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Microbial diversity from the continental shelf regions of the Eastern Arabian Sea: A metagenomic approach
Affiliation:1. Department of Ocean Studies and Marine Biology, Pondicherry University, Andaman Campus, Port Blair 744 112, India;2. Centre for Marine Living Resources & Ecology, Ministry of Earth Sciences, Government of India, Kochi 682 037, India;3. Biological Oceanography Division, CSIR-National Institute of Oceanography, Goa, India;4. National Centre for Sustainable Coastal Management, Ministry of Environment, Forest & Climate Change, Chennai 600 025, India
Abstract:The marine microbiome is a complex and least-understood habitat, which play a significant role in global biogeochemical cycles. The present study reported the culture-independent assessment of microbial diversity from the Arabian Sea (AS) sediments (from Gujarat to Malabar; at 30 m depth) by using metagenome sequence analysis. Our results elucidated that bacterial communities in the Malabar coastal region are highly diverse than the Gujarat coast. Moreover, Statistical analysis (Spearman rank correlation) showed a significant correlation co-efficient value (r = P < 0.001) between microbial communities and physicochemical parameters (salinity and dissolved oxygen) in the water column. A total of 39 bacterial phyla were recorded from the eastern side of AS, of which six phyla Proteobacteria, Bacteroidetes, Actinobacteria, Cyanobacteria, Firmicutes, and Planctomycetes were found to be the most dominant group. The most dominant genus from Valapad region (Malabar Coast) was found to be Halomonas sp., while other regions were dominated with Psychrobacter pulmonis. The subsequent Principal Coordinate Analysis (PCoA) showed 99.53% variance, which suggests that, highly distinct microbial communities at Valapad (Malabar Coast) sampling location than other sites. Moreover, the microbial metabolic activity analysis revealed the important functions of microbial communities in the AS are hydrocarbon degradation, polymer degradation, nutrient oxidation and sulphate reduction (biodegradation process). Further extended studies are needed to be carried out for better understanding the functional diversity of microbial communities from the marine sediments.
Keywords:Arabian Sea  Bacterial communities  Bio-indicator  16S rRNA sequences  Southwest coast
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