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首页> 外文期刊>Estuarine Coastal and Shelf Science >Population ecology, growth, and physico-chemical habitat of anadromous European perch Perca fluviatilis
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Population ecology, growth, and physico-chemical habitat of anadromous European perch Perca fluviatilis

机译:人口生态,生长,生长和物理化学栖息地的阿腹欧洲栖息地Perca Fluviatilis

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Anadromous sub-populations of stenohaline freshwater fish are vastly understudied in the estuarine environment. The purpose of the present study was therefore to study the population ecology, growth rate, and physicochemical environment of an anadromous sub-population of European perch (Perca fluviatilis) from the western Baltic Sea. Fish (301) were marked with external identification tags, and anglers and fishermen reported recaptures in a citizen science set-up over three years. In addition, scale samples were collected for population growth rate determination. Furthermore, water temperature, salinity, and oxygen concentration were monitored in the area. The fish showed a consistent annual migration pattern over the three years residing in a bay during summer while being in a delta during autumn, winter, and spring. The population had a high growth rate, but a meta-analysis showed that growth of European perch is not distinctly different between estuarine and freshwater populations. The average salinity measured in the area was around 10, but increased on multiple occasions to salinity levels known for being physiologically challenging for European perch. We argue that high growth rates of estuarine European perch is more likely due to high food availability and low interspecific competition in this environment, rather than due to physiologically optimal salinities. Furthermore, the European perch in the present study lived on the edge of the species salinity tolerance, and the migration into the delta during winter is likely a combination of avoiding high salinities at low temperatures and a spawning migration. These results are important knowledge for the management of estuaries and coastal areas, especially as climate change is locally altering these environments drastically, and calls for further studies on other anadromous sub-populations of stenohaline freshwater fish.
机译:在河口环境中,斯仑葡萄酒淡水鱼的副群群受到巨大的评估。因此,本研究的目的是研究来自西波罗的海的欧洲栖息地(Perca Fluviatilis)的群体生态,生长速率和物理化学环境。鱼(301)标有外部识别标签,垂钓者和渔民报告了三年多的公民科学建设中的返回。此外,收集尺度样品,用于种群生长速率测定。此外,在该区域监测水温,盐度和氧气浓度。这条鱼在夏天在秋季,冬季和春天在夏天居住在一间湾的三年内展示了一项一致的年度迁徙模式。人口的增长率高,但常见的分析表明,欧洲栖息地的生长并不明显不同于河口和淡水种群之间的不同。在该区域中测量的平均盐度约为10,但多次增加到普遍存在欧洲鲈鱼的生理挑战性的盐度水平增加。我们认为,由于这种环境中的高食物可用性和低间隙竞争,河口欧洲鲈鱼的高增长率更可能是由于这种环境中的低间隙竞争,而不是由于生理上最佳的盐度。此外,本研究中的欧洲栖息地在物种盐度耐受的边缘上居住,并且在冬季迁移到δ中可能是避免在低温下高盐度和产卵迁移的组合。这些结果是对河口和沿海地区管理的重要知识,特别是随着气候变化,彻底改变了这些环境,并要求进一步研究斯因霍琳淡水鱼的其他阿赤素次产。

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