The importance of upwelling conditions as drivers of feeding behavior and thermal tolerance in a prominent intertidal fish

IF 3.2 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES Marine environmental research Pub Date : 2025-02-01 Epub Date: 2024-12-05 DOI:10.1016/j.marenvres.2024.106896
Melissa Fernández , Cristian Duarte , Marcela Aldana , Joaquín Delgado-Rioseco , Francisca Blanco-Herrera , Oscar Varas , Pedro A. Quijón , Diego Quintanilla-Ahumada , M Roberto García-Huidobro , José Pulgar
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Abstract

Upwelling, as a large oceanographic phenomenon, increases coastal productivity and influences all levels of biological complexity. Despite decades of research on it, much remains to be understood about the impact of upwelling on the feeding behavior and thermal tolerance of important groups such as fish. Hence, our aim was to investigate how upwelling conditions modify the feeding behavior and thermal tolerance of a prominent intertidal fish, Girella laevifrons. We collected purple mussels (Perumytilus purpuratus) from upwelling (U) and downwelling sites (DU) in central Chile, and used them as prey in feeding trials and measuring the concentration of organic matter and proteins in their tissues. We assessed fish consumption rates and growth in fish collected from the same U and DU sites, feeding on either U or DU mussels. Lastly, we assessed the thermal tolerance of U and DU fish fed with the aforementioned U vs DU mussels. We found that U mussels held higher concentrations of organic matter and proteins compared to their DU counterparts. U mussels were also selected and consumed in larger amounts than DU mussels, although the origin of the fish also influenced consumption rates. Thermal tolerance assays revealed that U fish exhibited higher maximum performance (Max.pf) and critical thermal maxima (Ctmax) and lower sensitivity to temperature changes (as measured by Q10), compared to DU fish. Altogether, these results point to a strong influence of upwelling on the quality of organisms’ tissues, indirectly altering key aspects of fish feeding behavior and thermal tolerance. These findings also contribute to understanding the physiological adjustments organisms make in productive upwelling systems, and how they may change in the future with ongoing climate events.
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上升流条件对潮间带鱼类摄食行为和热耐受性的影响。
上升流作为一种大型海洋学现象,提高了沿海生产力,并影响了各个层面的生物复杂性。尽管对它进行了数十年的研究,但关于上升流对鱼类等重要群体的摄食行为和耐热性的影响,仍有许多有待了解的地方。因此,我们的目的是研究上升流条件如何改变一种著名的潮间带鱼类的摄食行为和热耐受性。我们在智利中部的上升流(U)和下升流(DU)地点采集了紫贻贝(Perumytilus purpuratus),并将其作为猎物进行饲养试验和测量其组织中有机物和蛋白质的浓度。我们评估了从同一U和DU站点采集的鱼类的食用量和生长情况,分别以U和DU贻贝为食。最后,我们评估了U和DU鱼分别饲喂U和DU贻贝的热耐受性。我们发现,与DU贻贝相比,U贻贝含有更高浓度的有机物和蛋白质。U型贻贝也被选中,消费量也比DU型贻贝大,尽管鱼类的来源也影响了消费量。热耐受性实验表明,与DU鱼相比,U鱼表现出更高的最大性能(Max.pf)和临界热最大值(Ctmax),对温度变化的敏感性(通过Q10测量)较低。总之,这些结果表明上升流对生物体组织质量的强烈影响,间接改变了鱼类摄食行为和热耐受性的关键方面。这些发现还有助于理解生物在生产性上升流系统中所做的生理调整,以及它们在未来如何随着持续的气候事件而变化。
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来源期刊
Marine environmental research
Marine environmental research 环境科学-毒理学
CiteScore
5.90
自引率
3.00%
发文量
217
审稿时长
46 days
期刊介绍: Marine Environmental Research publishes original research papers on chemical, physical, and biological interactions in the oceans and coastal waters. The journal serves as a forum for new information on biology, chemistry, and toxicology and syntheses that advance understanding of marine environmental processes. Submission of multidisciplinary studies is encouraged. Studies that utilize experimental approaches to clarify the roles of anthropogenic and natural causes of changes in marine ecosystems are especially welcome, as are those studies that represent new developments of a theoretical or conceptual aspect of marine science. All papers published in this journal are reviewed by qualified peers prior to acceptance and publication. Examples of topics considered to be appropriate for the journal include, but are not limited to, the following: – The extent, persistence, and consequences of change and the recovery from such change in natural marine systems – The biochemical, physiological, and ecological consequences of contaminants to marine organisms and ecosystems – The biogeochemistry of naturally occurring and anthropogenic substances – Models that describe and predict the above processes – Monitoring studies, to the extent that their results provide new information on functional processes – Methodological papers describing improved quantitative techniques for the marine sciences.
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