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首页> 外文期刊>Ecology and Evolution >Application of a Bayesian nonparametric model to derive toxicity estimates based on the response of Antarctic microbial communities to fuel‐contaminated soil
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Application of a Bayesian nonparametric model to derive toxicity estimates based on the response of Antarctic microbial communities to fuel‐contaminated soil

机译:应用贝叶斯非参数模型基于南极微生物群落对燃料污染土壤的响应得出毒性估计值

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AbstractEcotoxicology is primarily concerned with predicting the effects of toxic substances on the biological components of the ecosystem. In remote, high latitude environments such as Antarctica, where field work is logistically difficult and expensive, and where access to adequate numbers of soil invertebrates is limited and response times of biota are slow, appropriate modeling tools using microbial community responses can be valuable as an alternative to traditional single-species toxicity tests. In this study, we apply a Bayesian nonparametric model to a soil microbial data set acquired across a hydrocarbon contamination gradient at the site of a fuel spill in Antarctica. We model community change in terms of OTUs (operational taxonomic units) in response to a range of total petroleum hydrocarbon (TPH) concentrations. The Shannon diversity of the microbial community, clustering of OTUs into groups with similar behavior with respect to TPH, and effective concentration values at level x, which represent the TPH concentration that causes x% change in the community, are presented. This model is broadly applicable to other complex data sets with similar data structure and inferential requirements on the response of communities to environmental parameters and stressors.
机译:摘要生态毒理学主要涉及预测有毒物质对生态系统生物成分的影响。在南极等偏远,高纬度的环境中,野外工作在后勤上既困难又昂贵,并且获得足够数量的土壤无脊椎动物的机会也很有限,而生物群的响应时间也很慢,因此,使用微生物群落反应的适当建模工具可能非常有价值。替代传统的单一物种毒性测试。在这项研究中,我们将贝叶斯非参数模型应用于在南极洲燃料泄漏现场跨碳氢化合物污染梯度获取的土壤微生物数据集。我们根据OTU(操作生物分类单位)来响应一系列总石油碳氢化合物(TPH)浓度的变化。提出了微生物群落的香农多样性,OTUs聚类,对TPH具有相似行为的组以及水平x上的有效浓度值,代表在群落中引起x%变化的TPH浓度。该模型广泛适用于其他复杂数据集,这些数据集具有相似的数据结构,并且对社区对环境参数和压力源的响应具有推断性要求。

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