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Integrated transcriptome and metabolome analysis reveals molecular responses of the clams to acute hypoxia

机译:集成的转录组和代谢分析显示蛤急性缺氧的分子反应

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摘要

Mudflat shellfish have evolved well-adapted strategies for coping with dynamic environmental fluxes and stressful conditions, including oxygen availability. The Manila clams Ruditapes philippinarum are worldwide cultured shellfish in marine intertidal zone, which usually encounter great risk of acute hypoxia exposure in coastal habitats. To reveal the effects of acute hypoxia on metabolic changes of the clams, we performed the integrated analysis of transcriptomics and metabolomics to investigate the global changes of genes and metabolites during acute hypoxia stress at the whole-organism level. The comparative transcriptome analysis reveals that the clams show the remarkable depression in a variety of biological performance, such as metabolic rates, neuronal activity, biomineralization activity, and cell proliferation and differentiation at the hypoxic condition. The metabolomic analysis reveals that amino acid metabolism plays a critical role in the metabolic changes of the clams in response to acute hypoxia. A variety of free amino acids may not only be served as the potential osmolytes for osmotic regulation, but also may contribute to energy production during the acute hypoxia exposure. The metabolite analysis also reveals several important biomarkers for metabolic changes, and provides new insights into how clams deal with acute hypoxia. These findings suggest that clams may get through acute hypoxia stress by the adaptive metabolic strategy to survive short-period of acute hypoxia which is likely to occur in their typical habitat. The present findings will not only shed lights on the molecular and metabolic mechanisms of adaptive strategies under stressful conditions, but also provide the signaling metabolites to assess the physiological states of clams in aquaculture.
机译:Mudflat贝类已经进化了适应性良好的策略,用于应对动态环境助量和压力条件,包括氧气可用性。 Manila Clams Ruditapes Philippinarum在海洋潮间区的全球培养贝类,通常遇到沿海栖息地急性缺氧暴露的危险风险。为了揭示急性缺氧对蛤蜊代谢变化的影响,我们进行了转录组和代谢组科的综合分析,以研究全生物水平急性缺氧胁迫期间基因和代谢物的全局变化。对比转录组分析表明,蛤呈现出各种生物学性能的显着抑郁症,例如代谢率,神经元活动,生物丙碳化活性和细胞增殖和缺氧条件的分化。代谢物分析表明,氨基酸代谢在响应急性缺氧的蛤蜊的代谢变化中发挥着关键作用。各种游离氨基酸可能不仅可以用作渗透调节的潜在渗透物,而且还可能有助于在急性缺氧暴露期间能量产生。代谢物分析还揭示了几种重要的生物标志物进行代谢变化,并为蛤蜊处理急性缺氧的新见解提供了新的见解。这些发现表明,蛤蜊可能通过适应性代谢策略通过急性缺氧胁迫来生存短期的急性缺氧,这可能发生在典型的栖息地。目前的发现不仅将在压力条件下的适应性策略的分子和代谢机制上阐明,而且还提供信号传导代谢物,以评估水产养殖中的蛤蜊的生理状态。

著录项

  • 来源
    《Marine Environmental Research》 |2021年第6期|105317.1-105317.16|共16页
  • 作者单位

    Chinese Acad Fishery Sci Key Lab Sustainable Dev Marine Fisheries Yellow Sea Fisheries Res Inst Pilot Natl Lab Mari Minist Agr & Rural Affairs Lab Marine Fisheries S Qingdao 266071 Peoples R China;

    Putian Inst Aquaculture Sci Fujian Prov Putian 351100 Peoples R China;

    Marine Biol Inst Shandong Prov Qingdao 266104 Peoples R China;

    Chinese Acad Fishery Sci Key Lab Sustainable Dev Marine Fisheries Yellow Sea Fisheries Res Inst Pilot Natl Lab Mari Minist Agr & Rural Affairs Lab Marine Fisheries S Qingdao 266071 Peoples R China;

    Chinese Acad Fishery Sci Key Lab Sustainable Dev Marine Fisheries Yellow Sea Fisheries Res Inst Pilot Natl Lab Mari Minist Agr & Rural Affairs Lab Marine Fisheries S Qingdao 266071 Peoples R China|Jiangsu Ocean Univ Lianyungang 222005 Peoples R China;

    Chinese Acad Fishery Sci Key Lab Sustainable Dev Marine Fisheries Yellow Sea Fisheries Res Inst Pilot Natl Lab Mari Minist Agr & Rural Affairs Lab Marine Fisheries S Qingdao 266071 Peoples R China;

    Chinese Acad Fishery Sci Key Lab Sustainable Dev Marine Fisheries Yellow Sea Fisheries Res Inst Pilot Natl Lab Mari Minist Agr & Rural Affairs Lab Marine Fisheries S Qingdao 266071 Peoples R China;

    Chinese Acad Fishery Sci Key Lab Sustainable Dev Marine Fisheries Yellow Sea Fisheries Res Inst Pilot Natl Lab Mari Minist Agr & Rural Affairs Lab Marine Fisheries S Qingdao 266071 Peoples R China;

    Chinese Acad Fishery Sci Key Lab Sustainable Dev Marine Fisheries Yellow Sea Fisheries Res Inst Pilot Natl Lab Mari Minist Agr & Rural Affairs Lab Marine Fisheries S Qingdao 266071 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Clam; Hypoxia; Transcriptomic; Metabolomic; Metabolite;

    机译:蛤蜊;缺氧;转录组;代谢物;代谢物;

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