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首页> 外文期刊>BMC Microbiology >Genome analysis to decipher syntrophy in the bacterial consortium ‘SCP’ for azo dye degradation
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Genome analysis to decipher syntrophy in the bacterial consortium ‘SCP’ for azo dye degradation

机译:基因组分析在氮杂染料降解中细菌联盟“SCP”中的解剖

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A bacterial consortium SCP comprising three bacterial members, viz. Stenotrophomonas acidaminiphila APG1, Pseudomonas stutzeri APG2 and Cellulomonas sp. APG4 was developed for degradation of the mono-azo dye, Reactive Blue 28. The genomic analysis of each member of the SCP consortium was done to elucidate the catabolic potential and role of the individual organism in dye degradation. The genes for glycerol utilization were detected in the genomes of APG2 and APG4, which corroborated with their ability to grow on a minimal medium containing glycerol as the sole co-substrate. The genes for azoreductase were identified in the genomes of APG2 and APG4, while no such trait could be determined in APG1. In addition to co-substrate oxidation and dye reduction, several other cellular functions like chemotaxis, signal transduction, stress-tolerance, repair mechanisms, aromatic degradation, and copper tolerance associated with dye degradation were also annotated. A model for azo dye degradation is postulated, representing the predominant role of APG4 and APG2 in dye metabolism while suggesting an accessory role of APG1. This exploratory study is the first-ever attempt to divulge the genetic basis of azo-dye co-metabolism by cross-genome comparisons and can be harnessed as an example for demonstrating microbial syntrophy.
机译:一种细菌联盟SCP,包括三个细菌成员,viz。 Stenotrophomonas acidaminiphila apg1,pseudomonas stutzeri apg2和cellulomonas sp。开发APG4以降解单氮杂染料,活性蓝28.进行SCP联盟的每个成员的基因组分析,以阐明各种生物在染料降解中的分解潜力和作用。在APG2和APG4的基因组中检测到甘油利用基因,其通过它们在含有甘油的最小培养基上生长作为唯一的副基底的能力。在APG2和APG4的基因组中鉴定出氮化基酶的基因,同时在APG1中没有确定这种性状。除了共衬底氧化和染料还原之外,还有几种其他细胞功能,如趋化性,信号转导,耐胁迫,修复机制,芳族降解和与染料降解相关的铜耐受。假设AZO染料降解模型,代表APG4和APG2在染料代谢中的主要作用,同时表明APG1的辅助作用。该探索性研究是首先试图通过交叉基因组比较透露氮杂染料共代谢的遗传基础,并且可以作为示范微生物同步的示例来利用。

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