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首页> 外文期刊>Pesticide Biochemistry and Physiology >Avermectin stress varied structure and function of gut microbial community in Lymantria dispar asiatica (Lepidoptera: Lymantriidae) larvae
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Avermectin stress varied structure and function of gut microbial community in Lymantria dispar asiatica (Lepidoptera: Lymantriidae) larvae

机译:Avemectin胁迫变化结构和肠道微生物群落的结构和功能Divear Asiatica(Lepidoptera:Lymantriidae)幼虫

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摘要

Lymantria dispar asiatica is a globally distributed herbivorous pest. Avermectin is a highly effective, broad-spectrum insecticide. In this study, fourth instar L. dispar asiatica larvae were exposed to a LC30 dose of avermectin. The structure and function of larval gut microbial community was analyzed to examine how gut microbiota in L. dispar asiatica larvae responded to avermectin stress. Results showed that the structure and function of gut microbial community in L. dispar asiatica larvae were varied by avermectin stress. To be precise, more than half quantity of the observed Optical Taxonomic Units (OTUs) showed significantly different abundances under avermectin stress. Linear discriminant analysis effect size (LEfSe) suggested nine bacterial genera and 12 fungal genera contributed to the different gut microbial community structure in L. dispar asiatica larvae. Gut microbial function classification (PICRUSt and FUNGuild) suggested that three bacterial function categories and a fungal function guild were significantly increased, and two fungal function guilds were significantly decreased by avermectin stress. This study furthers our understanding of the physiology of L. dispar asiatica larvae under avermectin stress, and is an essential step towards future development of potential pesticide targets.
机译:Lymantria Dispar Asiatica是全球分布的食草害虫。 Avermectin是一种高效的广谱杀虫剂。在该研究中,将第四瞬间L. DiparAR Asiatica幼虫暴露于Avermectin的LC30剂量。分析了幼虫微生物群落的结构和功能,检查L. DiparAR Asiatica幼虫中的肠道微生物症如何应对Averpectin应激。结果表明,Avecectin胁迫改变了L. Divear Asiatica幼虫的肠道微生物群落的结构和功能。要精确,超过半量的观察到的光学分类单位(OTUS)在Avermectin应激下显示出显着不同的丰度。线性判别分析效果尺寸(lefse)表明九个细菌属和12个真菌属,导致L. Dixar Asiatica幼虫的不同肠道微生物群落结构。肠道微生物功能分类(Picrust和Funguild)表明,三种细菌功能类别和真菌功能公会显着增加,Averpectin应激显着降低了两个真菌功能关节。本研究能够在Avermectin压力下对L. Divear Asiatica幼虫的生理学的理解。朝着未来发展潜在的农药靶点是一个重要的一步。

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