Affiliation:
1. Microbial Type Culture Collection and Gene Bank (MTCC) CSIR-Institute of Microbial Technology Chandigarh India
2. Bentoli AgriNutrition India Pvt Ltd 3F2, Third Floor, Front Block, Metro Tower, Building No. 115, Poonamallee High Road Chennai 600 084 India
Abstract
Abstract
Environmental contamination by hexahydro-1,3,5-trinitro-1,3,5-triazine (RDX), and octahydro-1,3,5,7-tetranitro-1,3,5,7-tetrazocine (HMX), the two most widely used compounds for military operations, is a long-standing problem at the manufacturing and decommissioning plants. Since explosives contamination has previously been shown to favour the growth of specific bacterial communities, the present study attempts to identify the specialist bacterial communities and their potential functional and metabolic roles by using amplicon targeted and whole-metagenome sequencing approaches in samples collected from two distinct explosives manufacturing sites. We hypothesize that the community structure and functional attributes of bacterial population are substantially altered by the concentration of explosives and physicochemical conditions. The results highlight the predominance of Planctomycetes in contrast to previous reports from similar habitats. The detailed phylogenetic analysis revealed the presence of operational taxonomic units related to bacterial members known for their explosives degradation. Further, the functional and metabolic analyses highlighted the abundance of putative genes and unidentified taxa possibly associated with xenobiotic biodegradation. Our findings suggest that microbial species capable of utilizing explosives as a carbon, energy or electron source are favoured by certain selective pressures based on the prevailing physicochemical and geographical conditions.
Publisher
Oxford University Press (OUP)
Subject
Applied Microbiology and Biotechnology
Reference96 articles.
1. Actinobacteria: Current research and perspectives for bioremediation of pesticides and heavy metals;Alvarez;Chemosphere,2017
2. Identification of microbial populations assimilating nitrogen from RDX in munitions contaminated military training range soils by high sensitivity stable isotope probing;Andeer;Environ Sci Technol,2013
3. Alkaline hydrolysis of the cyclic nitramine explosives RDX, HMX, and CL-20: new insights into degradation pathways obtained by the observation of novel intermediates;Balakrishnan;Environ Sci Technol,2003
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