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Lipidome variations of deep-sea vent shrimps according to acclimation pressure: A homeoviscous response?

机译:根据适应压力的深海排气虾的脂质组变化:一种家常的反应?

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摘要

The present study questions the ability of marine fauna to modulate the molecular composition of their membrane lipids, as a function of environmental hydrostatic pressure conditions. Specific variations in the cell lipidome composition are presented for the deep-sea hydrothermal vent shrimp Miro caris fortunata, acclimated at the laboratory for several months at both natural (18 MPa) and atmospheric pressures, but fed with the same diet. These animals display physiological capabilities of acclimation to pressure variations, possibly driven by a particular composition of their lipid species. In particular, it is shown that shrimps exposed to atmospheric pressure exhibit a significantly lower level of the mono-unsaturated fatty acid, vaccenic acid (C18:1n-7), compared to those maintained at natural pressure. The observed fatty acid variations are consistent with a homeoviscous response, i.e. a modulation of the lipidome composition, in response to physical constraints, in order to balance the effects of pressure on membrane order. Additionally, supervised multivariate data analysis was performed for complex lipids and revealed an increase in levels of sterols, sphingomyelin, and ether-phosphatidylethanolamine lipids for animals exposed to atmospheric pressure, with respect to natural pressure. These observations strongly suggest that lipidic domains are involved in the shrimp's response to experimental conditions, and their consistency with a homeoviscous response to pressure is discussed.
机译:本研究质疑海洋动物的能力调节膜脂质的分子组成,作为环境静水压力条件的函数。细胞脂质组合物的具体变异用于深海水热通风虾Miro Caris Fortunata,在实验室适应天然(18MPa)和大气压,但喂食同样的饮食。这些动物展示适应压力变化的生理能力,可能由其脂质物种的特定组合物驱动。特别地,与在固体压力保持在固有压力的那些相比,将暴露于大气压暴露于大气压的虾,其含量显着较低水平的单 - 不饱和脂肪酸,疫苗酸(C18:1N-7)。所观察到的脂肪酸变化是与物质反应一致的,即脂质组合物的调节,响应于物理限制,以平衡压力对膜序的影响。另外,对复杂的脂质进行了监督的多变量数据分析,并揭示了对自然压力暴露于大气压力的动物的甾醇,鞘磷脂和醚 - 磷脂酰乙醇胺脂质的增加。这些观察结果强烈表明,脂肪域参与虾对实验条件的响应,并且讨论了它们与对压力的正物反应的一致性。

著录项

  • 来源
    《Deep-Sea Research》 |2020年第7期|103285.1-103285.11|共11页
  • 作者单位

    Sorbonne Univ Lab Biol Organismes & Ecosyst Aquat BOREA MNHN CNRS 2030 IRD 207 UCN UA Paris France;

    Sorbonne Univ Lab Biol Organismes & Ecosyst Aquat BOREA MNHN CNRS 2030 IRD 207 UCN UA Paris France|Sorbonne Univ INSERM Ctr Rech St Antoine CRSA Dept Metabol Clin Hop St Antoine AP HP F-75012 Paris France;

    Oceanopolis Port Plaisance Moulin Blanc BP 91039 F-29210 Brest 1 France;

    Sorbonne Univ INSERM Ctr Rech St Antoine CRSA Dept Metabol Clin Hop St Antoine AP HP F-75012 Paris France;

    Sorbonne Univ INSERM Ctr Rech St Antoine CRSA Dept Metabol Clin Hop St Antoine AP HP F-75012 Paris France;

    Sorbonne Univ Lab Biol Organismes & Ecosyst Aquat BOREA MNHN CNRS 2030 IRD 207 UCN UA Paris France;

    Sorbonne Univ Lab Biol Organismes & Ecosyst Aquat BOREA MNHN CNRS 2030 IRD 207 UCN UA Paris France;

    Sorbonne Univ INSERM Ctr Rech St Antoine CRSA Dept Metabol Clin Hop St Antoine AP HP F-75012 Paris France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hydrothermal vent shrimps; Pressure tolerance; Viscosity; Homeostasis; Homeoviscous; Lipid signature; Lipidomes; AbyssBox;

    机译:水热通风虾;压力耐受性;粘度;稳态;正物;脂质签名;脂质蛋白;Abyssbox;

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