College of Geography and Environment, Shandong Normal University, Jinan, 250000, China.
College of Marine Life Sciences, Ocean University of China, Qingdao, 266100, China.
Environ Pollut. 2022 Aug 15;307:119496. doi: 10.1016/j.envpol.2022.119496. Epub 2022 May 17.
The changes in the composition and structure of microbial communities in Jiaozhou Bay are strongly affected by marine oil pollution, but the outcomes of the microbial responses and effects of dispersant application remain unclear. Herein, we performed an in situ microcosm study to investigate the response of the indigenous microbial community under crude oil alone and combined oil and dispersant treatment in the surface seawater of a semi-enclosed marine area of Jiaozhou Bay. The dynamics of the bacterial classification based on 16s rDNA sequencing were used to assess the changes with the crude oil concentration, dispersant use, and time. The crude oil resulted in a high abundance of the genera Pseudohongiella, Cycloclasticus, Marivita, and C1-B045 from the Gammaproteobacteria and Alphaproteobacteria classes, suggesting for hydrocarbon degradation. However, the dispersant treatment was more advantageous for Pacificibacter, Marivita, and Loktanella. Besides accelerating the rate of bacterial community succession, the dispersants had significantly stronger effects on the structure of the bacterial community and the degradation functions than the oil. A higher dose of oil exposure corresponded to fewer dominant species with a high relative abundance. Our study provides information for screening potential degradation bacteria and assessing the risks that oil spills pose to marine ecosystems.
海洋石油污染强烈影响胶州湾微生物群落的组成和结构变化,但微生物的响应结果和分散剂应用的影响仍不清楚。在此,我们进行了一项原位微宇宙研究,以调查在半封闭海洋区域胶州湾的表层海水中,单独的原油以及原油和分散剂联合处理下,土著微生物群落的响应。基于 16s rDNA 测序的细菌分类动态用于评估随着原油浓度、分散剂使用和时间的变化。原油导致了γ变形菌纲和α变形菌纲的假红球菌属、环曲杆菌属、海洋杆菌属和 C1-B045 属等的高丰度,表明它们具有烃类降解能力。然而,分散剂处理对太平洋菌属、海洋杆菌属和洛坦菌属更为有利。除了加速细菌群落演替的速度外,分散剂对细菌群落结构和降解功能的影响比石油更强。更高剂量的石油暴露对应于具有高相对丰度的较少优势种。我们的研究为筛选潜在的降解细菌和评估溢油对海洋生态系统的风险提供了信息。