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Different sensitivity to heatwaves across the life cycle of fish reflects phenotypic adaptation to environmental niche

机译:对鱼类生命周期的热浪的不同敏感性反映了对环境利基的表型适应

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摘要

Predicting responses of marine organisms to global change requires eco-physiological assessments across the complex life cycles of species. Here, we experimentally tested the vulnerability of a demersal temperate fish (Sparus aurata) to long-lasting heatwaves, on larval , juvenile and adult life-stages. Fish were exposed to simulated coastal (18 degrees C), estuarine (24 degrees C) summer temperatures, and heatwave conditions (30 degrees C) and their physiological responses were assessed based on cellular stress response biomarkers (heat shock protein 70 kDa, ubiquitin, antioxidant enzymes, lipid peroxidation) and phenotypic measures (histopathology, condition and mortality). Life-stage vulnerability can be ranked as larvae adults juveniles, based on mortality , tissue pathology and the capacity to employ cellular stress responses, reflecting the different environmental niches of each life stage. While larvae lacked acclimation capacity, which resulted in damage to tissues and elevated mortality, juveniles coped well with elevated temperature. The rapid induction of cytoprotective proteins maintained the integrity of vital organs in juveniles, suggesting adaptive phenotypic plasticity in coastal and estuarine waters. Adults displayed lower plasticity to heatwaves as they transition to deeper habitats for maturation, showing tissue damage in brain, liver and muscle. Life cycle closure of sea breams in coastal habitats will therefore be determined by larval and adult stages.
机译:预测海洋生物对全球变化的反应需要对物种复杂生命周期的生态生理评估。在这里,我们通过实验测试了在幼虫,少年和成年生命阶段的持久换热中的逆缘温带鱼(Sparus Aurata)的脆弱性。鱼类暴露于模拟沿海(18℃),河河冬季温度(30摄氏度)和热风条件(30摄氏度)及其生理反应基于细胞应激反应生物标志物(热休克蛋白70kDa,泛素,泛素,抗氧化酶,脂质过氧化)和表型测量(组织病理学,病症和死亡率)。生命阶段脆弱性可以作为幼虫>成人>少年,基于死亡率,组织病理学和使用细胞应激反应的能力,反映每个生命阶段的不同环境效力。幼虫缺乏适应能力,导致组织损伤和升高的死亡率,幼年含量良好,温度升高。细胞保护蛋白的快速诱导保持了幼稚的重要器官的完整性,暗示沿海和河口水域的适应性表型可塑性。成年人在过渡到更深的栖息地进行成熟时呈较低的可塑性,显示出脑,肝脏和肌肉的组织损伤。因此,沿海栖息地海上鲷鱼的生命周期将由幼虫和成人阶段决定。

著录项

  • 来源
    《Marine Environmental Research》 |2020年第12期|105192.1-105192.11|共11页
  • 作者单位

    NOVA Univ Lisbon Fac Sci & Technol Dept Chem Appl Mol Biosci Unit UCIBIO P-2829516 Caparica Portugal|Univ Aveiro Ctr Environm & Marine Studies Dept Biol CESAM ECOMARE Lab Innovat & Sustainabil Marine Bi Estr Porto Pesca Costeira P-3830565 Gafanha Da Nazare Portugal;

    Univ Lisbon Fac Sci Marine & Environm Sci Ctr MARE P-1749016 Lisbon Portugal|NOVA Univ Lisbon Fac Sci & Technol Dept Life Sci Appl Mol Biosci Unit UCIBIO P-2829516 Caparica Portugal;

    NOVA Univ Lisbon Fac Sci & Technol Dept Life Sci Appl Mol Biosci Unit UCIBIO P-2829516 Caparica Portugal;

    Univ Lisbon Fac Sci Marine & Environm Sci Ctr MARE P-1749016 Lisbon Portugal|Univ Algarve Ctr Marine Sci CCMAR Campus Gambelas P-8005139 Faro Portugal;

    Alfred Wegener Inst Polar & Marine Res Handelshafen 12 D-27570 Bremerhaven Germany;

    NOVA Univ Lisbon Fac Sci & Technol Dept Chem Appl Mol Biosci Unit UCIBIO P-2829516 Caparica Portugal;

  • 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

    Temperature; Phenotypic plasticity; Life cycle stages; Biomarkers; Global change;

    机译:温度;表型可塑性;生命周期阶段;生物标志物;全球变革;

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