Isolation, Characterization and Molecular Phylogeny of Multiple Metal Tolerant and Antibiotics Resistant Bacteria Isolates From River Ganga

Isolation and Characterization of Metal Tolerant and Antibiotic Resistant Bacteria from River Ganga

Authors

  • Vivek Raj Author

Keywords:

isolation, characterization, molecular phylogeny, metal tolerant bacteria, antibiotics resistant bacteria, River Ganga, biochemically characterized, ribosomal DNA, 16S ribosomal gene sequencing, heterogeneous bacterial groups

Abstract

The current examination pointed toward distinguishing weighty metal tolerant bacteria in soil tests got from three distinct locales The examples included mechanical effluents from assembling unit of batteries and invertors and homegrown waste tainted site From every area, 8, 8 and 6 soil tests separately were gathered The current investigation was centered around the isolation of multiple metal tolerant and antibiotics resistant bacterial strains from water tests of five unique Ghats of River Ganga, Varanasi, India. These strains were biochemically portrayed and their phylogenetic relatedness was accepted utilizing enhanced ribosomal DNA limitation investigation fingerprinting and 16S ribosomal quality sequencing. The presence of heterogeneous gatherings of bacteria having a place with alpha, beta, gamma proteobacteria, and bacilli was taken note. A portion of the bacterial strains like Pseudomonas, Serratia, Enterobacter, and Proteus vulgaris were for the most part found at the Dashashwamedh Ghat and the Assi Ghat showing least inhibitory focus 200–300 mgL for copper, nickel, lead, and chromium. The treatment of such bacteria would be actually quite troublesome. The examinations might additionally be stretched out to decide the relationship between's hefty metal and anti-microbial resistance in the tolerant segregates. The investigation is of importance in that such bacteria can be used for bioremediation of hefty metals in the climate especially in the treatment of sewage water and mechanical effluents.

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Published

2020-03-01