme activity, and lignin levels revealed differences between resistant and susceptible cotton plants. Both types of plants showed an increased level of expression of lignin synthesis-related genes and increased phenylalanine-ammonia lyase (PAL) and peroxidase (POD) enzyme activity after inoculation with V. dahliae, but the increase was greater and faster in the resistant line. Histochemical analysis of lignin revealed that the resistant cotton not only retains its vascular structure, but also accumulates high levels of lignin. Furthermore, quantitative analysis demonstrated increased lignification and cross-linking of lignin in resistant cotton stems. Overall, a critical role for lignin was believed to contribute to the resistance of cotton to disease.
机译:使用抗性棉花(棉(Gossypium barbadense),cv。7124)和大黄萎病菌(Verticillium dahliae)菌株V991之间不兼容的病理系统研究了病原菌接种RNA-Seq后棉花转录组的变化。通过将标签映射到大会棉重叠群而检测到的32774个基因中,鉴定出了3442个防御反应基因。基因簇分析和差异表达基因的功能分配表明明显的转录复杂性。在具有不同表达水平和功能分配的选定基因上进行了定量实时PCR(qPCR),以证明RNA-Seq在棉花防御反应期间用于基因表达谱的效用。富含亮氨酸的重复受体样激酶(LRR-RLKs),植物激素信号相关基因和转录因子的响应的详细阐明,描述了信号的相互作用,使植物可以微调防御反应。根据对苯丙烷代谢相关基因的整体基因调控,推导苯丙烷代谢参与棉花的防御反应。仔细观察这些基因的表达,酶活性和木质素水平,可以发现抗性和易感棉株之间的差异。两种植物都显示了木质素合成相关基因的表达水平升高,接种了大丽花弧菌后,苯丙氨酸-氨裂合酶(PAL)和过氧化物酶(POD)酶的活性增加,但在抗性系中的升高更大,更快。 。木质素的组织化学分析表明,抗性棉不仅保留了其血管结构,而且还积累了大量的木质素。此外,定量分析表明,抗性棉茎中木质素的木质化和交联增加。总体而言,木质素的关键作用被认为有助于棉花抵抗疾病。

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