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Hydrocarbon contamination affects deep-sea benthic oxygen uptake and microbial community composition

机译:碳氢化合物污染影响深海底栖氧气的吸收和微生物群落组成

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Accidental oil well blowouts have the potential to introduce large quantities of hydrocarbons into the deep sea and disperse toxic contaminants to midwater and seafloor areas over ocean-basin scales. Our ability to assess the environmental impacts of these events is currently impaired by our limited understanding of how resident communities are affected. This study examined how two treatment levels of a water accommodated fraction of crude oil affected the oxygen consumption rate of a natural, deep-sea benthic community. We also investigated the resident microbial community's response to hydrocarbon contamination through quantification of phospholipid fatty acids (PLFAs) and their stable carbon isotope (delta C-13) values. Sediment community oxygen consumption rates increased significantly in response to increasing levels of contamination in the overlying water of oil-treated microcosms, and bacterial biomass decreased significantly in the presence of oil. Multivariate ordination of PLFA compositional (mol%) data showed that the structure of the microbial community changed in response to hydrocarbon contamination. However, treatment effects on the delta C-13 values of individual PLFAs were not statistically significant. Our data demonstrate that deep-sea benthic microbes respond to hydrocarbon exposure within 36 h. (C) 2015 The Authors. Published by Elsevier Ltd.
机译:意外的油井喷爆有可能将大量的碳氢化合物引入深海,并将有毒污染物散布到整个海盆尺度的中层水域和海底区域。目前,由于我们对居民社区的影响方式了解有限,因此我们评估这些事件对环境的影响的能力受到了损害。这项研究研究了原油的两种处理水平对水的吸收量如何影响天然深海底栖生物群落的耗氧率。我们还通过定量磷脂脂肪酸(PLFA)及其稳定的碳同位素(δC-13)值,研究了居民微生物群落对碳氢化合物污染的响应。随着上油处理过的微生物的上覆水中污染物含量的增加,沉积物群落的耗氧率显着增加,并且在有油的情况下细菌生物量显着下降。 PLFA组成(摩尔%)数据的多元排序表明,微生物群落的结构随烃污染而变化。但是,对单个PLFA的C-13增量值的治疗效果在统计学上并不显着。我们的数据表明,深海底栖微生物对36小时内的碳氢化合物暴露有响应。 (C)2015作者。由Elsevier Ltd.发布

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