首页> 外文期刊>Marine biology >Near-future oceanic CO_2 delays development and growth in early-stage larvae of the endemic New Zealand sea urchin, Evechinus chloroticus
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Near-future oceanic CO_2 delays development and growth in early-stage larvae of the endemic New Zealand sea urchin, Evechinus chloroticus

机译:近未来的海洋CO_2延迟新西兰特有的新西兰海胆早期幼虫的开发和增长

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Under the ocean acidification (OA) conditions predicted for 2100, the larval stages of temperate sea urchins are smaller, with reduced and abnormal skeleton and changes in metabolic rate. Here, we measure the impact of near-future and long-term predictions of atmospheric pCO(2) levels on the early development of the echinometrid sea urchin Evechinus chloroticus using single male:female crosses, effect sizes and a within-study meta-analysis. Using the developmental signpost of the 16-cell stage, we show a mean delay of 5.11 min at pH 7.7 and 11.85 min at pH 7.5, which may have flow-on effects to later embryo and larval stages. Echinopluteus larvae raised in OA conditions (pH 7.7, 7.5) were similar to 5-10% smaller in body length and 10-12% smaller in arm length than controls. Metabolic rate was highly variable between single male:female crosses-increasing in some crosses, decreasing in others-with a non-significant effect size in the meta-analysis. Preliminary experiments suggest that metabolic rate changes may be impacted by loss of mitochondrial function at low pH. Single male:female crosses showed variable OA responses in all measurements, suggesting that when assessing the population-level impacts of OA on early development of sea urchins there is a need to include high levels of biological replication.
机译:在预测2100的海洋酸化(OA)条件下,温带海胆的幼虫阶段较小,骨骼较小,骨骼异常和代谢率变化。在这里,我们测量近期和长期预测的近期和长期预测使用单一男性的echinometrId海胆海胆的早期发展的影响:女性横梁,效应大小和研究内的荟萃分析。使用16细胞阶段的发育路标,我们在pH7.5的pH 7.7和11.85分钟时显示5.11分钟的平均延迟,这可能对后来的胚胎和幼虫阶段具有流动的影响。在OA条件(pH7.7,7.5)中升高的ECHINOPLUTEUS幼虫类似于体长较小的5-10%,臂长度比对照较小10-12%。单一男性之间的代谢率是高度变化的:在一些十字架中增加女性交叉,在其他方面减少 - 在META分析中具有非显着效果大小。初步实验表明代谢率变化可能在低pH下失去线粒体函数的影响。单身男性:雌性十字架在所有测量中显示出变量OA反应,表明在评估OA对海胆早期发展的人口级别的影响时,需要包括高水平的生物复制。

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  • 来源
    《Marine biology》 |2021年第9期|141.1-141.20|共20页
  • 作者单位

    Univ Auckland Sch Biol Sci Private Bag 92019 Auckland New Zealand;

    Univ Auckland Sch Biol Sci Private Bag 92019 Auckland New Zealand|Vancouver Isl Univ Dept Fisheries & Aquaculture Nanaimo BC V9R 5S5 Canada;

    Univ Auckland Sch Biol Sci Private Bag 92019 Auckland New Zealand;

    Univ Auckland Dept Stat Private Bag 92019 Auckland New Zealand;

    Univ Auckland Sch Biol Sci Private Bag 92019 Auckland New Zealand|Univ Auckland Inst Marine Sci Private Bag 92019 Auckland New Zealand;

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