Computational and Structural Biotechnology Journal (Dec 2024)

Biotic interactions and environmental modifications determine symbiotic microbial diversity and stability

  • Zhidong Liu,
  • Zeguang Guo,
  • Jin Zhou,
  • Xuecheng Guo,
  • Youhua Chen

Journal volume & issue
Vol. 23
pp. 2717 – 2726

Abstract

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Taking amphibians as island models, we examined the effects of interspecific interaction on the diversity and stability of microbial ecological. As skin area increased, the diversity and stability of skin microbes decreased, but the strength of negative interactions increased significantly. In contrast, as gut area increased, the diversity and stability of gut microbes increased, but the strength of interactions remained constant. These results indicate that microbial interactions are affected by habitat properties. When living in fluctuating environments without strong filtering, microorganisms can enhance their negative interactions with other taxa by changing the pH of their surroundings. In contrast, the pH of the gut is relatively stable, and colonized microorganisms cannot alter the gut pH and inhibit other colonizers. This study demonstrates that in the field of microbiology, diversity and stability are predominantly influenced by the intensity of interspecies interactions. The findings in this study deepen our understanding of microbial diversity and stability and provide a mechanistic link between species interactions, biodiversity, and stability in microbial ecosystems.

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