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Insight into the Functional Diversification of Lipases in the Endoparasitoid Pteromalus puparum (Hymenoptera: Pteromalidae) by Genome-scale Annotation and Expression Analysis

机译:通过基因组规模的注释和表达分析洞悉内生性腹果蝇(Pteromalus puparum)(膜翅目:翼龙科)中的脂肪酶功能多样化。

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摘要

Lipases play essential roles in digestion, transport, and processing of dietary lipids in insects. For parasitoid wasps with a unique life cycle, lipase functions could be multitudinous in particular. is a pupal endoparasitoid of butterflies. The female adult deposits eggs into its host, along with multifunctional venom, and the developing larvae consume host as its main nutrition source. Parasitoid lipases are known to participate in the food digestion process, but the mechanism remains unclear. genome and transcriptome data were interrogated. Multiple alignments and phylogenetic trees were constructed. We annotated a total of 64 predicted lipase genes belonging to five lipase families and suggested that eight venom and four salivary lipases could determine host nutrition environment post-parasitization. Many putative venom lipases were found with incomplete catalytic triads, relatively long β9 loops, and short lids. Data analysis reveals the loss of catalytic activities and weak triacylglycerol (TAG) hydrolytic activities of lipases in venom. Phylogenetic trees indicate various predicted functions of lipases in . Our information enriches the database of parasitoid lipases and the knowledge of their functional diversification, providing novel insight into how parasitoid wasps manipulate host lipid storage by using venom lipases.
机译:脂肪酶在昆虫的饮食脂质的消化,运输和加工中起着至关重要的作用。对于具有独特生命周期的类寄生蜂,脂肪酶的功能可能特别多。是蝴蝶的p内寄生虫。雌成虫将卵以及多功能毒液沉积在其宿主中,而发育中的幼虫则将宿主作为主要营养来源。已知类寄生物脂肪酶参与食物的消化过程,但其机制尚不清楚。询问基因组和转录组数据。构建了多个比对和系统发育树。我们注释了属于五个脂肪酶家族的总共64个预测脂肪酶基因,并提出了八种毒液和四种唾液脂肪酶可以确定寄生后的宿主营养环境。发现许多推定的蛇毒脂肪酶具有不完全的催化三联体,相对长的β9环和较短的盖子。数据分析揭示了在脂肪中脂肪酶的催化活性和弱的三酰基甘油(TAG)水解活性丧失。系统发育树表明脂肪酶的各种预测功能。我们的信息丰富了寄生性脂肪酶的数据库及其功能多样化的知识,从而提供了关于寄生性黄蜂如何通过使用毒性脂肪酶操纵宿主脂质存储的新见解。

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