Centre of Research and Development, Biocorrosion Laboratory, Sonatrach, Avenue of 1st November, 35000 Boumerdes, Algeria.
J Ind Microbiol Biotechnol. 2011 Mar;38(3):391-404. doi: 10.1007/s10295-010-0887-2. Epub 2010 Oct 15.
The present study enlightens the role of the antagonistic potential of nonpathogenic strain B21 against sulfate-reducing bacteria (SRB) consortium. The inhibitor effects of strain B21 were compared with those of the chemical biocide tetrakishydroxymethylphosphonium sulfate (THPS), generally used in the petroleum industry. The biological inhibitor exhibited much better and effective performance. Growth of SRB in coculture with bacteria strain B21 antagonist exhibited decline in SRB growth, reduction in production of sulfides, with consumption of sulfate. The observed effect seems more important in comparison with the effect caused by the tested biocide (THPS). Strain B21, a dominant facultative aerobic species, has salt growth requirement always above 5% (w/v) salts with optimal concentration of 10-15%. Phylogenetic analysis based on partial 16S rRNA gene sequences showed that strain B21 is a member of the genus Bacillus, being most closely related to Bacillus qingdaonensis DQ115802 (94.0% sequence similarity), Bacillus aidingensis DQ504377 (94.0%), and Bacillus salarius AY667494 (92.2%). Comparative analysis of partial 16S rRNA gene sequence data plus physiological, biochemical, and phenotypic features of the novel isolate and related species of Bacillus indicated that strain B21 may represent a novel species within the genus Bacillus, named Bacillus sp. (EMBL, FR671419). The results of this study indicate the application potential of Bacillus strain B21 as a biocontrol agent to fight corrosion in the oil industry.
本研究阐明了非致病性菌株 B21 对硫酸盐还原菌(SRB)共生体的拮抗潜力。将菌株 B21 的抑制作用与常用于石油工业的化学杀菌剂四羟甲基硫酸磷(THPS)进行了比较。生物抑制剂表现出更好、更有效的性能。在与细菌菌株 B21 拮抗剂共培养的 SRB 中,观察到 SRB 的生长下降,硫化物的产生减少,硫酸盐被消耗。与测试的杀菌剂(THPS)相比,这种效果似乎更为重要。菌株 B21 是一种需盐的兼性需氧菌,其盐度生长要求始终高于 5%(w/v)盐,最佳浓度为 10-15%。基于部分 16S rRNA 基因序列的系统发育分析表明,菌株 B21 是芽孢杆菌属的一个成员,与青岛芽孢杆菌 DQ115802(94.0%序列相似性)、辅助芽孢杆菌 DQ504377(94.0%)和盐芽孢杆菌 AY667494(92.2%)最为密切相关。对部分 16S rRNA 基因序列数据以及新分离株和相关芽孢杆菌属种的生理、生化和表型特征的比较分析表明,菌株 B21 可能代表芽孢杆菌属的一个新种,命名为芽孢杆菌属 sp.(EMBL,FR671419)。本研究结果表明,芽孢杆菌菌株 B21 作为一种生物防治剂在石油工业中具有抗腐蚀的应用潜力。