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首页> 外文期刊>BMC Genomics >Transcriptomic analysis reveals insights into deep-sea adaptations of the dominant species, Shinkaia crosnieri (Crustacea: Decapoda: Anomura), inhabiting both hydrothermal vents and cold seeps
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Transcriptomic analysis reveals insights into deep-sea adaptations of the dominant species, Shinkaia crosnieri (Crustacea: Decapoda: Anomura), inhabiting both hydrothermal vents and cold seeps

机译:转录组学分析揭示了对主要物种Shinkaia crosnieri(甲壳纲:十足目:Anomura)的深海适应的见解,它们既栖息于热液喷口,又栖息于冷泉

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摘要

Hydrothermal vents and cold seeps are typical deep-sea chemosynthetically-driven ecosystems that allow high abundance of specialized macro-benthos. To gather knowledge about the genetic basis of adaptation to these extreme environments, species shared between different habitats, especially for the dominant species, are of particular interest. The galatheid squat lobster, Shinkaia crosnieri Baba and Williams, 1998, is one of the few dominant species inhabiting both deep-sea hydrothermal vents and cold seeps. In this study, we performed transcriptome analyses of S. crosnieri collected from the Iheya North hydrothermal vent (HV) and a cold seep in the South China Sea (CS) to provide insights into how this species has evolved to thrive in different deep-sea chemosynthetic ecosystems. We analyzed 5347 orthologs between HV and CS to identify genes under positive selection through the maximum likelihood approach. A total of 82 genes were identified to be positively selected and covered diverse functional categories, potentially indicating their importance for S. crosnieri to cope with environmental heterogeneity between deep-sea vents and seeps. Among 39,806 annotated unigenes, a large number of differentially expressed genes (DEGs) were identified between HV and CS, including 339 and 206 genes significantly up-regulated in HV and CS, respectively. Most of the DEGs associated with stress response and immunity were up-regulated in HV, possibly allowing S. crosnieri to increase its capability to manage more environmental stresses in the hydrothermal vents. We provide the first comprehensive transcriptomic resource for the deep-sea squat lobster, S. crosnieri, inhabiting both hydrothermal vents and cold seeps. A number of stress response and immune-related genes were positively selected and/or differentially expressed, potentially indicating their important roles for S. crosnieri to thrive in both deep-sea vents and cold seeps. Our results indicated that genetic adaptation of S. crosnieri to different deep-sea chemosynthetic environments might be mediated by adaptive evolution of functional genes related to stress response and immunity, and alterations in their gene expression that lead to different stress resistance. However, further work is required to test these proposed hypotheses. All results can constitute important baseline data for further studies towards elucidating the adaptive mechanisms in deep-sea crustaceans.
机译:热液喷口和冷渗漏是典型的深海化学合成驱动的生态系统,可产生大量的大型大型底栖动物。为了收集有关适应这些极端环境的遗传基础的知识,特别需要关注不同生境之间共享的物种,尤其是优势物种。盖拉西德蹲式龙虾Shinkaia crosnieri Baba和Williams,1998年,是居住在深海热液喷口和冷渗流中的少数优势种之一。在这项研究中,我们对从伊埃亚北部热液喷口(HV)和南海冷泉(CS)收集的克氏链球菌进行了转录组分析,以提供有关该物种如何在不同深海繁衍的证据。化学合成生态系统。我们分析了HV和CS之间的5347个直系同源物,以通过最大似然方法确定正选择下的基因。共有82个基因被确定为阳性选择,涵盖了不同的功能类别,这潜在地表明了它们对克氏链球菌应对深海喷口和渗水之间的环境异质性的重要性。在39806个带注释的单基因中,在HV和CS之间鉴定出大量差异表达基因(DEG),包括分别在HV和CS中上调的339和206个基因。 HV中与压力响应和免疫力相关的大多数DEGs均被上调,可能使crosni crosnieri能够提高其处理热液喷口中更多环境压力的能力。我们为深海龙虾S. crosnieri提供了第一个综合的转录组学资源,它们居住在热液喷口和冷渗流中。积极地选择和/或差异表达了许多应激反应和免疫相关基因,这潜在地表明了它们对于克氏链球菌在深海通风口和冷渗水中壮成长的重要作用。我们的结果表明,克氏链球菌对不同深海化学合成环境的遗传适应可能是由与应激反应和免疫相关的功能基因的适应性进化,以及其基因表达的变化导致了不同的抗逆性而介导的。但是,需要进一步的工作来检验这些提出的假设。所有结果都可以作为重要的基线数据,以供进一步研究,以阐明深海甲壳类动物的适应机制。

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