AI Article Synopsis

  • Offshore coastal marine ranching ecosystems host diverse bacterial communities, which were analyzed using 16S rRNA gene sequencing and bioinformatics methods.
  • The study found that water bacterial communities are shaped primarily by deterministic processes, while gut and sediment communities are influenced by stochastic processes.
  • Bacterial source-tracking indicated that gut bacteria are more similar to sediment bacteria than to those found in the water, providing insights into ecological dynamics in marine ranching.

Article Abstract

Offshore coastal marine ranching ecosystems provide habitat for diverse and active bacterial communities. In this study, 16S rRNA gene sequencing and multiple bioinformatics methods were applied to investigate assembly dynamics and relationships in different habitats. The higher number of edges in the water network, more balanced ratio of positive and negative links, and more keystone species included in the co-occurrence network of water. Stochastic processes dominated in shaping gut and sediment community assembly (R < 0.5), while water bacterial community assembly were dominated by deterministic processes (R > 0.5). Dissimilarity-overlap curve model indicated that the communities in different habitats have general dynamics and interspecific interaction (P < 0.001). Bacterial source-tracking analysis revealed that the gut was more similar to the sediment than the water bacterial communities. In summary, this study provides basic data for the ecological study of marine ranching through the study of bacterial community dynamics.

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Source
http://dx.doi.org/10.1016/j.marpolbul.2024.116658DOI Listing

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