首页> 外文期刊>General and comparative endocrinology >In silico prediction of the G-protein coupled receptors expressed during the metamorphic molt of Sagmariasus verreauxi (Crustacea: Decapoda) by mining transcriptomic data: RNA-seq to repertoire
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In silico prediction of the G-protein coupled receptors expressed during the metamorphic molt of Sagmariasus verreauxi (Crustacea: Decapoda) by mining transcriptomic data: RNA-seq to repertoire

机译:通过挖掘转录组数据,通过计算机模拟预测Sagmariasus verreauxi(甲壳纲:十足目)的蜕变过程中表达的G蛋白偶联受体

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Against a backdrop of food insecurity, the farming of decapod crustaceans is a rapidly expanding and globally significant source of food protein. Sagmariasus verreauxi spiny lobster, the subject of this study, are decapods of underdeveloped aquaculture potential. Crustacean neuropeptide G-protein coupled receptors (GPCRs) mediate endocrine pathways that are integral to animal fecundity, growth and survival. The potential use of novel biotechnologies to enhance GPCR-mediated physiology may assist in improving the health and productivity of farmed decapod populations. This study catalogues the GPCRs expressed in the early developmental stages, as well as adult tissues, with a view to illuminating key neuropeptide receptors. De novo assembled contiguous sequences generated from transcriptomic reads of metamorphic and post metamorphic S. verreauxi were filtered for seven transmembrane domains, and used as a reference for iterative re-mapping. Subsequent putative GPCR open reading frames (ORFs) were BLAST annotated, categorised, and compared to published orthologues based on phylogenetic analysis. A total of 85 GPCRs were digitally predicted, that represented each of the four arthropod subfamilies. They generally displayed low-level and non-differential metamorphic expression with few exceptions that we examined using RT-PCR and qPCR. Two putative CHH-like neuropeptide receptors were annotated. Three dimensional structural modelling suggests that these receptors exhibit a conserved extracellular ligand binding pocket, providing support to the notion that these receptors co-evolved with their ligands across Decapoda. This perhaps narrows the search for means to increase productivity of farmed decapod populations. (C) 2016 Elsevier Inc. All rights reserved.
机译:在粮食不安全的背景下,十足纲甲壳类动物的养殖正在迅速扩大,在全球范围内都是重要的食物蛋白来源。本研究的对象是马尾藻(Sagmariasus verreauxi)多刺龙虾,它们是水产养殖潜力不足的雏形。甲壳类神经肽G蛋白偶联受体(GPCR)介导动物繁殖,生长和生存所必需的内分泌途径。潜在使用新型生物技术来增强GPCR介导的生理学可能有助于改善养殖的十足动物种群的健康和生产力。这项研究对早期发育阶段以及成人组织中表达的GPCR进行了分类,以阐明关键的神经肽受体。从变态和变态后链球菌的转录组读段产生的从头组装的连续序列被筛选出七个跨膜结构域,并用作迭代重映射的参考。随后的推定的GPCR开放阅读框(ORF)进行了BLAST注释,分类,并根据系统发育分析与已发表的直向同源物进行了比较。数字预测了总共85个GPCR,它们代表了四个节肢动物亚家族。它们通常显示低水平和非差异性的变形表达,只有少数例外,我们使用RT-PCR和qPCR进行了检查。注释了两个推定的CHH样神经肽受体。三维结构建模表明,这些受体表现出保守的胞外配体结合口袋,为这些受体与它们的配体共同在十足动物身上共同进化的观念提供了支持。这也许会缩小寻找增加养殖十足动物种群生产力的手段的范围。 (C)2016 Elsevier Inc.保留所有权利。

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