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Traits-Based Approaches in Bioassessment and Ecological Risk Assessment: Strengths, Weaknesses, Opportunities and Threats

机译:生物评估和生态风险评估中基于特征的方法:优势,劣势,机会和威胁

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We discuss the application of traits-based bioassessment approaches in retrospective bioassessment as well as in prospective ecological risk assessments in regulatory frameworks. Both approaches address the interaction between species and stressors and their consequences at different levels of biological organization, but the fact that a specific species may be less abundant in a potentially impacted site compared with a reference site is, regrettably, insufficient to provide diagnostic information. Species traits may, however, overcome the problems associated with taxonomy-based bioassessment. Trait-based approaches could provide signals regarding what environmental factors may be responsible for the impairment and, thereby, provide causal insight into the interaction between species and stressors. For development of traits-based (TBA), traits should correspond to specific types of stressors or suites of stressors. In this paper, a strengths, weaknesses, opportunities, and threats (SWOT) analysis of TBA in both applications was used to identify challenges and potentials. This paper is part of a series describing the output of the TERA (Traits-based ecological risk assessment: Realising the potential of ecoinformatics approaches in ecotoxicology) Workshop held between 7 and 11 September, 2009, in Burlington, Ontario, Canada. The recognized strengths were that traits are transferrable across geographies, add mechanistic and diagnostic knowledge, require no new sampling methodology, have an old tradition, and can supplement taxonomic analysis. Weaknesses include autocorrelation, redundancy, and inability to protect biodiversity directly. Automated image analysis, combined with genetic and biotechnology tools and improved data analysis to solve autocorrelation problems were identified as opportunities, whereas low availability of trait data, their transferability, their quantitative interpretation, the risk of developing nonrelevant traits, low quality of historic databases, and their standardization were listed as threats.
机译:我们讨论基于特征的生物评估方法在回顾性生物评估以及监管框架中的前瞻性生态风险评估中的应用。两种方法都解决了物种与应激源之间的相互作用以及它们在不同的生物组织水平上的后果,但是遗憾的是,与参考站点相比,特定物种在可能受到影响的站点中可能数量较少,因此不足以提供诊断信息。但是,物种特征可以克服与基于分类法的生物评估有关的问题。基于特征的方法可以提供有关可能造成损害的环境因素的信号,从而提供对物种与压力源之间相互作用的因果见解。为了开发基于特征的(TBA),特征应对应于特定类型的压力源或压力源组。在本文中,对两种应用中的TBA进行了优势,劣势,机会和威胁(SWOT)分析,以识别挑战和潜力。本白皮书是描述2009年9月7日至11日在加拿大安大略省伯灵顿举行的TERA(基于特征的生态风险评估:实现生态毒理学中生态信息学方法的潜力)研讨会成果的系列文章的一部分。公认的优势在于,特征可以在各个地理区域之间传递,增加机械和诊断知识,不需要新的采样方法,具有古老的传统并可以补充分类学分析。弱点包括自相关,冗余和无法直接保护生物多样性。自动化图像分析,结合遗传和生物技术工具以及改进的数据分析以解决自相关问题被认为是机遇,而特征数据的可用性低,可传递性,定量解释,发展无关特征的风险,历史数据库的质量低下,及其标准化被列为威胁。

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    Alterra, Wageningen University and Research Centre, PO Box 47, 6700 AA Wageningen, The Netherlands,Wageningen University, Aquatic Ecology and Water Quality Management Group, Wageningen University and Research Centre,Wageningen, The Netherlands;

    Canadian Rivers Institute and Department of Biology, University of New Brunswick, Fredericton, New Brunswick, Canada;

    Centre d'expertise en analyse environnementale du Quebec, Ministere du Developpement durable de I'Environnement et des Pares duQuebec, Quebec City, Quebec, Canada;

    Swedish University of Agricultural Sciences (SLU), Department of Aquatic Sciences and Assessment, Uppsala, Sweden;

    Ghent University, Department Applied Ecology and Environmental Biology, Gent, Belgium;

    Centre d'expertise en analyse environnementale du Quebec, Ministere du Developpement durable de I'Environnement et des Pares duQuebec, Quebec City, Quebec, Canada;

    Swedish University of Agricultural Sciences (SLU), Department of Aquatic Sciences and Assessment, Uppsala, Sweden;

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  • 正文语种 eng
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  • 关键词

    traits ecological risk assessment biomonitoring bioassessment;

    机译:性状生态风险评估生物监测生物评价;

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