首页> 外文期刊>Journal of proteomics >Extreme diversity of scorpion venom peptides and proteins revealed by transcriptomic analysis: Implication for proteome evolution of scorpion venom arsenal
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Extreme diversity of scorpion venom peptides and proteins revealed by transcriptomic analysis: Implication for proteome evolution of scorpion venom arsenal

机译:转录组分析揭示蝎毒肽和蛋白质的极端多样性:对蝎毒武器库蛋白质组进化的影响

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Venom is an important genetic development crucial to the survival of scorpions for over 400. million years. We studied the evolution of the scorpion venom arsenal by means of comparative transcriptome analysis of venom glands and phylogenetic analysis of shared types of venom peptides and proteins between buthids and euscorpiids. Fifteen types of venom peptides and proteins were sequenced during the venom gland transcriptome analyses of two Buthidae species (Lychas mucronatus and Isometrus maculatus) and one Euscorpiidae species (Scorpiops margerisonae). Great diversity has been observed in translated amino acid sequences of these transcripts for venom peptides and proteins. Seven types of venom peptides and proteins were shared between buthids and euscorpiids. Molecular phylogenetic analysis revealed that at least five of the seven common types of venom peptides and proteins were likely recruited into the scorpion venom proteome before the lineage split between Buthidae and Euscorpiidae with their corresponding genes undergoing individual or multiple gene duplication events. These are α-KTxs, βKSPNs (β-KTxs and scorpines), anionic peptides, La1-like peptides, and SPSVs (serine proteases from scorpion venom). Multiple types of venom peptides and proteins were demonstrated to be continuously recruited into the venom proteome during the evolution process of individual scorpion lineages. Our results provide an insight into the recruitment pattern of the scorpion venom arsenal for the first time.
机译:毒液是重要的遗传发育,对蝎子超过400.百万年的生存至关重要。我们通过对蛇毒腺进行对比转录组分析和对蛇蝎和真蝎之间共享类型的蛇毒肽和蛋白质进行系统发育分析,研究了蝎子蛇毒武器库的演变。在对两种Buthidae种类(Lychas mucronatus和Isometrus maculatus)和一种Euscorpiidae种类(Scorpiops margerisonae)进行毒腺转录组分析时,对了十五种类型的毒液肽和蛋白质进行了测序。在蛇毒肽和蛋白质的这些转录物的翻译的氨基酸序列中已观察到极大的多样性。蛇毒和蛇蝎之间共有七种毒液肽和蛋白质。分子系统发育分析表明,在Buthidae和Euscorpiidae的谱系分裂之前,七种常见类型的毒液肽和蛋白质中至少有五种可能被募集到蝎子毒液蛋白质组中,并且其相应基因经历了单个或多个基因复制事件。它们是α-KTx,βKSPN(β-KTx和蝎子),阴离子肽,La1样肽和SPSV(蝎毒的丝氨酸蛋白酶)。在蝎子个体的进化过程中,多种类型的毒液肽和蛋白质被证明可以连续地募集到毒液蛋白质组中。我们的结果首次提供了对蝎毒库的招募模式的见解。

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