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垂体布氏菌菌株BU72,一种通过产生基于胞外多糖的表面活性剂的新型烃类分解细菌。

Brucella pituitosa strain BU72, a new hydrocarbonoclastic bacterium through exopolysaccharide-based surfactant production.

作者信息

Mahjoubi Mouna, Cherif Hanene, Aliyu Habibu, Chouchane Habib, Cappello Simone, Neifar Mohamed, Mapelli Francesca, Souissi Yasmine, Borin Sara, Cowan Don A, Cherif Ameur

机构信息

Univ. Manouba, ISBST, BVBGR-LR11ES31, Biotechpole Sidi Thabet, 2020, Ariana, Tunisia.

Institute for Biological Interfaces (IBG-5), Karlsruhe Institute of Technology, 76344, Eggenstein-Leopoldshafen, Germany.

出版信息

Int Microbiol. 2025 Feb;28(2):299-313. doi: 10.1007/s10123-024-00540-8. Epub 2024 Jun 12.

Abstract

Hydrocarbon and heavy metal pollution are amongst the most severe and prevalent environmental problems due to their toxicity and persistence. Bioremediation using microorganisms is considered one of the most effective ways to treat polluted sites. In the present study, we unveil the bioremediation potential of Brucella pituitosa strain BU72. Besides its ability to grow on multiple hydrocarbons as the sole carbon source and highly tolerant to several heavy metals, BU72 produces different exopolysaccharide-based surfactants (EBS) when grown with glucose or with crude oil as sole carbon source. These EBS demonstrated particular and specific functional groups as determined by Fourier transform infrared (FTIR) spectral analysis that showed a strong absorption peak at 3250 cm generated by the -OH group for both EBS. The FTIR spectra of the produced EBS revealed major differences in functional groups and protein content. To better understand the EBS production coupled with the degradation of hydrocarbons and heavy metal resistance, the genome of strain BU72 was sequenced. Annotation of the genome revealed multiple genes putatively involved in EBS production pathways coupled with resistance to heavy metals genes such as arsenic tolerance and cobalt-zinc-cadmium resistance. The genome sequence analysis showed the potential of BU72 to synthesise secondary metabolites and the presence of genes involved in plant growth promotion. Here, we describe the physiological, metabolic, and genomic characteristics of Brucella pituitosa strain BU72, indicating its potential as a bioremediation agent.

摘要

碳氢化合物和重金属污染因其毒性和持久性,是最严重且普遍存在的环境问题之一。利用微生物进行生物修复被认为是处理污染场地最有效的方法之一。在本研究中,我们揭示了垂体布鲁氏菌菌株BU72的生物修复潜力。除了能够以多种碳氢化合物作为唯一碳源生长并对多种重金属具有高度耐受性外,当以葡萄糖或原油作为唯一碳源生长时,BU72还会产生不同的基于胞外多糖的表面活性剂(EBS)。通过傅里叶变换红外(FTIR)光谱分析确定,这些EBS显示出特定的官能团,两种EBS在3250 cm处均有由-OH基团产生的强吸收峰。所产生的EBS的FTIR光谱揭示了官能团和蛋白质含量的主要差异。为了更好地理解EBS的产生与碳氢化合物降解以及重金属抗性之间的关系,我们对菌株BU72的基因组进行了测序。基因组注释揭示了多个可能参与EBS产生途径以及与重金属抗性基因(如抗砷和抗钴-锌-镉)相关的基因。基因组序列分析显示了BU72合成次生代谢产物的潜力以及参与促进植物生长的基因的存在。在此,我们描述了垂体布鲁氏菌菌株BU72的生理、代谢和基因组特征,表明其作为生物修复剂的潜力。

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