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Microbial community response and migration of petroleum compounds during a sea-ice oil spill experiment in Svalbard

机译:斯瓦尔巴特群岛海冰溢油实验中微生物群落的响应和石油化合物的迁移

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This paper concerns the migration of oil through sea-ice and the biodegradation of different hydrocarbons in sea-ice and seawater following in situ oil spills in megacosms exposed to winter and spring conditions in Svalbard (80 degrees N). Hydrocarbon-degrading microbes were detected in ice cores and the analysis of metabolically active bacterial populations in the different layers of sea-ice indicate significant population shifts following oil exposure, whether dispersant addition or oil burning was carried out or not. The presence of dispersant in the system was associated with the most pronounced and fastest population shifts out of all exposures, as well as lower bacterial diversity as measured by the Shannon index. Microorganisms were metabolically most active in the bottom layer of the sea ice and our data confirmed the predominance of Oleispira and Colwellia aestuarii in sea-ice. Migration of polycyclic aromatics through the sea-ice layer was observed when dispersant was added to the oil, and the presence of oil degrading organisms below the ice-layer was consistent with biodegradation taking place. Given the thickness and concentration of the oil-layer frozen into the ice, the bioavailability of the hydrocarbons was nevertheless limited. Consequently, much of the bulk of the oil remained intact.
机译:本文涉及在斯瓦尔巴群岛(北纬80度)暴露于冬季和春季条件的大宇宙中原位溢油之后原位溢油之后,油通过海冰的迁移以及海冰和海水中不同碳氢化合物的生物降解。在冰芯中检测到了可降解碳氢化合物的微生物,对海冰不同层中具有代谢活性的细菌种群的分析表明,无论是否进行了分散剂添加或燃油燃烧,暴露于油脂后的种群数量都会发生明显变化。系统中分散剂的存在与所有暴露中最明显和最快的种群转移有关,并且与通过香农指数测得的细菌多样性较低有关。微生物在海冰的底层中代谢最活跃,我们的数据证实了海冰中油螺旋藻和孔氏菌的优势。当将分散​​剂添加到油中时,观察到多环芳烃通过海冰层的迁移,并且在冰层下存在油降解生物与发生生物降解相一致。考虑到冷冻到冰中的油层的厚度和浓度,碳氢化合物的生物利用度仍然受到限制。因此,大部分油保持完整。

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