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底栖硅藻作为意大利北部不同水系环境变化的生物指标。

Benthic diatoms as bioindicators of environmental alterations in different watercourses of northern Italy.

机构信息

Department of Theoretical and Applied Sciences, University of Insubria, Via JH Dunant 3, 21100, Varese, Italy.

Department of Science and High Technology, University of Insubria, Via GB Vico 46, 21100, Varese, Italy.

出版信息

Environ Monit Assess. 2019 Feb 13;191(3):158. doi: 10.1007/s10661-019-7290-x.

Abstract

This work aims to evaluate the effects of different environmental factors (i.e., geographical, chemical, and hydrological) on benthic diatoms at 34 sites located in 13 watercourses of northern Italy, and to highlight possible misclassifications of the ecological status of watercourses, sensu Water Framework Directive, related to the normative index currently adopted in Italy (ICMi). The analysis of both the taxonomical and functional composition of diatom communities confirmed the presence of differences in terms of taxonomical richness, diversity, and taxa assemblages, associated to the altitude and the geological characteristics of the investigated watercourses. Moreover, the data analysis revealed differences due to chemical and hydrological alterations. Specifically, our results showed a clear link among these environmental perturbations and the communities' functional composition expressed through the use of ecological guilds. High abundance and richness of motile diatoms were detected in sites characterized by nutrient enrichment, while high abundance of low-profile diatoms was linked to hydrological alteration. In contrast, these anthropogenic perturbations were not detected by the ICMi, which ranked more than 90% of the analyzed samples in the highest quality class. This study stresses the need for a different approach in diatom data interpretation in order to achieve reliable information about the ecological status of watercourses.

摘要

本研究旨在评估不同环境因素(即地理、化学和水文因素)对意大利北部 13 条河流 34 个采样点底栖硅藻的影响,并强调与意大利现行规范指数(ICMi)相关的水框架指令中河道生态状况可能存在的误判。对硅藻群落的分类学和功能组成的分析证实了在分类学丰富度、多样性和类群组合方面存在差异,这些差异与所研究河道的海拔和地质特征有关。此外,数据分析还揭示了由于化学和水文变化而产生的差异。具体而言,我们的研究结果表明,这些环境干扰与通过生态类群表达的群落功能组成之间存在明显的联系。在富营养化的地点检测到了大量运动型硅藻的高丰度和丰富度,而低轮廓硅藻的高丰度则与水文变化有关。相比之下,这些人为干扰并未被 ICMi 检测到,分析的样本中超过 90%的样本被评为最高质量等级。本研究强调需要对硅藻数据进行不同的解释,以便获得有关河道生态状况的可靠信息。

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