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Application of Bioinformatics in the Analysis of Heavy Oil Degradation Gene in Bacillus subtilis

机译:生物信息学在枯草芽孢杆菌中重油降解基因分析中的应用

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Bacillus subtilis is known very potential to degrade heavy oil because it can produce biosurfactants. The presence of biosurfactant makes Bacillus subtilis able to degrade the chains of carbon atoms in heavy oils. The ability of Bacillus subtilis to produce biosurfactants is caused by the Sfp gene required to produce Sfp 4-phosphopantetheine transferase protein. To know the characteristics and pathways of the Sfp gene in producing biosurfactants, molecular analysis was carried out by using bioinformatics. The analysis carried out included an analysis of the structure of the protein produced and determination of the Sfp 4'-phosphopantetheine transferase protein metabolism pathway by using EcoCyc. Based on the results of the analysis carried out related to the Sfp gene, it has a protein motif associated with a fairly low similarity with some EntD proteins from Escherichia coli. From the EcoCyc analysis known that AccS as a group of genes that produce 4'-phosphopantetheine transferase Sfp and Associated EntD proteins play an important role in maintaining membrane cell function. Excessive expression of the SFP gene will help the secretion of secondary metabolites capable of breaking complex carbon atom chains in the heavy oil.
机译:已知枯草芽孢杆菌是非常潜力的,以降解重油,因为它可以产生生物表面活性剂。生物活性剂的存在使枯草芽孢杆菌能够降解重油中的碳原子链。枯草芽孢杆菌产生生物活性剂的能力是由生产SFP 4-磷酰乙酰乙酰乙脲转移酶蛋白所需的SFP基因引起的。为了了解SFP基因在生产生物活性剂中的特征和途径,通过使用生物信息学进行分子分析。进行的分析包括通过使用Ecocyc产生的蛋白质结构和测定SFP 4'-磷酸丁酰胺转移酶蛋白质代谢途径的分析。基于与SFP基因相关的分析结果,它具有与来自大肠杆菌的某些Entd蛋白相当低的蛋白质基序。从已知的Ecocyc分析中,称为产生4'-磷酸丁酰胺转移酶SFP和相关EntD蛋白的一组基因在维持膜细胞功能中起重要作用。 SFP基因的过度表达将有助于分泌能够破坏重油中复杂的碳原子链的次级代谢物。

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