Microbial Composition And Genes For Key Metabolic Attributes In The Gut Digesta Of Sea Urchins Lytechinus Variegatus And Strongylocentrotus Purpuratus Using Shotgun Metagenomics

CURRENT ISSUES IN MOLECULAR BIOLOGY(2021)

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摘要
This paper describes the microbial community composition and genes for key metabolic genes, particularly the nitrogen fixation of the mucous-enveloped gut digesta of green (Lytechinus variegatus) and purple (Strongylocentrotus purpuratus) sea urchins by using the shotgun metagenomics approach. Both green and purple urchins showed high relative abundances of Gammaproteobacteria at 30% and 60%, respectively. However, Alphaproteobacteria in the green urchins had higher relative abundances (20%) than the purple urchins (2%). At the genus level, Vibrio was dominant in both green (similar to 9%) and purple (similar to 10%) urchins, whereas Psychromonas was prevalent only in purple urchins (similar to 24%). An enrichment of Roseobacter and Ruegeria was found in the green urchins, whereas purple urchins revealed a higher abundance of Shewanella, Photobacterium, and Bacteroides (q-value < 0.01). Analysis of key metabolic genes at the KEGG-Level-2 categories revealed genes for amino acids (similar to 20%), nucleotides (similar to 5%), cofactors and vitamins (similar to 6%), energy (similar to 5%), carbohydrates (similar to 13%) metabolisms, and an abundance of genes for assimilatory nitrogen reduction pathway in both urchins. Overall, the results from this study revealed the differences in the microbial community and genes designated for the metabolic processes in the nutrient-rich sea urchin gut digesta, suggesting their likely importance to the host and their environment.
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echinoderm, gut microbiome, high-throughput sequencing, MG-RAST, KEGG, Ref-Seq, bioinformatics
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