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Understanding pathogenic Burkholderia glumae metabolic and signaling pathways within rice tissues through in vivo transcriptome analyses

机译:通过体内转录组分析了解水稻组织中致病性伯克霍尔德氏菌的代谢和信号传导途径

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摘要

Burkholderia glumae is a causal agent of rice grain and sheath rot. Similar to other phytopathogens, B. glumae adapts well to the host environment and controls its biology to induce diseases in the host plant; however, its molecular mechanisms are not yet fully understood. To gain a better understating of the actual physiological changes that occur in B. glumae during infection, we analyzed B. glumae transcriptome from infected rice tissues using an RNA-seq technique. To accomplish this, we analyzed differentially expressed genes (DEGs) and identified 2653 transcripts that were significantly altered. We then performed KEGG pathway and module enrichment of the DEGs. Interestingly, most genes involved bacterial chemotaxis-mediated motility, ascorbate and trehalose metabolisms, and sugar transporters including l-arabinose and d-xylose were found to be highly enriched. The in vivo transcriptional profiling of pathogenic B. glumae will facilitate elucidation of unknown plant-pathogenic bacteria interactions, as well as the overall infection processes.
机译:伯克霍尔德氏菌是稻粒和鞘腐的病因。与其他植物病原体相似,B。glumae很好地适应宿主环境并控制其生物学以诱导宿主植物中的疾病。然而,其分子机制尚未完全被理解。为了更好地低估在感染过程中灰质芽孢杆菌发生的实际生理变化,我们使用RNA-seq技术分析了感染水稻组织中的灰质芽孢杆菌转录组。为实现此目的,我们分析了差异表达基因(DEG)并确定了2653个转录物,这些转录物发生了显着改变。然后,我们进行了DEG的KEGG途径和模块富集。有趣的是,大多数基因涉及细菌趋化性介导的运动性,抗坏血酸和海藻糖代谢,并且发现糖转运蛋白(包括l-阿拉伯糖和d-木糖)高度富集。病原芽孢杆菌的体内转录谱分析将有助于阐明未知的植物-致病细菌相互作用,以及整个感染过程。

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