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Gender-specific ageing and non-Mendelian inheritance of oxidative damage in marine copepods

机译:海洋co足类动物的氧化损伤的性别特异性衰老和非孟德尔遗传

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摘要

Ageing in the marine pelagic copepod Acartia tonsa results in decreased feeding and production rates associated with an increase in the accumulation of protein oxidative damage, as predicted by the oxidative stress hypothesis. In laboratory experiments, we estimated sex-specific ageing effects on feeding and oxidative damage and on egg production rates of adult females. We also determined maternal effects on offspring by measuring egg hatching success and oxidative damage of nauplii from mothers of different ages. Males manifested more oxidative damage with age than females, providing an alternative explanation for the shorter life span in males. Older females produced fewer offspring, and nauplii with higher protein oxidative damage, than younger females. This study forms an empirical basis to link ageing, life span, sex differences and maternal fitness in animals that also reflects natural copepod population dynamics. Individual ageing processes and the resulting age structure in the population modulate mortality risk, parental effects on offspring performance, reproductive investment, and pelagic energy fluxes.
机译:如氧化应激假说所预测的那样,海洋中上层pe足纲A螨(Acartiatonsa)的衰老导致进食和生产速度下降,与蛋白质氧化损伤积累的增加有关。在实验室实验中,我们估计了成年雌性对饲料和氧化损伤以及产卵率的性别特异性衰老影响。我们还通过测量不同年龄母亲的卵孵化成功率和无节幼体的氧化损伤来确定母体对后代的影响。男性比女性表现出更多的氧化损伤,这为男性寿命缩短提供了另一种解释。与年幼的雌性相比,年纪较大的雌性产生的后代较少,无节幼体具有较高的蛋白质氧化损伤。这项研究为将年龄,寿命,性别差异和母体健康联系起来提供了经验基础,这也反映了co足类种群的自然动态。个体的衰老过程和由此产生的年龄结构调节着死亡风险,父母对后代表现的影响,生殖投资和上层能量通量。

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  • 来源
    《Marine ecology progress series》 |2010年第2010期|p.1-13|共13页
  • 作者单位

    Department of Marine Ecology, University of Gothenburg, Kristineberg 566, SE 450-34, Fiskebaeckskil, Sweden Facultad de Ciencias, Universidad de la Republica, Igua 4225, CP 11400, Montevideo, Uruguay;

    Department of Marine Ecology, University of Gothenburg, Kristineberg 566, SE 450-34, Fiskebaeckskil, Sweden Facultad de Ciencias, Universidad de la Republica, Igua 4225, CP 11400, Montevideo, Uruguay;

    Department of Marine Ecology, University of Gothenburg, Kristineberg 566, SE 450-34, Fiskebaeckskil, Sweden;

    Department of Environmental, Social and Spatial Change, Universitetsvej 1, Box 260, Building 16.1, 4000 Roskilde, Denmark;

    Department of Marine Ecology, University of Gothenburg, Kristineberg 566, SE 450-34, Fiskebaeckskil, Sweden;

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

    ingestion rate; fertility pattern; maternal effect; oxidative damage; acartia tonsa;

    机译:摄入率生育模式产妇效应氧化损伤tons螨;

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