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M-AMBI derived from taxonomic levels higher than species allows Ecological Status assessments of benthic habitats in new geographical areas

机译:M-AMBI来自比物种更高的分类学水平,可以评估新地理区域底栖生物的生态状况

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Under the Water Framework Directive (WFD) benthic Ecological Quality Ratios (EQRs) are important tools for assessing Ecological Status (ES) of coastal and transitional waters. Calculation of the Multivariate-AZTI Marine Biotic Index (M-AMBI) EQR is based on the proportions of sensitive and stress tolerant benthic invertebrate species, number of species and Shannon-Wiener diversity. The sensitivity of many tropical/sub-tropical taxa has not yet been determined, presenting a barrier to the direct transfer of WFD EQRs, and the ideas underpinning them, to the management of coastal waters beyond Europe. To overcome this we examine using higher taxonomic level data with M-AMBI.Before applying such approaches to assessing ES in new geographical regions it is essential to determine the effects of using higher taxonomic level data on M-AMBI in areas where the tool was developed. To this end, we use macrofaunal data from three well studied sites in north-western Europe to examine the effects of using taxonomic level data higher than species on M-AMBI. Using the European datasets M-AMBI ES classification was shown to be robust to changes in taxonomic level data. We test the suitability of family-level M-AMBI for assessing ES in subtropical Hong Kong waters. Family level M-AMBI was useful in detecting stress in Hong Kong, where it successfully detected temporal and spatial shifts in ES in response to seasonal hypoxia and salinity variability, and anthropogenic organic enrichment.
机译:根据水框架指令(WFD),底栖生态质量比(EQRs)是评估沿海和过渡水域生态状况(ES)的重要工具。 AZTI海洋生物多样性指数(M-AMBI)EQR的计算基于敏感和耐胁迫的底栖无脊椎动物物种的比例,物种数量和Shannon-Wiener多样性。尚未确定许多热带/亚热带生物分类的敏感性,这阻碍了WFD EQRs的直接转移及其基础思想对欧洲以外沿海水域的管理。为了克服这个问题,我们研究了将较高分类学级别的数据与M-AMBI一起使用的方法。 。为此,我们使用了来自欧洲西北部三个经过充分研究的站点的大型动物数据,以研究使用高于物种的生物分类水平数据对M-AMBI的影响。使用欧洲数据集显示,M-AMBI ES分类对于分类学水平数据的变化具有鲁棒性。我们测试了家庭级M-AMBI在亚热带香港水域评估ES的适用性。家庭水平的M-AMBI可用于检测香港的压力,该地区已成功检测到ES的时空变化,以应对季节性缺氧和盐度变化以及人为的有机富集。

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