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Gear-Type Influences on Fish Catch and a Wetland Fish Index in Georgian Bay Wetlands

机译:齿轮类型对格鲁吉亚湾湿地渔获量和湿地鱼类指数的影响

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The Laurentian Great Lakes are managed by many jurisdictions that use a variety of survey methods and gear types to monitor fish assemblages in coastal marshes. Lack of standardization in these methods makes it difficult for organizations to compare data because of inherent biases in gear types. Of equal concern is the uncertainty of the effect of gear bias on fish-related index scores for ecosystem health. Our first objective was to investigate whether there were differences in catch data between two commonly used sampling gears: fyke nets (FN) and boat electrofishing (EF). Secondly, we investigated whether catch differences in data associated with gear biases can lead to significant differences when these data are used to generate scores for biotic indices such as the published Wetland Fish Index (WFI). We sampled 26 coastal wetlands in Georgian Bay (Lake Huron) in the summers of 2004 and 2005. A majority (73%) of the more than 10,000 fish were caught by FN; this gear also captured a greater number of species and functional taxa and selected for larger piscivores. By comparison, EF captured larger invertivores. Fyke nets were more selective for individuals from the Centrarchidae, Cyprinidae, and Ictaluridae families, while EF was more effective for darters (e.g., the Iowa darter Etheostoma exile and johnny darter E. nigrum) and white suckers Catostomus commersonii. Despite these biases in catch data, we obtained statistically similar WFI scores with both gear types. Therefore, although the fish abundance and species composition information collected from FN and EF are not directly comparable, when necessary they can be used interchangeably to generate a fish-based index of ecosystem health.
机译:劳伦山脉五大湖由许多辖区管理,这些辖区使用各种调查方法和渔具类型来监测沿海沼泽中的鱼类种群。由于齿轮类型的固有偏差,这些方法缺乏标准化,使组织难以比较数据。同样令人关切的是,渔具偏差对与鱼类有关的生态系统健康指数得分影响的不确定性。我们的首要目标是调查两种常用的采样工具:鱼叉网(FN)和船用电钓鱼(EF)之间的渔获数据是否存在差异。其次,我们调查了当这些数据用于生成生物指数(例如已发布的湿地鱼类指数(WFI))的分数时,与档位偏差相关的数据中的捕捞差异是否会导致显着差异。我们在2004年和2005年夏季对佐治亚湾(休伦湖)的26个沿海湿地进行了采样。在10,000多条鱼中,大部分(73%)被FN捕捞。该渔具还捕获了更多的物种和功能类群,并被选择用于较大的食肉动物。相比之下,EF捕获了更大的食肉动物。 Fyke网对中部,鲤科和犬科的个体更具选择性,而EF对飞镖(例如,爱荷华州飞镖Etheostoma流放者和强尼飞镖E.nigrum)和白色吮吸者Catostomus commersonii更有效。尽管渔获数据存在这些偏差,但我们在两种渔具类型上均获得了统计上相似的WFI分数。因此,尽管从FN和EF收集的鱼类丰度和物种组成信息不具有直接可比性,但在必要时可以互换使用,以生成基于鱼类的生态系统健康指数。

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