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首页> 外文期刊>Frontiers in Microbiology >The Entomopathogenic Fungi Isaria fumosorosea Plays a Vital Role in Suppressing the Immune System of Plutella xylostella: RNA-Seq and DGE Analysis of Immunity-Related Genes
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The Entomopathogenic Fungi Isaria fumosorosea Plays a Vital Role in Suppressing the Immune System of Plutella xylostella: RNA-Seq and DGE Analysis of Immunity-Related Genes

机译:致病性真菌 Isaria fumosorosea 在抑制 xylostella 的免疫系统中起重要作用:免疫相关基因的RNA-Seq和DGE分析

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摘要

Most, if not all, entomopathogenic fungi have been used as alternative control agents to decrease the insect resistance and harmful effects of the insecticides on the environment. Among them, Isaria fumosorosea has also shown great potential to control different insect pests. In the present study, we explored the immune response of P. xylostella to the infection of I. fumosorosea at different time points by using RNA-Sequencing and differential gene expression technology at the genomic level. To gain insight into the host-pathogen interaction at the genomic level, five libraries of P. xylostella larvae at 12, 18, 24, and 36 h post-infection and a control were constructed. In total, 161 immunity-related genes were identified and grouped into four categories; immune recognition families, toll and Imd pathway, melanization, and antimicrobial peptides (AMPs). The results of differentially expressed immunity-related genes depicted that 15, 13, 53, and 14 up-regulated and 38, 51, 56, and 49 were down-regulated in P. xylostella at 12, 18, 24, and 36 h post-treatment, respectively. RNA-Seq results of immunity-related genes revealed that the expression of AMPs was reduced after treatment with I. fumosorosea . To validate RNA-Seq results by RT-qPCR, 22 immunity-related genes were randomly selected. In conclusion, our results demonstrate that I. fumosorosea has the potential to suppress the immune response of P. xylostella and can become a potential biopesticide for controlling P. xylostella .
机译:大多数(如果不是全部)昆虫病原真菌已被用作替代控制剂,以降低昆虫的抗药性和杀虫剂对环境的有害影响。其中,Isaria fumosorosea还显示出了控制各种害虫的巨大潜力。在本研究中,我们通过在基因组水平上使用RNA测序和差异基因表达技术,探索了小菜蛾对烟曲霉在不同时间感染的免疫反应。为了深入了解基因组水平上的宿主-病原体相互作用,构建了感染后12、18、24和36 h的五个小菜蛾幼虫文库和一个对照。总共确定了161个与免疫相关的基因,并将其分为四类:免疫识别家族,收费和Imd途径,黑色素化和抗菌肽(AMP)。差异表达的与免疫相关的基因的结果显示,在第12、18、24和36小时后,小菜蛾中的15、13、53和14被上调,而38、51、56和49被下调。治疗。免疫相关基因的RNA-Seq结果表明,用I. fumosorosea处理后AMPs的表达降低。为了通过RT-qPCR验证RNA-Seq结果,随机选择了22个与免疫相关的基因。总之,我们的研究结果表明,烟曲霉有潜力抑制小菜蛾的免疫反应,并可能成为控制小菜蛾的潜在生物农药。

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