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Maintained larval growth in mussel larvae exposed to acidified under-saturated seawater

机译:在暴露于酸化的下饱和海水中,在贻贝幼虫保持幼虫生长

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摘要

Ocean acidification (OA) is known to affect bivalve early life-stages. We tested responses of blue mussel larvae to a wide range of pH in order to identify their tolerance threshold. Our results confirmed that decreasing seawater pH and decreasing saturation state increases larval mortality rate and the percentage of abnormally developing larvae. Virtually no larvae reared at average pHT 7.16 were able to feed or reach the D-shell stage and their development appeared to be arrested at the trochophore stage. However larvae were capable of reaching the D-shell stage under milder acidification (pHT ≈ 7.35, 7.6, 7.85) including in under-saturated seawater with Ωa as low as 0.54 ± 0.01 (mean ± s. e. m.), with a tipping point for normal development identified at pHT 7.765. Additionally growth rate of normally developing larvae was not affected by lower pHT despite potential increased energy costs associated with compensatory calcification in response to increased shell dissolution. Overall, our results on OA impacts on mussel larvae suggest an average pHT of 7.16 is beyond their physiological tolerance threshold and indicate a shift in energy allocation towards growth in some individuals revealing potential OA resilience.
机译:已知海洋酸化(OA)会影响二气寿命阶段。我们测试了蓝贻贝幼虫的反应,以识别其容差阈值。我们的结果证实,海水pH降低和饱和状态下降的降低增加了幼虫的幼虫率和异常发育的百分比。实际上,在平均pHT 7.16的情况下,幼虫能够饲料或达到D-Shell阶段,并且它们的发展似乎在跨跨级阶段被捕。然而,幼虫能够在较温和的酸化(pHT≈7.35,7.6,7.6,7.85)下达到D-壳阶段,其中ωa低至0.54±0.01(平均值±0.01(平均±SEM),具有正常开发的倾斜点在PHT 7.765鉴定。尽管响应于壳溶解的补偿钙化相关的能量成本增加了潜在的能量成本,但通常幼虫的额外增长率不受较低的验收的影响。总体而言,我们对贻贝幼虫的OA影响的结果表明平均pHT为7.16超出其生理公差阈值,并表明在一些透露潜在的OA弹性的某些个人中的能量分配转变。

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