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首页> 外文期刊>Online journal of biological sciences >COMBINATION OF CONVENTIONAL AND IN-SILICO APPROACH FOR IDENTIFYING AN INDUSTRIALLY IMPORTANT ISOLATE OF AEROMONAS
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COMBINATION OF CONVENTIONAL AND IN-SILICO APPROACH FOR IDENTIFYING AN INDUSTRIALLY IMPORTANT ISOLATE OF AEROMONAS

机译:常规和计算机模拟方法相结合,用于识别工业上重要的气单胞菌

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摘要

Ammonia is required for various commercial applications while its production by standard process is immensely energy intense. Dairy industry on the other hand produces huge volume of effluent needing treatment before discharge. This study aims at developing an eco-friendly microbial approach for conversion of dairy industry effluent into ammonia under atmospheric pressure and 37°C temperature at laboratory scale. Thus the need for huge energy for ammonia production would be avoided. Moreover the dairy effluent would generate revenue while getting treated. This study is also an attempt to develop a bioinformatics approach for strain identification. Standard cultivation techniques and in-silico approach of analysis of draft genome was undertaken to decipher the identity of this industrially important strain. Aeromonas sp. MCC 2167 (isolated from active dairy sludge) was capable of treating un-amended dairy effluent with 6% inoculum while producing ammonia as by product at a 11 folds higher rate thanthe modified Habers Process. Though the strain showed maximum identity with Aeromonas hydrophila, there were certain differences in terms of substrate utilization. Majority of the contigs showed identity with Aeromonas hydrophila, however there was significant difference among the two strains in terms of intergenomic distance (genome to genome distance calculator from DSMZ), inversion and frame shift (dot plot analysis) as well as genome rearrangement (MAUVE analysis). As per the rapid annotation usingsubsystem technology analysis 53% of the contigs belong to the subsystem category while the remaining 47% do not match with existing sequences in the database. The above finding proposes bioinformatics validation of the wetlab based data pointing towards this industrially important strain to be a novel isolate of Aeromonas sp. This would lead to an energy efficient economically viable alternative for ammonia production while treating large bulk of effluent generated from dairy industry that needs to betreated before being discharged.
机译:氨气是各种商业应用所必需的,而按标准工艺生产的氨气非常耗能。另一方面,乳制品行业产生大量废水,需要在排放前进行处理。这项研究旨在开发一种生态友好的微生物方法,用于在实验室规模,大气压和37°C温度下将乳制品工业废水转化为氨。因此,将避免需要大量能量来生产氨。此外,乳制品废水在得到处理的同时会产生收益。这项研究也是尝试开发一种生物信息学方法来鉴定菌株。进行了标准栽培技术和计算机模拟草稿的基因组分析,以破译这种具有重要工业意义的菌株。气单胞菌MCC 2167(从活性乳污泥中分离)能够处理含6%接种物的未经修正的乳制品废水,同时产生的副产品氨含量比改良的Habers工艺高11倍。尽管该菌株与嗜水气单胞菌具有最大的同一性,但在底物利用方面存在一定差异。重叠群的大多数显示与嗜水气单胞菌相同,但是在菌株间的基因组距离(从DSMZ基因组到基因组距离的计算器),倒位和移码(点图分析)以及基因组重排(MAUVE)方面,这两个菌株之间存在显着差异。分析)。根据使用子系统技术分析的快速注释,重叠群的53%属于子系统类别,而其余47%与数据库中的现有序列不匹配。上述发现提出了基于湿实验室的数据的生物信息学验证,该数据指向该工业上重要的菌株是气单胞菌新分离株。这将为氨生产提供经济高效的经济可行替代方案,同时处理奶业产生的大量废水,这些废水在排放前需要进行处理。

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