首页> 美国卫生研究院文献>Microorganisms >The Endophytic Fungus Chaetomium cupreum Regulates Expression of Genes Involved in the Tolerance to Metals and Plant Growth Promotion in Eucalyptus globulus Roots
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The Endophytic Fungus Chaetomium cupreum Regulates Expression of Genes Involved in the Tolerance to Metals and Plant Growth Promotion in Eucalyptus globulus Roots

机译:内生真菌Caetomium cupreum调节参与桉树根系金属耐性和植物生长促进的基因的表达

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摘要

The endophytic strain isolated from metal-contaminated soil was inoculated in roots to identify genes involved in metal stress response and plant growth promotion. We analyzed the transcriptome of roots inoculated with . De novo sequencing, assembly, and analysis were performed to identify molecular mechanisms involved in metal stress tolerance and plant growth promotion. A total of 393,371,743 paired-end reads were assembled into 135,155 putative transcripts. It was found that 663 genes significantly changed their expression in the presence of treatment, of which 369 were up-regulated and 294 were down-regulated. We found differentially expressed genes (DEGs) encoding metal transporters, transcription factors, stress and defense response proteins, as well as DEGs involved in auxin biosynthesis and metabolism. Our results showed that the inoculation of enhanced tolerance to metals and growth promotion on . This study provides new information to understand molecular mechanisms involved in plant–microbe interactions under metals stress.
机译:从金属污染的土壤中分离出的内生菌株在根部接种,以鉴定参与金属胁迫响应和促进植物生长的基因。我们分析了接种根的根的转录组。从头进行测序,组装和分析,以确定涉及金属胁迫耐受性和植物生长促进的分子机制。总共393,371,743个配对末端读段被组装为135,155个假定的转录本。发现在治疗存在下663个基因显着改变了它们的表达,其中369个基因被上调而294个基因被下调。我们发现编码金属转运蛋白,转录因子,应激和防御反应蛋白的差异表达基因(DEG),以及参与植物生长素生物合成和代谢的DEG。我们的结果表明,接种增强了对金属的耐受性和促进了番茄的生长。这项研究为了解金属胁迫下植物与微生物相互作用的分子机制提供了新的信息。

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