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Future Oceanic Warming and Acidification Alter Immune Response and Disease Status in a Commercial Shellfish Species Mytilus edulis L.

机译:未来的海洋变暖和酸化会改变商业贝类物种Mytilus edulis L.的免疫反应和疾病状况。

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摘要

Increases in atmospheric carbon dioxide are leading to physical changes in marine environments including parallel decreases in ocean pH and increases in seawater temperature. This study examined the impacts of a six month exposure to combined decreased pH and increased temperature on the immune response and disease status in the blue mussel, Mytilus edulis L. Results provide the first confirmation that exposure to future acidification and warming conditions via aquarium-based simulation may have parallel implications for bivalve health. Collectively, the data suggests that temperature more than pH may be the key driver affecting immune response in M. edulis. Data also suggests that both increases in temperature and/or lowered pH conditions may lead to changes in parasite abundance and diversity, pathological conditions, and bacterial incidence in M. edulis. These results have implications for future management of shellfish under a predicted climate change scenario and future sustainability of shellfisheries. Examination of the combined effects of two stressors over an extended exposure period provides key preliminary data and thus, this work represents a unique and vital contribution to current research efforts towards a collective understanding of expected near-future impacts of climate change on marine environments.
机译:大气中二氧化碳的增加导致海洋环境的物理变化,包括海洋pH值的平行下降和海水温度的上升。这项研究检查了六个月暴露于pH降低和温度升高共同对蓝贻贝Mytilus edulis L的免疫反应和疾病状况的影响。结果首次证实了通过水族箱暴露于未来的酸化和变暖条件模拟可能对双壳类动物的健康有平行的影响。总体而言,数据表明温度超过pH值可能是影响食用蓝藻的免疫反应的关键驱动因素。数据还表明,温度的升高和/或pH值降低都可能导致蓝藻中寄生虫丰度和多样性,病理状况以及细菌发生率的变化。这些结果对预测的气候变化情景下贝类的未来管理以及贝类渔业的未来可持续性具有影响。在延长的暴露时间内对两种压力源的综合作用进行检验,可以提供关键的初步数据,因此,这项工作为当前的研究工作做出了独特而重要的贡献,旨在共同了解气候变化对海洋环境的预期近期影响。

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