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Transcriptomic and metabolomic analyses reveal that bacteria promote plant defense during infection of soybean cyst nematode in soybean

机译:转录组学和代谢组学分析表明,细菌可促进大豆大豆囊肿线虫感染期间的植物防御

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Soybean cyst nematode (SCN) is the most devastating pathogen of soybean. Our previous study showed that the plant growth-promoting rhizobacterium Bacillus simplex strain Sneb545 promotes soybean resistance to SCN. Here, we conducted a combined metabolomic and transcriptomic analysis to gain information regarding the biological mechanism of defence enhancement against SCN in Sneb545-treated soybean. To this end, we compared the transcriptome and metabolome of Sneb545-treated and non-treated soybeans under SCN infection. Transcriptomic analysis showed that 6792 gene transcripts were common in Sneb545-treated and non-treated soybeans. However, Sneb545-treated soybeans showed a higher concentration of various nematicidal metabolites, including 4-vinylphenol, methionine, piperine, and palmitic acid, than non-treated soybeans under SCN infection. Overall, our results validated and expanded the existing models regarding the co-regulation of gene expression and metabolites in plants, indicating the advantage of integrated system-oriented analysis.
机译:大豆孢囊线虫(SCN)是大豆最具破坏力的病原体。我们以前的研究表明,促进植物生长的根瘤菌单芽孢杆菌Sneb545菌株可促进大豆对SCN的抗性。在这里,我们进行了代谢组学和转录组学分析相结合,以获取有关Sneb545处理的大豆中SCN增强防御的生物学机制的信息。为此,我们比较了在SCN感染下Sneb545处理和未处理的大豆的转录组和代谢组。转录组学分析表明,在Sneb545处理和未处理的大豆中共有6792个基因转录本是常见的。但是,与未经SCN感染的大豆相比,经Sneb545处理的大豆显示出更高的各种杀线虫代谢物浓度,包括4-乙烯基苯酚,蛋氨酸,胡椒碱和棕榈酸。总体而言,我们的结果验证并扩展了有关植物中基因表达和代谢产物共调节的现有模型,表明了集成的面向系统分析的优势。

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