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通过构建不同微生物组成实现高菲降解效率

High phenanthrene degrading efficiency by different microbial compositions construction.

作者信息

Zhou Guoyan, Qiao Hongtao, Liu Yandong, Yu Xiongsheng, Niu Xiang

机构信息

Department of Chemistry, Xinzhou Normal University, Xinzhou, Shanxi, China.

Department of Biology, Xinzhou Normal University, Xinzhou, Shanxi, China.

出版信息

Front Microbiol. 2024 Aug 30;15:1439216. doi: 10.3389/fmicb.2024.1439216. eCollection 2024.

Abstract

Microbial remediation has become the most promising technical means for the remediation of polycyclic aromatic hydrocarbons (PAHs) non-point source contaminated soil due to its low cost of treatment, complete degradation of pollutants, and remediation. In this study, in order to demonstrate the phenanthrene degrading microbial diversity, phenanthrene was chosen as the representative of PAHs and strains capable of degrading phenanthrene were isolated and screened from the sedimentation sludge and the bottom sludge of oil tank trucks, and high throughput sequencing was used to check the dominant strains with a good degrading effect on phenanthrene. Results showed even more than 50% of phenanthrene was degraded in all samples, the composition of PAH-degrading bacteria was diverse, and different environments constructed different functional microbial groups, which resulted in the microbial adapting to the diversity of the environment. Finally, a series of bacterial species with phenanthrene-degrading functions such as was enriched after nine transferring process. Overall, our study offers value information for the enrichment of functional degrading microbes of phenanthrene or other pollutants that more concern should be paid in not only the degradation rate, but also the diversity variation of microbial community composition.

摘要

微生物修复因其处理成本低、污染物降解完全且能实现修复,已成为修复多环芳烃(PAHs)非点源污染土壤最具前景的技术手段。在本研究中,为了阐明菲降解微生物的多样性,选取菲作为PAHs的代表,从油罐车的沉淀污泥和底部污泥中分离筛选出能够降解菲的菌株,并采用高通量测序法检测对菲具有良好降解效果的优势菌株。结果表明,所有样品中菲的降解率均超过50%,PAH降解菌的组成多样,不同环境构建了不同的功能微生物群落,这导致微生物适应环境的多样性。最后,经过9次转接培养后,富集了一系列具有菲降解功能的细菌种类。总体而言,我们的研究为菲或其他污染物功能降解微生物的富集提供了有价值的信息,即不仅应关注降解率,还应关注微生物群落组成的多样性变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5547/11392898/5cdf3bdf0b82/fmicb-15-1439216-g0001.jpg

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