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Background element content of the lichen Pseudevernia furfuracea: A supra-national state of art implemented by novel field data from Italy

机译:地衣假单胞菌(Pseudevernia furfuracea)的背景元素含量:超国家水平的艺术,由来自意大利的新实地数据实施

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In biomonitoring, the knowledge of background element content (BEC) values is an essential pre-requisite for the correct assessment of pollution levels. Here, we estimated the BEC values of a highly performing biomonitor, the epiphytic lichenPseudevernia furfuracea, by means of a careful review of literature data, integrated by an extensive field survey. Methodologically homogeneous element content datasets, reflecting different exposure conditions across European and extra-European countries, were compiled and comparatively analysed. Element content in samples collected in remote areas was compared to that of potentially enriched samples, testing differences between medians for 25 elements. This analysis confirmed that the former samples were substantially unaffected by anthropogenic contributions, and their metrics were therefore proposed as a first overview at supra-national background level. We also showed that bioaccumulation studies suffer a huge methodological variability. Limited to original field data, we investigated the background variability of 43 elements in 62 remote Italian sites, characterized in GIS environment for anthropization, land use, climate and lithology at different scale resolution. The relationships between selected environmental descriptors and BEC were tested using Principal Component Regression (PCR) modelling. Elemental composition resulted significantly dependent on land use, climate and lithology. In the case of lithogenic elements, regression models correctly reproduced the lichen content throughout the country at randomly selected sites. Further descriptors should be identified only for As, Co, and V. Through a multivariate approach we also identified three geographically homogeneous macro-regions for which specific BECs were provided for use as reference in biomonitoring applications.
机译:在生物监测中,了解背景元素含量(BEC)值是正确评估污染水平的必要先决条件。在这里,我们通过对文献数据进行仔细审查,并结合广泛的现场调查,估算出了一种高性能的生物监测器,附生的地衣假单胞菌糠疹假单胞菌的BEC值。收集并比较分析了方法学上均一的元素含量数据集,这些数据集反映了欧洲和欧洲以外国家的不同暴露条件。将偏远地区收集的样品中的元素含量与可能富集的样品中的元素含量进行了比较,测试了25种元素的中位数之间的差异。该分析证实,以前的样本基本上不受人为因素的影响,因此建议将其指标作为超国家背景水平的第一篇综述。我们还表明,生物蓄积性研究遭受巨大的方法变异性。限于原始的现场数据,我们调查了62个遥远的意大利站点中43个元素的背景变异性,这些特征以GIS环境用于不同规模分辨率下的人类化,土地利用,气候和岩性特征。使用主成分回归(PCR)建模测试了所选环境描述符与BEC之间的关系。元素组成的结果很大程度上取决于土地利用,气候和岩性。对于成岩元素,回归模型正确地再现了全国随机选择的地点的地衣含量。应仅针对As,Co和V确定进一步的描述符。通过多变量方法,我们还确定了三个地理上均一的宏区域,为其提供了特定的BEC供生物监测应用参考。

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