AI Article Synopsis

  • The intestinal microbiota of marine animals, specifically Amur ide, is affected by the environment they inhabit, particularly the alkalinity of the water.
  • The study identified specific microbial species and their functional roles in the intestines of both alkaline-water (AW) and freshwater (FW) Amur ide, revealing a significant overlap in gut microbes associated with their respective aquatic habitats.
  • Results showed distinct differences in microbial composition and diversity between the AW and FW species, emphasizing the importance of understanding these adaptations for future fish breeding in alkaline environments.

Article Abstract

The intestinal microbiota of marine animals was influenced by the water and environment in which they live. The Amur ide () adapts to extremely high alkalinity and is an ideal material for aquacultural studies of alkaline adaptation. In this study, we screened intestinal indicator flora and functional redundancy of intestinal colonies in alkaline-water species (AW) and freshwater species (FW) of Amur ide () in these different aquatic environments. The available vs. community composition correlations were then predicted by contrasting each other with the flora contained in environmental water samples. Here, five microbial species and six genera were identified owing to the classifiable sequence. The intestinal microbiota that existed in AW and FW had approximately 1/3 of the operational taxonomic units in the respective living water environments, meaning gut microbes in the aqueous habitats will have an influential association with gut microbes in AW and FW. Compared to the bacterial composition of the FW intestine and that present in freshwater, , and were significantly enriched in the intestine of AW and alkaline water samples. In the FW intestine and freshwater samples, however, and were highly improved, which can be summarized as ., the predominant population in the AW gut, while and being primarily present in FW intestines. Photosynthetic bacteria were most significant in both water samples. The results indicated that the intestinal microbiota composition, abundance, and diversity of AW and FW were quite different. In contrast, the microbial composition of the additional alkaline water and freshwater environments showed slight differences. This study expects to enhance our understanding of the alkalinity tolerance of , which will be provided for the breeding of fish living in alkaline water, and push the development of alkaline water resources with increased efficiency.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9114670PMC
http://dx.doi.org/10.3389/fmicb.2022.881132DOI Listing

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