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首页> 外文期刊>International Biodeterioration & Biodegradation >Bacterial community dynamics during the preferential degradation of aromatic hydrocarbons by a microbial consortium.
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Bacterial community dynamics during the preferential degradation of aromatic hydrocarbons by a microbial consortium.

机译:在微生物财团优先降解芳烃的过程中,细菌群落动态。

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摘要

The aims of this study were to identify the bacteria responsible for the rapid degradation of aromatic hydrocarbons, and to determine the roles of bacterial species in the microbial consortium. The population changes of the four major bacterial groups, namely Burkholderia spp., Achromobacter spp./Alcaligenes spp., Cupriavidus spp., and Rhodanobacter spp. in the Y consortium that preferentially degraded petroleum oil-derived aromatic hydrocarbons were assessed using quantitative real-time polymerase chain reaction (q-PCR). P-xylene was used as a representative aromatic compound, decane as a representative aliphatic compound, p-xylene-decane as a representative hydrocarbon mixture, and kerosene as a representative petroleum-based oil. The results showed that the remarkable increase of Burkholderia spp. coincided with the rapid degradation of aromatic hydrocarbons in kerosene, and p-xylene in single and dual-substrate cultures. Cupriavidus spp. significantly increased when decane was rapidly depleted. Achromobacter spp.,/Alcaligenes spp., and Rhodanobacter spp. were initially inhibited by the presence of aromatic hydrocarbons and seemed not to be active in hydrocarbon degradation, but utilized the metabolic products. This work provided an alternative way to explain the contribution of different microbial species in the degradation of hydrocarbon fractions. The behavior of the consortium is of interest in the context of the bioremediation of the more toxic aromatic hydrocarbons in environments contaminated by petroleum products.
机译:这项研究的目的是确定造成芳香烃快速降解的细菌,并确定细菌物种在微生物联盟中的作用。四个主要细菌群的种群变化,即伯克霍尔德氏菌属,无色杆菌属/产碱菌属,铜杯菌属和Rhodanobacter菌属。使用定量实时聚合酶链反应(q-PCR)对Y财团中优先降解的石油衍生的芳烃进行了评估。对二甲苯用作代表的芳族化合物,癸烷用作代表的脂族化合物,对二甲苯-癸烷用作代表的烃混合物,煤油用作代表的石油基油。结果表明,Burkholderia spp显着增加。在单底物和双底物培养物中,煤油中的芳烃和对二甲苯的快速降解与之吻合。 Cupriavidus spp。癸烷迅速耗尽时,显着增加。无色杆菌属,/ Alcaligenes属和Rhodanobacter属。最初被芳香烃的存在所抑制,并且似乎在烃降解中没有活性,但是利用了代谢产物。这项工作提供了另一种方式来解释不同微生物对烃馏分降解的贡献。在石油产品污染的环境中对毒性更强的芳烃进行生物修复的背景下,财团的行为令人关注。

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