Resource availability drives bacteria community resistance to pathogen invasion via altering bacterial pairwise interactions

Publication date

2022-12

Authors

Li, MeiISNI 0000000524045542
Pommier, Thomas
Yin, Yue
Cao, Wenhui
Zhang, Xiaohui
Hu, JieISNI 0000000492895584
Hautier, YannORCID 0000-0003-4347-7741ISNI 0000000351202609
Yang, T.ISNI 0000000506297594
Xu, Yangchun
Shen, Qirong

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Article
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taverne

Abstract

Microbial interactions within resident communities are a major determinant of resistance to pathogen invasion. Yet, interactions vary with environmental conditions, raising the question of how community composition and environments interactively shape invasion resistance. Here, we use resource availability (RA) as a model parameter altering the resistance of model bacterial communities to invasion by the plant pathogenic bacterium Ralstonia solanacearum. We found that at high RA, interactions between resident bacterial species were mainly driven by the direct antagonism, in terms of the means of invader inhibition. Consequently, the competitive resident communities with a higher production of antibacterial were invaded to a lesser degree than facilitative communities. At low RA, bacteria produced little direct antagonist potential, but facilitative communities reached a relatively higher community productivity, which showed higher resistance to pathogen invasion than competitive communities with lower productivities. This framework may lay the basis to understand complex microbial interactions and biological invasion as modulated by the dynamic changes of environmental resource availability.

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Citation

Li, M, Pommier, T, Yin, Y, Cao, W, Zhang, X, Hu, J, Hautier, Y, Yang, T, Xu, Y, Shen, Q, Kowalchuk, G A, Jousset, A & Wei, Z 2022, 'Resource availability drives bacteria community resistance to pathogen invasion via altering bacterial pairwise interactions', Environmental Microbiology, vol. 24, no. 12, pp. 5680-5689. https://doi.org/10.1111/1462-2920.16184