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来自哈萨克斯坦西部油田的生物表面活性剂和生物聚合物生产微生物。

Biosurfactant and biopolymer producing microorganisms from West Kazakhstan oilfield.

作者信息

Shaimerdenova Ulzhan, Kaiyrmanova Gulzhan, Lewandowska Wioleta, Bartoszewicz Marek, Swiecicka Izabela, Yernazarova Aliya

机构信息

Faculty of Biology and Biotechnology, Al-Farabi Kazakh National University, 71 Al-Farabi Ave, 050038, Almaty, Kazakhstan.

Doctoral School of Exact and Natural Sciences, University of Białystok, 1K Konstanty Ciołkowski Str, 15-245, Białystok, Poland.

出版信息

Sci Rep. 2024 Jan 27;14(1):2294. doi: 10.1038/s41598-024-52906-7.

Abstract

Microbiological enhanced oil recovery (MEOR) uses indigenous or exogenous microorganisms and nutrients to enhance oil production through synthesis of metabolites reducing oil viscosity and surface tension. In order to find bacteria suitable for MEOR, we studied 26 isolates from wells in the Akingen oilfield in West Kazakhstan. Six of them were selected for further analysis based on their ability to reduce surface tension to less than 40 mN/m, with the A9 isolate exhibiting tension reduction values of 32.76 ± 0.3 mN/m. Based on the morphological features, biochemical activities, and the 16S rRNA gene, the isolates were classified to the Bacillus subtilis group. In the phylogenetic analysis the isolates grouped into two main clusters. Genes encoding the surfactin synthetase subunits were found in A2, A8, A9, A12, PW2, only the PW2 strain had lchAA encoding lichenysin, while sacB encoding levan was noted in A2, A8, A9, and A12. The expression of srfAB, srfAC, and sacB tested with qPCR varied among strains. Nevertheless, whereas temperature moderately affects the expression level, with the highest level recorded at 40 °C, salinity significantly impacts the expression of the genes encoding biosurfactants. B. subtilis strains isolated in the study, especially A9, are promising for microbial-enhanced oil recovery.

摘要

微生物强化采油(MEOR)利用本地或外源微生物及营养物质,通过合成降低原油粘度和表面张力的代谢产物来提高原油产量。为了找到适合MEOR的细菌,我们研究了从哈萨克斯坦西部阿金根油田油井中分离出的26株菌株。基于它们将表面张力降低至40 mN/m以下的能力,从中挑选出6株进行进一步分析,其中A9菌株的表面张力降低值为32.76±0.3 mN/m。根据形态特征、生化活性和16S rRNA基因,这些菌株被归类为枯草芽孢杆菌属。在系统发育分析中,这些菌株分为两个主要簇。在A2、A8、A9、A12、PW2中发现了编码表面活性素合成酶亚基的基因,只有PW2菌株具有编码地衣素的lchAA基因,而在A2、A8、A9和A12中发现了编码果聚糖的sacB基因。用qPCR检测的srfAB、srfAC和sacB的表达在菌株间存在差异。然而,温度对表达水平有适度影响,在40°C时记录到最高水平,而盐度显著影响编码生物表面活性剂的基因的表达。本研究中分离出的枯草芽孢杆菌菌株,尤其是A9菌株,在微生物强化采油方面具有潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b80b/10821952/c55cada4cc02/41598_2024_52906_Fig1_HTML.jpg

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