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海洋双壳贝类大扇贝和贻贝属对热与低氧联合刺激的呼吸反应

Respiratory response to combined heat and hypoxia in the marine bivalves Pecten maximus and Mytilus spp.

作者信息

Artigaud Sébastien, Lacroix Camille, Pichereau Vianney, Flye-Sainte-Marie Jonathan

机构信息

Laboratoire des Sciences de l'Environnement Marin, LEMAR UMR 6539 CNRS/UBO/IRD/Ifremer, Université de Bretagne Occidentale, Institut Universitaire Européen de la Mer, 29280 Plouzané, France.

Laboratoire des Sciences de l'Environnement Marin, LEMAR UMR 6539 CNRS/UBO/IRD/Ifremer, Université de Bretagne Occidentale, Institut Universitaire Européen de la Mer, 29280 Plouzané, France.

出版信息

Comp Biochem Physiol A Mol Integr Physiol. 2014 Sep;175:135-40. doi: 10.1016/j.cbpa.2014.06.005. Epub 2014 Jun 17.

Abstract

Coastal ecosystems are increasingly disturbed by the increase of mean sea surface temperature and expansion of hypoxic areas. The objectives of the present work were to describe and compare the respiratory responses to combined heat and hypoxia in two bivalve species (Pecten maximus and Mytilus spp.) living in two contrasted coastal habitats (subtidal and intertidal, respectively). Results were consistent with the vertical zonation of both species. Mytilus spp. seemed to cope better with a temperature increase than P. maximus, which was found to be outside of its optimal thermal window at 25°C. Concerning respiratory responses to hypoxia at a given temperature, P. maximus displayed greater oxyregulation capacity that was maintained over a larger range of O2 levels, as compared to Mytilus spp. When acclimation temperatures increased, both species showed a decrease in their oxyregulation capacities alongside a reduction in aerobic performance, especially in P. maximus. The comparison between species suggests that subtidal species, such as P. maximus, might be more vulnerable to a combination of heat and hypoxia than intertidal species, such as Mytilus spp. Lastly, this study highlighted the utility of segmented linear models to estimate PcO2 and regulation percentages in marine organisms exposed to hypoxia.

摘要

沿海生态系统越来越受到平均海表温度升高和缺氧区域扩大的干扰。本研究的目的是描述和比较生活在两种截然不同的沿海栖息地(分别为潮下带和潮间带)的两种双壳类物种(大扇贝和贻贝属)对热和缺氧联合作用的呼吸反应。结果与这两个物种的垂直分布一致。贻贝属似乎比大扇贝更能应对温度升高,而大扇贝在25°C时已超出其最佳热窗口。关于在给定温度下对缺氧的呼吸反应,与贻贝属相比,大扇贝表现出更大的氧调节能力,且在更大范围的氧气水平内保持这种能力。当驯化温度升高时,两个物种的氧调节能力均下降,同时有氧性能降低,大扇贝尤其如此。物种间的比较表明,潮下带物种,如大扇贝,可能比潮间带物种,如贻贝属,更容易受到热和缺氧联合作用的影响。最后,本研究强调了分段线性模型在估计暴露于缺氧环境的海洋生物的PCO2和调节百分比方面的实用性。

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