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首页> 外文期刊>Environmental Biology of Fishes >Relationships between reef fish communities and remotely sensed rugosity measurements in Biscayne National Park, Florida, USA.
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Relationships between reef fish communities and remotely sensed rugosity measurements in Biscayne National Park, Florida, USA.

机译:美国佛罗里达州比斯坎国家公园的礁鱼群落与遥感皱纹度之间的关系。

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The realization that coral reef ecosystem management must occur across multiple spatial scales and habitat types has led scientists and resource managers to seek variables that are easily measured over large areas and correlate well with reef resources. Here we investigate the utility of new technology in airborne laser surveying (NASA Experimental Advanced Airborne Research Lidar (EAARL)) in assessing topographical complexity (rugosity) to predict reef fish community structure on shallow (10 m deep) patch reefs. Marine portions of Biscayne National Park, Florida, USA, were surveyed remotely using the EAARL, and reef fish populations were visually surveyed on 10 patch reefs at independent, randomly selected stations (n = 10-13 per reef). Rugosity at each station was assessed in situ by divers using the traditional chain-transect method (10-m scale), and remotely using the EAARL submarine topography data at multiple spatial scales (2, 5, and 10 m). The rugosity and biological datasets were analyzed together to elucidate the predictive power of EAARL rugosity in describing the variance in reef fish community variables and to assess the correlation between chain-transect and EAARL rugosity. EAARL rugosity was not well correlated with chain-transect rugosity, or with species richness of fishes (although statistically significant, the amount of variance explained by the model was very low). Variance in reef fish community attributes was better explained in reef-by-reef variability than by physical variables. However, once the reef-by-reef variability was taken into account in a two-way analysis of variance, the importance of rugosity could be seen on individual reefs. Fish species richness and abundance were statistically higher at high rugosity stations compared to medium and low rugosity stations, as predicted by prior ecological research. The EAARL shows promise as an important mapping tool for reef resource managers as they strive to inventory and protect coral reef resources.
机译:意识到珊瑚礁生态系统管理必须在多个空间尺度和栖息地类型上进行的认识,促使科学家和资源管理者寻求易于在大面积上测量并与珊瑚礁资源良好相关的变量。在这里,我们研究了机载激光勘测(NASA实验先进机载激光雷达(EAARL))中新技术在评估地形复杂性(皱纹)以预测浅(10 m深)斑块礁上的礁鱼群落结构方面的实用性。使用EAARL对美国佛罗里达州比斯坎国家公园的海洋部分进行了远程调查,并在独立,随机选择的站点上对10个斑块礁进行了目视调查(每个礁石n = 10-13)。潜水员使用传统的链条横断面方法(10米尺度)在每个站点进行原位评估,然后使用多个空间尺度(2、5和10 m)使用EAARL水下地形数据进行远程评估。对皱纹度和生物学数据集进行了综合分析,以阐明EAARL皱纹度在描述礁鱼群落变量方差中的预测能力,并评估链断面与EAARL皱纹度之间的相关性。 EAARL的粗略度与链横断面的粗度或鱼类的物种丰富度没有很好的相关性(尽管具有统计学意义,但模型解释的方差量非常低)。珊瑚礁鱼类群落属性的差异更好地解释了礁石之间的变异性,而不是物理变量。但是,一旦在方差的双向分析中考虑了礁石之间的变异性,就可以在单个礁石上看到凹凸不平的重要性。如先前的生态研究所预测的那样,高糙度站的鱼类物种丰富度和丰度在统计学上高于中低糙度站。 EAARL在珊瑚礁资源管理者努力清点和保护珊瑚礁资源的过程中显示出作为重要的制图工具的希望。

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