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MONITORING NEKTON AS A BIOINDICATOR IN SHALLOW ESTUARINE HABITATS

机译:在浅滩栖息地监测Nekton作为生物indicator

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Long-term monitoring of estuarine nekton has many practical and ecological benefits but efforts are hampered by a lack of standardized sampling procedures. This study provides a rationale for monitoring nekton in shallow (< 1 m), temperate, estuarine habitats and addresses some important issues that arise when developing monitoring protocols. Sampling in seagrass and salt marsh habitats is emphasized due to the susceptibility of each habitat to anthropogenic stress and to the abundant and rich nekton assemblages that each habitat supports. Extensive sampling with quantitative enclosure traps that estimate nekton density is suggested. These gears have a high capture efficiency in most habitats and are small enough (e.g., 1 m~2) to permit sampling in specific microhabi-tats. Other aspects of nekton monitoring are discussed, including spatial and temporal sampling considerations, station selection, sample size estimation, and data collection and analysis. Developing and initiating long-term nekton monitoring programs will help evaluate natural and human-induced changes in estuarine nekton over time and advance our understanding of the interactions between nekton and the dynamic estuarine environment.
机译:长期监测埃斯塔林尼克顿有许多实用和生态的好处,但缺乏标准化的抽样程序努力受到阻碍。本研究提供了监测浅(<1米),温带,河口栖息地的奈基顿的理由,并解决了在制定监测协议时出现的一些重要问题。由于每个栖息地对人为压力的易感性以及每个栖息地支持的丰富和富裕的Nekton集会,因此强调了海草和盐沼栖息地的抽样。建议具有估计尼克顿密度的定量外壳陷阱的广泛采样。这些齿轮在大多数栖息地具有很高的捕获效率,并且足够小(例如,1 m〜2),以允许在特定的微幼儿塔特中抽样。讨论了Nekton监控的其他方面,包括空间和时间采样注意事项,站选择,样本量估计和数据收集和分析。发展和启动长期尼克顿监测计划将有助于评估自然和人类造成的埃斯塔尼克顿的变化随着时间的推移,并推进我们对奈基尔顿与动态河口环境之间的相互作用的理解。

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