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来自降解烃类的硫酸盐还原菌ALDC的胞外聚合物的组成与腐蚀性

Composition and Corrosivity of Extracellular Polymeric Substances from the Hydrocarbon-Degrading Sulfate-Reducing Bacterium ALDC.

作者信息

Davidova Irene A, Lenhart Tiffany R, Nanny Mark A, Suflita Joseph M

机构信息

Department of Microbiology and Plant Biology, University of Oklahoma, Norman, OK 73019, USA.

School of Civil Engineering and Environmental Science, University of Oklahoma, Norman, OK 73019, USA.

出版信息

Microorganisms. 2021 Sep 21;9(9):1994. doi: 10.3390/microorganisms9091994.

Abstract

Sulfate-reducing bacteria (SRB) often exist as cell aggregates and in biofilms surrounded by a matrix of extracellular polymeric substances (EPSs). The chemical composition of EPSs may facilitate hydrophobic substrate biodegradation and promote microbial influenced corrosion (MIC). Although EPSs from non-hydrocarbon-degrading SRB have been studied; the chemical composition of EPSs from hydrocarbon-degrading SRBs has not been reported. The isolated EPSs from the sulfate-reducing alkane-degrading bacterium ALDC was characterized with scanning and fluorescent microscopy, nuclear magnetic resonance spectroscopy (NMR), and by colorimetric chemical assays. Specific fluorescent staining and H NMR spectroscopy revealed that the fundamental chemical structure of the EPS produced by . is composed of pyranose polysaccharide and cyclopentanone in a 2:1 ratio. NMR analyses indicated that the pyranose ring structure is bonded by 1,4 connections with the cyclopentanone directly bonded to one pyranose ring. The presence of cyclopentanone presumably increases the hydrophobicity of the EPS that may facilitate the accessibility of hydrocarbon substrates to aggregating cells or cells in a biofilm. Weight loss and iron dissolution experiments demonstrated that the EPS did not contribute to the corrosivity of cells.

摘要

硫酸盐还原菌(SRB)通常以细胞聚集体的形式存在于由细胞外聚合物(EPS)基质包围的生物膜中。EPS的化学成分可能有助于疏水性底物的生物降解,并促进微生物影响的腐蚀(MIC)。尽管已经对非烃降解SRB产生的EPS进行了研究,但尚未报道烃降解SRB产生的EPS的化学成分。通过扫描和荧光显微镜、核磁共振光谱(NMR)以及比色化学分析对从硫酸盐还原烷烃降解菌ALDC中分离出的EPS进行了表征。特异性荧光染色和H NMR光谱显示,由……产生的EPS的基本化学结构由吡喃糖多糖和环戊酮以2:1的比例组成。NMR分析表明,吡喃糖环结构通过1,4连接键合,环戊酮直接键合到一个吡喃糖环上。环戊酮的存在可能会增加EPS的疏水性,这可能有助于烃类底物接近聚集细胞或生物膜中的细胞。失重和铁溶解实验表明,EPS对……细胞的腐蚀性没有影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a289/8471882/9a4da05f333e/microorganisms-09-01994-g001.jpg

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