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通过宏转录组分析揭示了 Rhodococcus 菌株在降解烃类混合物、汽油和柴油油添加剂的细菌共生体中的重要性。

Importance of Rhodococcus strains in a bacterial consortium degrading a mixture of hydrocarbons, gasoline, and diesel oil additives revealed by metatranscriptomic analysis.

机构信息

Institut Français du Pétrole (IFP), 1-4 Avenue de Bois-Préau, 92852, Rueil-Malmaison, France,

出版信息

Appl Microbiol Biotechnol. 2015 Mar;99(5):2419-30. doi: 10.1007/s00253-014-6159-8. Epub 2014 Oct 26.

DOI:10.1007/s00253-014-6159-8
PMID:25343979
Abstract

A bacterial consortium (Mix3) composed of microorganisms originating from different environments (soils and wastewater) was obtained after enrichment in the presence of a mixture of 16 hydrocarbons, gasoline, and diesel oil additives. After addition of the mixture, the development of the microbial composition of Mix3 was monitored at three different times (35, 113, and 222 days) using fingerprinting method and dominant bacterial species were identified. In parallel, 14 bacteria were isolated after 113 days and identified. Degradation capacities for Mix3 and the isolated bacterial strains were characterized and compared. At day 113, we induced the expression of catabolic genes in Mix3 by adding the substrate mixture to resting cells and the metatranscriptome was analyzed. After addition of the substrate mixture, the relative abundance of Actinobacteria increased at day 222 while a shift between Rhodococcus and Mycobacterium was observed after 113 days. Mix3 was able to degrade 13 compounds completely, with partial degradation of isooctane and 2-ethylhexyl nitrate, but tert-butyl alcohol was not degraded. Rhodococcus wratislaviensis strain IFP 2016 isolated from Mix3 showed almost the same degradation capacities as Mix3: these results were not observed with the other isolated strains. Transcriptomic results revealed that Actinobacteria and in particular, Rhodococcus species, were major contributors in terms of total and catabolic gene transcripts while other species were involved in cyclohexane degradation. Not all the microorganisms identified at day 113 were active except R. wratislaviensis IFP 2016 that appeared to be a major player in the degradation activity observed in Mix3.

摘要

一种由源自不同环境(土壤和废水)的微生物组成的细菌联合体(Mix3),是在添加了 16 种碳氢化合物混合物、汽油和柴油添加剂的混合物存在下进行富集后获得的。添加混合物后,使用指纹图谱法监测 Mix3 的微生物组成在三个不同时间(35、113 和 222 天)的发展情况,并鉴定了优势细菌种类。同时,在 113 天后分离出了 14 株细菌并进行了鉴定。对 Mix3 和分离的细菌菌株的降解能力进行了表征和比较。在第 113 天,我们通过向静止细胞中添加底物混合物来诱导 Mix3 中分解代谢基因的表达,并对宏转录组进行了分析。添加底物混合物后,放线菌的相对丰度在第 222 天增加,而在第 113 天后观察到分枝杆菌和分枝杆菌之间的转移。Mix3 能够完全降解 13 种化合物,对异辛烷和 2-乙基己基硝酸盐有部分降解,但叔丁醇未被降解。从 Mix3 中分离出的 Rhodococcus wratislaviensis 菌株 IFP 2016 表现出几乎与 Mix3 相同的降解能力:在其他分离菌株中没有观察到这些结果。转录组学结果表明,放线菌,特别是 Rhodococcus 属,在总基因和分解代谢基因转录方面是主要贡献者,而其他物种则参与环己烷的降解。除了 Rhodococcus wratislaviensis IFP 2016 外,第 113 天鉴定的所有微生物都没有活性,而后者似乎是 Mix3 中观察到的降解活性的主要参与者。

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