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首页> 外文期刊>Journal of Pure & Applied Microbiology >An Insight into the Celluloytic Potential of Three Strains of Bacillus Spp. Isolated from Benthic Soil of Aquaculture Farms in East Kolkata Wetlands, India
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An Insight into the Celluloytic Potential of Three Strains of Bacillus Spp. Isolated from Benthic Soil of Aquaculture Farms in East Kolkata Wetlands, India

机译:深入了解芽孢杆菌三株菌株的氯化物潜力。 从水产养殖农场的底栖土壤隔离在东科科坦沼泽地,印度

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摘要

The present study investigates the cellulolytic potential of three prokaryotic strains belonging to genus Bacillus isolated from the benthic soil of two aquaculture farms in East Kolkata Wetlands. For the purpose of identification and phylogenetic analyses, biochemical characterization of these three strains were performed followed by molecular characterization of 16S rRNA sequences. Maximum cellulolytic potential was found in Bacillus cereus Strain SWA6a for both Exo - (3,1-4- glucanase and Endo - P,l-4- glucanase with an activity of 0.08214 ± 0.00412 and 0.11263 ± 0.00478 IU ml'min1 respectively. The enzyme activity ranged from 0.06112 to 0.08214 IU ml'min"1 for Exo - B,l-4- glucanase and 0.10018 to 0.11263 IU ml 'min1 for Endo - 8,1-4- glucanase. Degradation of free insoluble cellulose ranged from 55 to 63% within a time span of 96 hours in pH 6.8 - 7.2 when incubated at 37°C. Overall, the cellulolytic activity of the isolated strains may have strong implications in the field of biological conversion of cellulose-containing municipal wastes, agricultural and forestry wastes. These isolates maintain the equilibrium of the aquaculture pond by maintaining the biogeochemical cycle of carbon and hence has the prospect to be used for bioaugmentation purposes as a step towards a microbial-based aquaculture method.
机译:本研究调查了属于芽孢杆菌属的三个原核菌株的纤维素潜力从东科科坦湿地的两种水产养殖场的底栖土壤中分离出来。出于鉴定和系统发育分析,进行这三种菌株的生化表征,然后进行16S rRNA序列的分子表征。对于外部 - (3,1-4-葡聚糖酶和endo-p,L-4-葡聚糖酶的芽孢杆菌菌株SWA6a中发现最大纤维素潜力分别分别为0.08214±0.00412和0.11263±0.00478 IU ML'min1。该酶活性范围为EXO-B,L-4-葡聚糖酶的0.06112至0.08214 IU ML'min“1,对于Endo - 8,1-4-葡聚糖酶的0.10018至0.11263 IU ML'min1。游离不溶性纤维素的降解范围为55在37℃温育时在pH 6.8 - 7.2的时间跨度在96小时内达到63%。总体而言,分离株的纤维素分解活性可能对含纤维素的市政废物,农业和农业和农业的生物转化领域具有很强的影响林业废物。这些隔离物通过维持碳的生物地球化学循环来维持水产养殖池的平衡,因此具有用于生物沉积目的的前景作为朝向微生物的水产养殖方法的一步。

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