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Spider Transcriptomes Identify Ancient Large-Scale Gene Duplication Event Potentially Important in Silk Gland Evolution

机译:蜘蛛转录组鉴定出古代大规模的基因复制事件,对丝绸腺体进化可能具有重要意义

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The evolution of specialized tissues with novel functions, such as the silk synthesizing glands in spiders, is likely an influential driver of adaptive success. Large-scale gene duplication events and subsequent paralog divergence are thought to be required for generating evolutionary novelty. Such an event has been proposed for spiders, but not tested. We de novo assembled transcriptomes from three cobweb weaving spider species. Based on phylogenetic analyses of gene families with representatives from each of the three species, we found numerous duplication events indicative of a whole genome or segmental duplication. We estimated the age of the gene duplications relative to several speciation events within spiders and arachnids and found that the duplications likely occurred after the divergence of scorpions (order Scorpionida) and spiders (order Araneae), but before the divergence of the spider suborders Mygalomorphae and Araneomorphae, near the evolutionary origin of spider silk glands. Transcripts that are expressed exclusively or primarily within black widow silk glands are more likely to have a paralog descended from the ancient duplication event and have elevated amino acid replacement rates compared with other transcripts. Thus, an ancient large-scale gene duplication event within the spider lineage was likely an important source of molecular novelty during the evolution of silk gland-specific expression. This duplication event may have provided genetic material for subsequent silk gland diversification in the true spiders (Araneomorphae).
机译:具有新颖功能的特殊组织的进化,例如蜘蛛中的丝绸合成腺体,很可能是适应性成功的重要驱动力。大规模的基因复制事件和随后的同源同源差异被认为是产生进化新奇所必需的。已经为蜘蛛提出了这样的事件,但是未经测试。我们从头开始组装了三种蜘蛛网编织蜘蛛物种的转录组。基于对这三个物种的代表的基因家族的系统发育分析,我们发现了许多重复事件,这些事件表明整个基因组或片段重复。我们估计了与蜘蛛和蜘蛛体内的几种物种形成事件相关的基因重复的年龄,发现重复可能发生在蝎子(蝎子)和蜘蛛(蜘蛛科)分离之后,但蜘蛛亚目Mygalomorphae和ran形科,靠近蜘蛛丝腺的进化起源。仅在黑寡妇丝腺中或主要在其中表达的转录本较其他转录本更可能具有源自古代复制事件的旁系同源物,并具有较高的氨基酸替代率。因此,蜘蛛家族中一个古老的大规模基因复制事件可能是丝腺特异性表达进化过程中分子新颖性的重要来源。这次复制事件可能为后来的真蜘蛛(Araneomorphae)丝腺多样化提供了遗传物质。

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