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Development of abundance and size structure of young-of-the-year perch populations using three methods

机译:使用三种方法开发年幼鲈种群的丰度和大小结构

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The reliable assessment of fish populations, which can vary in their spatial and demographic structure, assumes that the results are independent of the assessment method used. To test this assumption for the size structure of the young-of-the-year (YOY) age cohort of perch, three gravel pit lakes and four shallow ponds were monitored using three sampling methods from May to October. While bongo nets were used for early juveniles in the pelagic zone, electrofishing and multi-mesh gillnets were usedlater in the year when perch had moved to the littoral zone. Since bigger perch (post-larvae) switch from the pelagic to the littoral zone during ontogenesis, bongo net catches during June in the pelagic area of the lakes sampled only the smaller perch,while simultaneous electrofishing in the littoral zone caught bigger perch. Later in the season in the littoral zone, smaller perch were caught only by electrofishing and the bigger ones with gillnets. Monthly samples caught by electrofishing and gillnets in the experimental ponds from June to September showed even larger differences between the sizes of perch. Because the size distribution of the YOY perch cohort in the ponds had broadened considerably, there was sometimes no overlap in the length-frequency distributions between the two methods used, clearly demonstrating that using a single method is not sufficient for drawing a complete picture of the population size structure. This was verified by the removal of fish from the experimental ponds inOctober. Our results give clear evidence (and thus confirm previous studies) that using one method alone would result in an incomplete picture of the development of the size structure of the YOY perch population, due to the facts that (1) not all perch switch simultaneously between different habitats during ontogenesis and (2) that swimming performance, habitat-specific occurrence and activity change with size, thus affecting the method-specific catchability. Consequently, at least two appropriate methods must be used in an overlapping/parallel sampling design in order to draw a reliable picture of the development of the YOY perch population in any given body of water.
机译:鱼类种群的可靠评估可能会因其空间和人口结构的变化而变化,其假设结果与所采用的评估方法无关。为了验证这一假设,以分析鲈鱼年幼年龄组的规模结构,从5月到10月,使用三种采样方法对三个砾石坑湖和四个浅池进行了监测。在中上层带的早期幼体使用邦戈网,而在鲈鱼移到沿海区的那年晚些时候,使用了电捕鱼和多网刺网。由于在成虫过程中较大的鲈鱼(幼虫后)从中上层向滨海区转换,因此六月中旬在湖泊中上层地区的邦戈网捕捞只对较小的鲈鱼进行了采样,而在沿岸区的同时电钓则捕获了较大的鲈鱼。在该季节的后期,在沿海地区,只用电钓鱼就能捕获到较小的鲈鱼,而用刺网则能捕获更大的鲈鱼。 6月至9月在实验池塘中每月用电鱼和刺网捕捞的样品显示出鲈鱼大小之间的差异更大。由于YOY鲈鱼种群在池塘中的大小分布已大大拓宽,因此有时使用的两种方法之间的长度-频率分布没有重叠,这清楚地表明,仅使用一种方法不足以绘制出完整的图景。人口规模结构。十月份从实验池塘中移出鱼类证实了这一点。我们的结果提供了明确的证据(并因此证实了先前的研究),由于以下事实,单独使用一种方法会导致YOY鲈鱼种群规模结构的发展不完整,这是因为(1)并非所有鲈鱼都在同一时间之间切换(2)游泳表现,特定栖息地的发生和活动随大小而变化,从而影响特定方法的可捕获性。因此,在重叠/平行采样设计中必须至少使用两种适当的方法,以便对任何给定水域中的鲈鱼种群的发展情况得出可靠的印象。

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