4.6 Article

Distinct spatiotemporal succession of bacterial generalists and specialists in the lacustrine plastisphere

Journal

ENVIRONMENTAL MICROBIOLOGY
Volume -, Issue -, Pages -

Publisher

WILEY
DOI: 10.1111/1462-2920.16400

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The composition variation, spatiotemporal succession, and assembly processes of bacterial generalists and specialists in the plastisphere were investigated. Colonization time mainly mediated the composition variation, and richness differences also affected the composition variation of generalists and specialists. Deterministic processes dominated the assembly of generalists, while stochastic processes dominated the assembly of specialists. The community stability of generalists on non-biodegradable and biodegradable microplastics was lower than corresponding specialists.
The assembly processes of generalists and specialists and their driving mechanisms during spatiotemporal succession is a central issue in microbial ecology but a poorly researched subject in the plastisphere. We investigated the composition variation, spatiotemporal succession, and assembly processes of bacterial generalists and specialists in the plastisphere, including non-biodegradable (NBMPs) and biodegradable microplastics (BMPs). Although the composition of generalists and specialists on NBMPs differed from that of BMPs, colonization time mainly mediated the composition variation. The relative abundance of generalists and the relative contribution of species replacement were initially increased and then decreased with colonization time, while the specialists initially decreased and then increased. Besides, the richness differences also affected the composition variation of generalists and specialists in the plastisphere, and the generalists were more susceptible to richness differences than corresponding specialists. Furthermore, the assembly of generalists in the plastisphere was dominated by deterministic processes, while stochastic processes dominated the assembly of specialists. The network stability test showed that the community stability of generalists on NBMPs and BMPs was lower than corresponding specialists. Our results suggested that different ecological assembly processes shaped the spatiotemporal succession of bacterial generalists and specialists in the plastisphere, but were less influenced by polymer types.

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