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首页> 外文期刊>Marine biology >Lipofuscin accumulation in tissues of Arctica islandica indicates faster ageing in populations from brackish environments
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Lipofuscin accumulation in tissues of Arctica islandica indicates faster ageing in populations from brackish environments

机译:脂褐素在北极小tissue的组织中的积累表明苦咸环境下种群的衰老更快

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摘要

Environmental factors can affect the rate of ageing and shape the lifespan in marine ectotherms. The mechanisms and the degree of environmental influence on aging can best be studied in species with wide ranging biogeographic distribution. One of the biomarkers of physiological ageing is the fluorescent age pigment lipofuscin, which accumulates over lifetime in tissues of bivalves. We compared lipofuscin accumulation rate in muscles and respiratory tissues of the extremely long-lived bivalve Arctica islandica from five geographically distinct populations (Northern Norway, White Sea, Kiel Bay, German Bight and Iceland). Maximum investigated chronological age across different populations in the present study differed from 40 years in Kiel Bay to 192 years at Iceland. An inverse association between lipofuscin deposition rate and recorded maximum age was observed through inter-population comparisons. In most cases lipofuscin accumulated exponentially over age in a tissue-specific manner. The age-specific lipofuscin content was significantly higher in respiratory than muscles tissues in all populations. Cellular lipofuscin granule area can be used as indicator of aging across A. islandica populations with the variance in granule accumulation depending on the annual variations of salinity in different marine regions, but not on the habitat-specific thermal envelope.
机译:环境因素会影响海洋潮热的衰老速率并影响其寿命。最好在具有广泛生物地理分布的物种中研究环境对衰老的影响机制和程度。生理衰老的生物标志之一是荧光时代的脂褐素,它在双壳类动物的组织中终生积累。我们比较了五种地理上不同的种群(挪威北部,白海,基尔湾,德国湾和冰岛)中极长寿命的双壳类小白蚁的肌肉和呼吸组织中脂褐素的积累率。在本研究中,不同人群的最大调查年代年龄从基尔湾的40岁到冰岛的192岁不等。通过人群间比较观察到脂褐素沉积速率与记录的最大年龄之间呈负相关。在大多数情况下,脂褐素会以特定于组织的方式随着年龄增长而成倍增加。在所有人群中,年龄特定的脂褐素含量在呼吸中均显着高于肌肉组织。细胞中的脂褐素颗粒面积可以用作整个岛A种群衰老的指标,颗粒积累的变化取决于不同海洋区域盐度的年变化,但不取决于栖息地特定的温度范围。

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  • 来源
    《Marine biology》 |2017年第4期|72.1-72.11|共11页
  • 作者单位

    Murmansk Marine Biol Inst KSC RAS, 17 Vladimirskaya St, Murmansk 183010, Russia|St Petersburg State Univ, St Petersburg, Russia;

    Carl von Ossietzky Univ Oldenburg, Oldenburg, Germany;

    Inst Clin Mol Biol, Kiel, Germany;

    Alfred Wegener Inst, Helmholtz Ctr Polar & Marine Res, Bremerhaven, Germany;

    St Petersburg State Univ, St Petersburg, Russia|Zool Inst RAS, St Petersburg, Russia;

    Alfred Wegener Inst, Helmholtz Ctr Polar & Marine Res, Bremerhaven, Germany;

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