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Tagging Methods for Estimating Population Size and Mortality Rates of Inland Striped Bass Populations

机译:标记用于估算内陆条纹低音群体的人口大小和死亡率的方法

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Striped bass Morone saxatilis in inland reservoirs play an important role ecologically and in supporting recreational fishing. To manage these populations,biologists need information about abundance and mortality. Abundance estimates can be used to assess the effectiveness of stocking programs that maintain most reservoir striped bass populations. Mortality estimates can indicate the relative impact of fishing versus natural mortality and the need for harvest regulation. The purpose of this chapter is to evaluate tagging studies as a way of obtaining information about abundance and mortality. These approaches can be grouped into three broad categories: tag recapture, tag return, and telemetry. Tag-recapture methods are typically used to estimate population size and other demographic parameters but are often difficult to apply in large systems. A fishing tournament can be an effective way of generating tagging or recapture effort in large systems, compared to using research sampling only. Tag-returnmethods that rely on angler harvest and catch and release can be used to estimate fishing (F) and natural (M) mortality rates and are a practical approach in large reservoirs. The key to success in tag-return studies is to build in auxiliary studies toestimate short-term tagging mortality, short- and long-term tag loss, reporting rate, and mortality associated with catch and release. F and Mean also be estimated using telemetry tags. Advantages of this approach are that angler nonreporting does not bias estimates and fish with transmitters provide useful ecological data. Cost can be a disadvantage of telemetry studies; thus, combining telemetry tags with conventional tag returns in an integrated analysis is often the optimal approach. In summary, tagging methods can be a powerful tool for assessing the effectiveness of inland striped bass stocking programs and the relative impact of fishing versus natural mortality.
机译:内陆水库中的条纹低音孤立者在生态上发挥着重要作用,并在支持休闲捕鱼。为了管理这些人口,生物学家需要有关丰富和死亡率的信息。丰富的估计可用于评估维护大多数水库条纹低音人群的库存的有效性。死亡率估计可以表明捕捞与自然死亡率的相对影响以及对收获监管的需求。本章的目的是评估标记研究作为获取有关丰富和死亡率的信息的方式。这些方法可以分为三个广泛类别:标签recapture,标签返回和遥测。标签 - 重新捕获方法通常用于估计人口大小和其他人口统计参数,但通常难以在大型系统中应用。与使用仅使用研究采样相比,捕鱼锦标赛可以是在大型系统中产生标记或重新捕获努力的有效方式。依赖钓鱼者收获和捕获和释放的标签 - Returnmethods可用于估算捕捞(F)和自然(M)死亡率,并且是大型水库的实用方法。标签返回研究成功的关键是在辅助研究中建立与捕获和释放相关的短期标记死亡率,短期和长期标签损失,报告率和死亡率。使用遥测标签估计F和均值。这种方法的优点是垂钓者非报道不会偏压估计和发射器的鱼类提供有用的生态数据。成本可能是遥测研究的缺点;因此,在集成分析中将具有传统标签返回的遥测标签组合往往是最佳方法。总之,标记方法可以是评估内陆条纹低音储存计划的有效性以及捕捞与自然死亡率的相对影响的强大工具。

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