Bacterial communities are intricate ecosystems in which various members interact, compete for resources, and influence each other's growth. Antibiotics intensify this complexity, posing challenges in maintaining biodiversity. In this study, we delved into the behavior of kin bacterial communities when subjected to antibiotic perturbations, with a particular focus on how interspecific interactions shape these responses. We hypothesized that social cheating-where resistant strains shield both themselves and neighboring cheaters-obstructed coexistence, especially when kin bacteria exhibited varied growth rates and antibiotic sensitivities. To explore potential pathways to coexistence, we incorporated a third bacterial member, anticipating a shift in the dynamics of community coexistence. Simulations and experimental bacterial communities confirmed our predictions, emphasizing the pivotal role of interspecific competition in promoting coexistence under antibiotic interference. These insights are crucial for understanding bacterial ecosystem stability, interpreting drug-microbiome interactions, and predicting bacterial community adaptations to environmental changes.
Interspecific competition prevents the proliferation of social cheaters in an unstructured environment.
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作者:Lin Hui, Wang Donglin, Wang Qiaojuan, Mao Jie, Bai Yaohui, Qu Jiuhui
| 期刊: | ISME Journal | 影响因子: | 10.000 |
| 时间: | 2024 | 起止号: | 2024 Jan 8; 18(1):wrad038 |
| doi: | 10.1093/ismejo/wrad038 | ||
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