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海洋酸化和变暖对大陆架双壳类幼虫的行为和生理影响。

Behavioral and physiological effects of ocean acidification and warming on larvae of a continental shelf bivalve.

机构信息

School of Marine and Atmospheric Sciences, Stony Brook University, Stony Brook, NY 11790-5000, United States.

Downeast Institute, 39 Wildflower Lane, P.O. Box 83, Beals, ME 04611, United States.

出版信息

Mar Pollut Bull. 2023 Jul;192:115048. doi: 10.1016/j.marpolbul.2023.115048. Epub 2023 May 24.

Abstract

The negative impacts of ocean warming and acidification on bivalve fisheries are well documented but few studies investigate parameters relevant to energy budgets and larval dispersal. This study used laboratory experiments to assess developmental, physiological and behavioral responses to projected climate change scenarios using larval Atlantic surfclams Spisula solidissima solidissima, found in northwest Atlantic Ocean continental shelf waters. Ocean warming increased feeding, scope for growth, and biomineralization, but decreased swimming speed and pelagic larval duration. Ocean acidification increased respiration but reduced immune performance and biomineralization. Growth increased under ocean warming only, but decreased under combined ocean warming and acidification. These results suggest that ocean warming increases metabolic activity and affects larval behavior, while ocean acidification negatively impacts development and physiology. Additionally, principal component analysis demonstrated that growth and biomineralization showed similar response profiles, but inverse response profiles to respiration and swimming speed, suggesting alterations in energy allocation under climate change.

摘要

海洋升温酸化对双壳贝类渔业的负面影响已有大量记录,但很少有研究调查与能量预算和幼虫扩散相关的参数。本研究使用实验室实验,使用发现在北大西洋大陆架水域的大西洋浪蛤 Spisula solidissima solidissima 的幼虫,评估了预期气候变化情景对其发育、生理和行为的反应。海洋升温增加了摄食、生长范围和生物矿化,但降低了游泳速度和浮游幼虫持续时间。海洋酸化增加了呼吸作用,但降低了免疫性能和生物矿化。只有在海洋升温的情况下生长才会增加,但在海洋升温与酸化的共同作用下则会减少。这些结果表明,海洋升温增加了代谢活动并影响了幼虫行为,而海洋酸化则对发育和生理产生负面影响。此外,主成分分析表明,生长和生物矿化表现出相似的反应谱,但与呼吸和游泳速度的反应谱相反,这表明在气候变化下能量分配发生了改变。

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