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Comparative transcriptomic analysis reveals that multiple hormone signal transduction and carbohydrate metabolic pathways are affected by Bacillus cereus in Nicotiana tabacum

机译:比较转录组分析表明,芽孢杆菌在烟草中的芽孢杆菌患者影响了多种激素信号转导和碳水化合物代谢途径

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Bacillus cereus is thought to be a beneficial bacterium for plants in several aspects, such as promoting plant growth and inducing plant disease resistance. However, there is no detailed report on the effect of Bacillus cereus acting on Nicotiana tabacum. In the present study, RNA-based sequencing (RNA-seq) was used to identify the molecular mechanisms of the interaction between B. cereus CGMCC 5977 and N. tabacum. A total of 7345 and 5604 differentially expressed genes (DEGs) were identified from leaves inoculated with Bacillus cereus at 6 and 24 hpi, respectively. Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) enrichment analyses revealed that the most DEGs could be significantly enriched in hormone signal transduction, the MAPK signaling pathway, photosynthesis, oxidative stress, and amino sugar, and nucleotide sugar metabolism. Furthermore, glycolysis/gluconeogenesis was severely affected by inoculation with Bacillus cereus. In the hormone signal pathway, multiple DEGs were involved in plant defense-related major hormones, including activation of jasmonic acid (JA), salicylic acid (SA), and ethylene (Eth). Further analyses showed that other hormone-related genes involved in abscisic acid (ABA), gibberellin (GA), auxin (AUX), and cytokinin (CK) also showed changes. Notably, a large number of genes associated with glycolysis/gluconeogenesis, catabolism of starch and oxidative stress were induced. In addition, the majority of DEGs related to nucleic acid sugar metabolism were also significantly upregulated. Biochemical assays showed that the starch content of B. cereus-treated leaves was reduced to 2.51?mg/g and 2.38?mg/g at 6 and 24 hpi, respectively, while that of the control sample was 5.42?mg/g. Overall, our results demonstrated that multiple hormone signal transduction and carbohydrate metabolic pathways are involved in the interaction of tobacco and B. cereus.
机译:芽孢杆菌被认为是植物的有益细菌在若干方面,如促进植物生长和诱导植物疾病抗性。但是,没有关于芽孢杆菌作用于尼古利亚纳塔巴宫的疗效的详细报道。在本研究中,使用基于RNA的测序(RNA-SEQ)来鉴定B.Cereus CGMCC 5977和N.Babacum之间的相互作用的分子机制。共有7345和5604差异表达基因(DEGS)分别在6和24 HPI接种芽孢杆菌的叶片中鉴定出枯草芽孢杆菌。基因本体(GO)和京都基因组(KEGG)富集分析显示,最多可富集激素信号转导,MAPK信号通路,光合作用,氧化应激和氨基糖和核苷酸代谢。此外,通过用芽孢杆菌接种而严重影响糖酵解/葡糖生成。在激素信号途径中,涉及多次植物防御相关的主要激素,包括茉莉酸(Ja),水杨酸(Sa)和乙烯(Eth)的激活。进一步的分析表明,参与脱落酸(ABA),嗜酸性素(GA),蟾蜍蛋白(Aux)和细胞蛋白(CK)的其他激素相关基因也显示出变化。值得注意的是,诱导与糖酵解/葡糖生成,淀粉分解代谢和氧化应激相关的大量基因。此外,还显着上调了与核酸糖代谢相关的大多数含量。生物化学测定表明,B.脑处理的叶子的淀粉含量分别将2.51μmg/ g和2.38μmg/ g分别在6和24hpi下降至6和24hpi,而对照样品的含量为5.42Ω·mg / g。总的来说,我们的结果表明,多种激素信号转导和碳水化合物代谢途径参与烟草和B.培养物的相互作用。

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