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Description of a methanotrophic strain BOH1 isolated from Al-Bohyriya well Al-Ahsa City Saudi Arabia

机译:从沙特阿拉伯Al-Ahsa市的Al-Bohyriya井分离的甲烷营养菌株BOH1的描述

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摘要

Methanotrophic bacteria have a unique ability to utilize methane as their carbon and energy sources. Therefore, methanotrophs play a key role in suppressing methane emissions from different ecosystems and hence in alleviating the global climate change. Despite methanotrophs having many ecological, economical and biotechnological applications, little is known about this group of bacteria in Al-Ahsa. Therefore, the main objective of the current work was to expand our understanding of methane oxidizing bacteria in Al-Ahsa region. The specific aim was to describe a methanotrophic strain isolated from Al-Bohyriya well, Al-Ahsa using phenotypic, genotypic (such as 16S rRNA and pmoA gene sequencing) and phylogenetic characterization. The results indicated that the strain belongs to the genus Methylomonas that belongs to Gammaproteobacteria as revealed by the comparative sequence analysis of the 16S rRNA and pmoA genes. There is a general agreement in the profile of the phylogenetic trees based on the sequences of 16srRNA and pmoA genes of the strain BOH1 indicating that both genes are efficient taxonomic marker in methanotrophic phylogeny. The strain possesses the particulate but not the soluble methane monooxygenase as a key enzyme for methane metabolism. Further investigation such as DNA:DNA hybridization is needed to assign the strain as a novel species of the genus Methyomonas and this will open the door to explore the talents of the strain for its potential role in alleviating global warming and biotechnological applications in Saudi Arabia such as bioremediation of toxic by-products released in oil industry. In addition, the strain enhances our knowledge of methanotrophic bacteria and their adaptation to desert ecosystems.
机译:甲烷营养细菌具有利用甲烷作为其碳和能源的独特能力。因此,甲烷营养生物在抑制来自不同生态系统的甲烷排放并从而缓解全球气候变化方面起着关键作用。尽管甲烷氧化菌具有许多生态,经济和生物技术应用,但对Al-Ahsa中的这一类细菌知之甚少。因此,当前工作的主要目的是扩大我们对Al-Ahsa地区甲烷氧化细菌的了解。具体目标是使用表型,基因型(例如16S rRNA和pmoA基因测序)和系统发育特征描述从Al-Bohyriya井Al-Ahsa分离的甲烷营养菌株。结果表明,通过16S rRNA和pmoA基因的比较序列分析,发现该菌株属于甲基丙酸杆菌属,属于γ-变形杆菌。根据菌株BOH1的16srRNA和pmoA基因的序列,在系统树的概况上有一个普遍的共识,表明这两个基因都是甲烷营养型系统发育中的有效分类标志。该菌株具有颗粒而不是可溶性甲烷单加氧酶作为甲烷代谢的关键酶。需要进一步的研究,例如DNA:DNA杂交,以将该菌株指定为Methyomonas属的新物种,这将为探索该菌株在减轻沙特阿拉伯全球变暖和生物技术应用方面的潜在作用的人才打开大门。作为石油行业释放的有毒副产物的生物修复。此外,该菌株增强了我们对甲烷营养细菌及其对沙漠生态系统的适应性的知识。

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