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An approach to analyzing environmental drivers to shape spatial variations in body-size structure of biofilm-dwelling protozoa during an annual cycle in marine ecosystems

机译:一种分析海洋生态系统年度周期内环境因素的方法,以塑造生物膜生物原生动物体大小结构的空间变化

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As an inherent trait, body-size structure has been used to summarize functional features of a community instead of taxonomic resolutions due to the high redundancy for bioassessment. In this study, the multivariate approaches were used to determine the environmental drivers to the spatial variation in body-size structure based on an annual dataset of biofilm-dwelling protozoa. Samples were monthly collected at four stations within a gradient of pollution in coastal waters of the Yellow Sea, northern China during a 1-year cycle. The second-stage (2STAGE) clustering and ordination analyses demonstrated that the annual patterns were significantly different among four sampling stations. Mantel analysis showed the spatial variations in body-size structures of the protozoa were significantly correlated with the water quality status along the pollution gradient. Best matching analysis revealed that the potential environmental drivers to shape the spatial difference in body-size structure may be pH, chemical oxygen demand (COD) and nutrients (e.g., soluble phosphates, ammonia and nitrates). It is suggested that the multivariate approaches used may determine the environmental drivers to shape the spatial variations in body-size structure of biofilm-dwelling protozoa in marine ecosystems. (C) 2016 Elsevier Ltd. All rights reserved.
机译:由于其固有的特征,由于生物评估的高度冗余性,人体大小的结构已被用来概括社区的功能特征而不是分类学上的决议。在这项研究中,多变量方法被用于确定基于生物膜栖生物的年度数据集的人体大小结构空间变化的环境驱动因素。在一年的周期内,每月在中国北方黄海沿岸污染梯度内的四个站点上每月收集一次样本。第二阶段(2STAGE)聚类和排序分析表明,四个采样站之间的年度模式显着不同。壁炉架分析表明,原生动物体大小结构的空间变化与沿污染梯度的水质状况显着相关。最佳匹配分析表明,影响人体大小结构空间差异的潜在环境驱动因素可能是pH值,化学需氧量(COD)和营养物质(例如可溶性磷酸盐,氨和硝酸盐)。建议使用的多元方法可以确定环境驱动因素,以塑造海洋生态系统中居住生物膜的原生动物体大小结构的空间变化。 (C)2016 Elsevier Ltd.保留所有权利。

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