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利用稳定同位素分析预测鲈鱼(Perca fluviatilis)引入到一个生物多样性丰富的湖泊的潜在影响。

Predicting the potential implications of perch (Perca fluviatilis) introductions to a biodiversity-rich lake using stable isotope analysis.

机构信息

Department of Basic Sciences, Faculty of Fisheries, Muğla Sıtkı Koçman University, Menteşe, Muğla, Turkey.

Department of Life and Environmental Sciences, Faculty of Science and Technology, Bournemouth University, Poole, Dorset, UK.

出版信息

Sci Rep. 2023 Oct 17;13(1):17635. doi: 10.1038/s41598-023-44865-2.

DOI:10.1038/s41598-023-44865-2
PMID:37848487
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10582113/
Abstract

Biological invasions, particularly of fish species, significantly threaten aquatic ecosystems. Among these invaders, the introduction of the European perch (Perca fluviatilis) can have particularly detrimental effects on native communities, affecting both ecosystem functioning and human well-being. In this study, carbon and nitrogen stable isotope analysis was employed, using perch originating from five different ecosystems, to model the effects of their hypothetical introduction into İznik Lake, an economically and ecologically important, biodiversity-rich lake in northern Turkey, to ultimately assess their potential predation impact and competition with native predators. The results revealed that if perch were introduced to the community, they would - considering gape size limitations - primarily prey upon Vimba vimba and Rutilus rutilus, indicating a significant feeding pressure on these species. Furthermore, the study identified a potential overlap and competition for resources between commonly mesopredator perch and the European catfish Silurus glanis, the current top predator in the ecosystem. Both species would occupy top predatory positions, emphasizing the potential disruption of predator-prey dynamics. Our findings underscore the potential ecological repercussions of perch invasions. The selective predation on V. vimba and R. rutilus, with the latter being consumed to a lesser extent by perch, could lead to cascading effects throughout the food web, altering the community structure, and ecosystem dynamics. Additionally, the competition between perch and S. glanis raises concerns about effects on the stability and functioning of the fish community. These results highlight the need for proactive management strategies to mitigate the risk of perch introductions. Strict regulations on the movement and introduction of invasive species, along with comprehensive monitoring, are crucial for preserving native communities and maintaining the ecological integrity of freshwater ecosystems. Our study demonstrates the potential predation impact of perch on vulnerable fish species and the competition with the established apex predator, emphasizing the importance of considering the ecological consequences of perch invasions and informing management decisions to ensure the conservation and sustainability of aquatic ecosystems.

摘要

生物入侵,特别是鱼类物种的入侵,对水生生态系统构成了重大威胁。在这些入侵物种中,欧洲鲈鱼(Perca fluviatilis)的引入对本地群落可能产生特别不利的影响,影响生态系统功能和人类福祉。在这项研究中,使用源自五个不同生态系统的鲈鱼进行了碳和氮稳定同位素分析,以模拟假设将其引入土耳其北部经济和生态重要、生物多样性丰富的伊兹尼克湖的影响,最终评估它们潜在的捕食影响和与本地捕食者的竞争。结果表明,如果鲈鱼被引入该群落,考虑到口裂大小的限制,它们将主要捕食 Vimba vimba 和 Rutilus rutilus,这表明这些物种将面临重大的摄食压力。此外,该研究还发现常见的中上层捕食者鲈鱼和欧洲鲶鱼 Silurus glanis 之间可能存在重叠和资源竞争,后者是该生态系统中的顶级捕食者。这两个物种都将占据顶级捕食地位,强调了捕食者-猎物动态可能受到破坏。我们的研究结果突显了鲈鱼入侵的潜在生态后果。鲈鱼对 V. vimba 和 R. rutilus 的选择性捕食,而鲈鱼对后者的捕食程度较低,可能会导致整个食物网产生级联效应,改变群落结构和生态系统动态。此外,鲈鱼和 S. glanis 之间的竞争引起了人们对鱼类群落稳定性和功能的影响的担忧。这些结果强调了需要采取积极的管理策略来减轻鲈鱼引入的风险。严格规定入侵物种的移动和引入,以及全面监测,对于保护本地群落和维持淡水生态系统的生态完整性至关重要。我们的研究表明,鲈鱼对脆弱鱼类物种的潜在捕食影响以及与已建立的顶级捕食者的竞争,强调了考虑鲈鱼入侵的生态后果并为管理决策提供信息以确保水生生态系统的保护和可持续性的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7bf/10582113/1252cd5ffded/41598_2023_44865_Fig4_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7bf/10582113/e414ee4cf37e/41598_2023_44865_Fig1_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7bf/10582113/f315f5aefcf2/41598_2023_44865_Fig2_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7bf/10582113/d4c8c29fcf45/41598_2023_44865_Fig3_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7bf/10582113/1252cd5ffded/41598_2023_44865_Fig4_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7bf/10582113/e414ee4cf37e/41598_2023_44865_Fig1_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7bf/10582113/f315f5aefcf2/41598_2023_44865_Fig2_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7bf/10582113/d4c8c29fcf45/41598_2023_44865_Fig3_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7bf/10582113/1252cd5ffded/41598_2023_44865_Fig4_HTML.jpg

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