首页> 外文期刊>Journal of Experimental Marine Biology and Ecology >Ocean acidification induces multi-generational decline in copepod naupliar production with possible conflict for reproductive resource allocation
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Ocean acidification induces multi-generational decline in copepod naupliar production with possible conflict for reproductive resource allocation

机译:海洋酸化导致co足类无节幼体的多代衰退,可能与生殖资源分配冲突

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摘要

Climate change, including ocean acidification (OA), presents fundamental challenges to marine biodiversity and sustained ecosystem health. We determined reproductive response (measured as naupliar production), cuticle composition and stage specific growth of the copepod Tisbe battagliai over three generations at four pH conditions (pH 7.67,7.82,7.95, and 8.06). Naupliar production increased significantly at pH 7.95 compared with pH 8.06 followed by a decline at pH 7.82. Naupliar production at pH 7.67 was higher than pH 7.82. We attribute the increase at pH 7.95 to an initial stress response which was succeeded by a hormesis-like response at pH 7.67. A multi-generational modelling approach predicted a gradual decline in naupliar production over the next 100 years (equivalent to approximately 2430 generations). There was a significant growth reduction (mean length integrated across developmental stage) relative to controls. There was a significant increase in the proportion of carbon relative to oxygen within the cuticle as seawater pH decreased. Changes in growth, cuticle composition and naupliar production strongly suggest that copepods subjected to OA-induced stress preferentially reallocate resources towards maintaining reproductive output at the expense of somatic growth and cuticle composition. These responses may drive shifts in life history strategies that favour smaller brood sizes, females and perhaps later maturing females, with the potential to profoundly destabilise marine trophodynamics.
机译:气候变化,包括海洋酸化(OA),对海洋生物多样性和可持续的生态系统健康提出了根本性挑战。我们确定了pe足类Tisbe battagliai在四个pH条件(pH 7.67、7.82、7.95和8.06)的三代中的生殖反应(以无节幼体产量衡量),表皮组成和阶段特异性生长。在pH 7.95时,Naupliar的产量与pH 8.06相比显着​​增加,随后在pH 7.82时下降。 pH 7.67时的Naupliar产量高于pH 7.82。我们将在pH 7.95下的增加归因于初始压力反应,该反应在pH 7.67时发生了类似兴奋剂的反应。一种多代建模方法预测了未来100年(相当于约2430代)无节幼体产量将逐渐下降。相对于对照组,显着的生长减少(平均长度在整个发育阶段综合)。随着海水pH值的降低,表皮中碳相对于氧气的比例显着增加。生长,角质层组成和无节幼体产量的变化强烈表明,遭受OA诱导的pe足类优先重新分配资源,以维持生殖输出,但以体细胞生长和角质层组成为代价。这些反应可能会推动生活史策略的转变,这些策略倾向于采用较小的亲鱼,雌性,或者可能是成年雌性,有可能严重破坏海洋对流动力学。

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    School of Marine Science and Technology, Ridley Building, Claremont Road, Newcastle University, Newcastle upon Tyne, NE1 7RU, England, UK,School of Geographical and Earth Sciences, Gregory Building, University of Glasgow, Lilybank Gardens, Glasgow, G12 8QQ, Scotland, UK;

    School of Marine Science and Technology, Ridley Building, Claremont Road, Newcastle University, Newcastle upon Tyne, NE1 7RU, England, UK;

    School of Biology, Ridley Building, Newcastle University, NE1 7RU, England, UK;

    School of Marine Science and Technology, Ridley Building, Claremont Road, Newcastle University, Newcastle upon Tyne, NE1 7RU, England, UK;

    School of Marine Science and Technology, Ridley Building, Claremont Road, Newcastle University, Newcastle upon Tyne, NE1 7RU, England, UK;

    School of Marine Science and Technology, Ridley Building, Claremont Road, Newcastle University, Newcastle upon Tyne, NE1 7RU, England, UK;

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  • 正文语种 eng
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  • 关键词

    ecological significance; model; multi-generation; ocean acidification; reproduction;

    机译:生态意义;模式;多代;海洋酸化;繁殖;

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