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Impact of Oil on Bacterial Community Structure in Bioturbated Sediments

机译:油对生物扰动沉积物中细菌群落结构的影响

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摘要

Oil spills threaten coastlines where biological processes supply essential ecosystem services. Therefore, it is crucial to understand how oil influences the microbial communities in sediments that play key roles in ecosystem functioning. Ecosystems such as sediments are characterized by intensive bioturbation due to burrowing macrofauna that may modify the microbial metabolisms. It is thus essential to consider the bioturbation when determining the impact of oil on microbial communities. In this study, an experimental laboratory device maintaining pristine collected mudflat sediments in microcosms closer to true environmental conditions – with tidal cycles and natural seawater – was used to simulate an oil spill under bioturbation conditions. Different conditions were applied to the microcosms including an addition of: standardized oil (Blend Arabian Light crude oil, 25.6 mg.g−1 wet sediment), the common burrowing organism Hediste (Nereis) diversicolor and both the oil and H. diversicolor. The addition of H. diversicolor and its associated bioturbation did not affect the removal of petroleum hydrocarbons. After 270 days, 60% of hydrocarbons had been removed in all microcosms irrespective of the H. diversicolor addition. However, 16S-rRNA gene and 16S-cDNA T-RFLP and RT-PCR-amplicon libraries analysis showed an effect of the condition on the bacterial community structure, composition, and dynamics, supported by PerMANOVA analysis. The 16S-cDNA libraries from microcosms where H. diversicolor was added (oiled and un-oiled) showed a marked dominance of sequences related to Gammaproteobacteria. However, in the oiled-library sequences associated to Deltaproteobacteria and Bacteroidetes were also highly represented. The 16S-cDNA libraries from oiled-microcosms (with and without H. diversicolor addition) revealed two distinct microbial communities characterized by different phylotypes associated to known hydrocarbonoclastic bacteria and dominated by Gammaproteobacteria and Deltaproteobacteria. In the oiled-microcosms, the addition of H. diversicolor reduced the phylotype-richness, sequences associated to Actinobacteria, Firmicutes and Plantomycetes were not detected. These observations highlight the influence of the bioturbation on the bacterial community structure without affecting the biodegradation capacities.
机译:漏油威胁着海岸线,在海岸线上生物过程提供了必要的生态系统服务。因此,至关重要的是要了解石油如何影响在生态系统功能中起关键作用的沉积物中的微生物群落。诸如洞穴沉积物等生态系统的特征是由于挖洞大型动物群会引起强烈的生物扰动,这可能会改变微生物的新陈代谢。因此,在确定油脂对微生物群落的影响时,必须考虑生物扰动。在这项研究中,使用了一个实验性的实验室设备来保持原始收集的泥滩沉积物在微观上接近潮汐周期和天然海水的真实环境条件,从而模拟了生物扰动条件下的漏油情况。对微观世界采用了不同的条件,包括添加:标准化油(Blend阿拉伯轻质原油,25.6 mg.g −1 湿沉积物),常见的穴居生物赫迪斯(Nereis)杂色,以及油和H. diversicolor。杂色嗜血杆菌及其相关生物扰动的添加不影响石油烃的去除。 270天后,无论是否添加杂色嗜血杆菌,都在所有微观世界中去除了60%的碳氢化合物。然而,由PerMANOVA分析支持的16S-rRNA基因和16S-cDNA T-RFLP和RT-PCR-amplicon文库分析显示了条件对细菌群落结构,组成和动力学的影响。来自添加了杂色嗜血杆菌(上油和未上油)的微观世界的16S-cDNA文库显示了与丙型杆菌相关的序列的显着优势。但是,在与Deltaproteobacteria和拟杆菌属相关的上油文库序列中也有很高的代表。涂油的微观结构(添加和不添加杂色嗜血杆菌)的16S-cDNA文库显示了两个不同的微生物群落,其特征在于与已知的碳氢碎裂菌相关的不同系统型,并以γ-变形杆菌和δ-变形杆菌为主导。在涂油的微观世界中,添加杂色嗜血杆菌降低了系统型丰富性,未检测到与放线菌,硬毛菌和植物菌丝体相关的序列。这些观察结果突出了生物扰动对细菌群落结构的影响,而没有影响生物降解能力。

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