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Assessing sandy beach macrofaunal patterns along large-scale environmental gradients: A Fuzzy Naive Bayes approach

机译:沿着大型环境梯度评估沙滩大型动物群落格局:模糊朴素贝叶斯方法

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A Fuzzy Naive Bayes (FNB) classifier was developed to assess large-scale variations in abundance, species richness and diversity of the macrofauna inhabiting fifteen Uruguayan sandy beaches affected by the effects of beach morphodynamics and the estuarine gradient generated by Rio de la Plata. Information from six beaches was used to estimate FNB parameters, while abiotic data of the remaining nine beaches were used to forecast abundance, species richness and diversity. FNB simulations reproduced the general increasing trend of target variables from inner estuarine reflective beaches to marine dissipative ones. The FNB model also identified a threshold value of salinity range beyond which diversity markedly increased towards marine beaches. Salinity range is suggested as an ecological master factor governing distributional patterns in sandy beach macrofauna. However, the model: 1) underestimated abundance and species richness at the innermost estuarine beach, with the lowest salinity, and 2) overestimated species richness in marine beaches with a reflective morphodynamic state, which is strongly linked to low abundance, species richness and diversity. Therefore, future modeling efforts should be refined by giving a dissimilar, weigh to the gradients defined by estuarine (estuarine beaches) and morphodynamic (marine beaches) variables, which could improve predictions of target variables. Our modeling approach could be applied to a wide spectrum of issues, ranging from basic ecology to social-ecological systems. This approach seems relevant, given the current challenge to develop predictive methodologies to assess the simultaneous and nonlinear effects of anthropogenic and natural impacts in coastal ecosystems. (C) 2016 Elsevier Ltd. All rights reserved.
机译:开发了模糊朴素贝叶斯(FNB)分类器,以评估居住在15个乌拉圭沙滩上的大型动物的丰度,物种丰富度和多样性的大规模变化,这些变化受海滩形态动力学和Rio de la Plata产生的河口梯度的影响。来自六个海滩的信息被用于估计FNB参数,而其余九个海滩的非生物数据被用于预测丰度,物种丰富度和多样性。 FNB模拟重现了目标变量从内河口反射海滩到海洋耗散海滩的总体增长趋势。 FNB模型还确定了盐度范围的阈值,超过该阈值,海洋海滩的多样性明显增加。盐度范围建议作为控制沙滩大型动物分布格局的生态主要因素。但是,该模型:1)低估了盐度最低的最内河口海滩的丰度和物种丰富度; 2)高估了具有反射形态动力学状态的海洋海滩的物种丰富度,这与低丰度,物种丰富度和多样性密切相关。因此,未来的建模工作应通过给出不同的,精确的由河口(河口海滩)和形态动力学(海洋海滩)变量定义的梯度来进行,以改善目标变量的预测。我们的建模方法可以应用于从基本生态学到社会生态系统的广泛问题。鉴于当前面临的挑战是发展预测方法以评估沿海生态系统中人为和自然影响的同时和非线性影响,这种方法似乎是相关的。 (C)2016 Elsevier Ltd.保留所有权利。

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