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Descriptive density models of scyphozoan jellyfish in the northern Gulf of Mexico

机译:墨西哥湾北部海豚的描述性密度模型

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Jellyfish play an important role in the food web of many coastal environments but are generally considered a nuisance to scientific fieldwork and industrial and economic trades. A better understanding of how jellyfish densities and distributions are affected by environmental parameters could elucidate population trends and provide assistance in ecological research and undesirable human interactions. In this study, abundance data for scyphozoan medusae, Chrysaora sp. and Aurelia spp., were extracted from Southeast Area Monitoring and Assessment Program trawling surveys for the northern Gulf of Mexico (nGoM) during the summer and fall months. Both in situ and satellite oceanographic measurements were obtained to coincide with the jellyfish data from 2003 to 2013. Data were separated into gulfwide seasonal models and regional (east, west) seasonal models. A generalized additive model was created for 3 methods (remote sensing, in situ, and all parameters) for all models. The regional models were more precise in replicating the ob served data, and the all-parameter method produced the best-fit models. The oceanographic variables that were determined to be most descriptive for the nGoM were salinity, surface currents, temperature, chl a concentrations, and distance from shore. Understanding the dynamic relationship between jellyfish densities and oceanographic features in the nGoM is one step closer to better management of these species and the overall ecosystem.
机译:在许多沿海环境的食物网中,水母扮演着重要角色,但通常被认为是对科学野外工作以及工业和经济贸易的不利影响。对水母密度和分布如何受环境参数影响的更好理解可以阐明种群趋势,并为生态研究和不良的人类互动提供帮助。在这项研究中,丰子藻水母Chrysaora sp。的丰度数据。和Aurelia spp。是从夏季和秋季月份的墨西哥湾北部(nGoM)东南地区监视和评估计划拖网调查中提取的。获得的原位和卫星海洋学测量结果均与2003年至2013年的海el数据一致。数据分为海湾地区的季节性模型和区域(东,西)季节性模型。为所有模型的3种方法(远程传感,原位和所有参数)创建了一个通用的加性模型。区域模型在复制观察到的数据时更为精确,而全参数方法可得出最佳拟合模型。被确定为对nGoM最具有描述性的海洋学变量是盐度,地表水流,温度,chla浓度和距海岸的距离。了解nGoM中水母密度与海洋学特征之间的动态关系,是对这些物种和整个生态系统进行更好管理的第一步。

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