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首页> 外文期刊>Genetics and Molecular Research >Differential expression of genes involved in entomopathogenicity of the fungi Metarhizium anisopliae var. anisopliae and M. anisopliae var. acridum (Clavicipitaceae)
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Differential expression of genes involved in entomopathogenicity of the fungi Metarhizium anisopliae var. anisopliae and M. anisopliae var. acridum (Clavicipitaceae)

机译:涉及真菌变种变种的昆虫致病性的基因的差异表达。 anisopliae和M. anisopliae var。 cri草(Clavicipitaceae)

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Expression analysis of the genes involved in germination, conidiogenisis and pathogenesis of Metarhizium anisopliae during its saprophytic and pathogenic life stages can help plan strategies to increase its efficacy as a biological control agent. We quantified relative expression levels of the nitrogen response regulator gene (nrr1) and a G-protein regulator of genes involved in conidiogenesis (cag8), using an RT-qPCR assay. Comparisons were made between M. anisopliae var. anisopliae and M. anisopliae var. acridum during germination and conidiogenesis and at different stages of pathogenesis. The cag8 gene was repressed during germination and induced during conidial development and the pathogenic phase, and the nrr1 gene was induced during germination, conidiogenesis and the pathogenic phase. Both genes were more expressed in M. anisopliae var. anisopliae, demonstrating that different varieties of M. anisopliae differ in activation of genes linked to virulence for certain environments and hosts. This suggests that differences among these varieties in the ability to adapt could be attributed not only to specific genomic regions and genes, but also to differential gene expression in this fungus, modulating its ability to respond to environmental stimuli.
机译:在厌腐菌和致病性生命阶段,介壳an的发芽,分生和致病基因的表达分析可以帮助制定策略,以提高其作为生物防治剂的功效。我们使用RT-qPCR分析法定量了参与子生的基因(cag8)的氮响应调节基因(nrr1)和G蛋白调节子的相对表达水平。在M.anisopliae var。之间进行比较。 anisopliae和M. anisopliae var。顶芽在发芽和分生发生过程中以及在发病的不同阶段。 cag8基因在发芽过程中被阻遏,在分生孢子发育和致病期被诱导,而nrr1基因在发芽,分生孢子和致病期被诱导。这两个基因在M. anisopliae var。中更表达。证明了不同物种的M. anisopliae在激活与某些环境和宿主的毒力相关的基因方面存在差异。这表明这些品种之间在适应能力上的差异不仅可以归因于特定的基因组区域和基因,还可以归因于这种真菌中基因表达的差异,从而调节了其对环境刺激的反应能力。

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