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未来的海洋酸化会影响海洋鱼类的能量平衡吗?

Could future ocean acidification be affecting the energy budgets of marine fish?

作者信息

Yoon Gwangseok R, Bozai Arsheen, Porteus Cosima S

机构信息

Department of Biological Sciences, University of Toronto Scarborough, 1265 Military Trail, Toronto, Ontario, M1C 1A4, Canada.

School of Marine and Environmental Programs, University of New England, 11 Hills Beach Road, Biddeford, Maine, 04005, USA.

出版信息

Conserv Physiol. 2024 Oct 8;12(1):coae069. doi: 10.1093/conphys/coae069. eCollection 2024.

Abstract

With the unprecedented environmental changes caused by climate change including ocean acidification, it has become crucial to understand the responses and adaptive capacity of fish to better predict directional changes in the ecological landscape of the future. We conducted a systematic literature review to examine if simulated ocean acidification (sOA) could influence growth and reproduction in fish within the dynamic energy budget theory framework. As such, we chose to examine metabolic rate, locomotion, food assimilation and growth in early life stages (i.e. larvae and juvenile) and adults. Our goal was to evaluate if acclimatization to sOA has any directional changes in these traits and to explore potential implications for energetic trade-offs in these for growth and reproduction. We found that sOA had negligible effects on energetic expenditure for maintenance and aerobic metabolism due to the robust physiological capacity regulating acid-base and ion perturbations but substantive effects on locomotion, food assimilation and growth. We demonstrated evidence that sOA significantly reduced growth performance of fish in early life stages, which may have resulted from reduced food intake and digestion efficiency. Also, our results showed that sOA may enhance reproduction with increased numbers of offspring although this may come at the cost of altered reproductive behaviours or offspring fitness. While these results indicate evidence for changes in energy budgets because of physiological acclimatization to sOA, the heterogeneity of results in the literature suggests that physiological and neural mechanisms need to be clearly elucidated in future studies. Lastly, most studies on sOA have been conducted on early life stages, which necessitates that more studies should be conducted on adults to understand reproductive success and thus better predict cohort and population dynamics under ongoing climate change.

摘要

随着气候变化导致前所未有的环境变化,包括海洋酸化,了解鱼类的反应和适应能力对于更好地预测未来生态景观的定向变化变得至关重要。我们进行了一项系统的文献综述,以研究在动态能量预算理论框架内,模拟海洋酸化(sOA)是否会影响鱼类的生长和繁殖。因此,我们选择研究早期生命阶段(即幼体和幼鱼)及成鱼的代谢率、运动能力、食物同化和生长情况。我们的目标是评估对sOA的驯化是否会使这些性状发生任何定向变化,并探讨其对这些生长和繁殖能量权衡的潜在影响。我们发现,由于调节酸碱和离子扰动的强大生理能力,sOA对维持能量消耗和有氧代谢的影响可忽略不计,但对运动能力、食物同化和生长有实质性影响。我们证明,sOA显著降低了鱼类早期生命阶段的生长性能,这可能是由于食物摄入量和消化效率降低所致。此外,我们的结果表明,sOA可能会通过增加后代数量来提高繁殖能力,尽管这可能以改变繁殖行为或后代适应性为代价。虽然这些结果表明由于对sOA的生理驯化,能量预算发生了变化,但文献结果的异质性表明,未来的研究需要清楚地阐明生理和神经机制。最后,大多数关于sOA的研究都是在早期生命阶段进行的,因此有必要对成鱼进行更多研究,以了解繁殖成功率,从而更好地预测在持续气候变化下的种群和群体动态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7bc5/11459383/cb7c9acfd106/coae069f1.jpg

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