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Discovery of novel representatives of bilaterian neuropeptide families and reconstruction of neuropeptide precursor evolution in ophiuroid echinoderms

机译:发现双侧神经肽家族的新型代表并重建类蛇棘皮动物神经肽前体进化

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Neuropeptides are a diverse class of intercellular signalling molecules that mediate neuronal regulation of many physiological and behavioural processes. Recent advances in genome/transcriptome sequencing are enabling identification of neuropeptide precursor proteins in species from a growing variety of animal taxa, providing new insights into the evolution of neuropeptide signalling. Here, detailed analysis of transcriptome sequence data from three brittle star species, Ophionotus victoriae, Amphiura filiformis and Ophiopsila aranea, has enabled the first comprehensive identification of neuropeptide precursors in the class Ophiuroidea of the phylum Echinodermata. Representatives of over 30 bilaterian neuropeptide precursor families were identified, some of which occur as paralogues. Furthermore, homologues of endothelin/CCHamide, eclosion hormone, neuropeptide-F/Y and nucleobininesfatin were discovered here in a deuterostome/echinoderm for the first time. The majority of ophiuroid neuropeptide precursors contain a single copy of a neuropeptide, but several precursors comprise multiple copies of identical or non-identical, but structurally related, neuropeptides. Here, we performed an unprecedented investigation of the evolution of neuropeptide copy number over a period of approximately 270 Myr by analysing sequence data from over 50 ophiuroid species, with reference to a robust phylogeny. Our analysis indicates that the composition of neuropeptide ‘cocktails’ is functionally important, but with plasticity over long evolutionary time scales.
机译:神经肽是介导许多生理和行为过程的神经元调节的不同种类的细胞间信号分子。基因组/转录组测序的最新进展使人们能够从越来越多的动物类群中鉴定物种中的神经肽前体蛋白,从而为神经肽信号传导的进化提供新见解。在这里,对来自三个脆性星种,Ophionotus victoriae,Amphiura filformis和Aphiopsila aranea的转录组序列数据的详细分析,使得首次全面鉴定了Echinodermata属的Ophiuroidea类神经肽前体。确定了超过30个双边神经肽前体家族的代表,其中一些作为旁系同源物出现。此外,首次在氘化口/棘皮动物中发现了内皮素/ CCH酰胺,促分泌激素,神经肽-F / Y和核蛋白/内斯法汀的同源物。大部分类睫状神经肽前体包含神经肽的单个拷贝,但是几个前体包含相同或不同但结构相关的神经肽的多个拷贝。在这里,我们通过分析来自超过50种蛇类物种的序列数据,并参考了强有力的系统发育史,对大约270 Myr的时间段内神经肽拷贝数的演变进行了前所未有的研究。我们的分析表明,神经肽“鸡尾酒”的成分在功能上很重要,但在较长的进化时间范围内具有可塑性。

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