State Key Laboratory of Water Resources and Hydropower Engineering Science, Wuhan University, Wuhan, China.
Key Laboratory of Aquatic Botany and Watershed Ecology, Wuhan Botanical Garden, Chinese Academy of Sciences, Wuhan, China.
Environ Microbiol. 2023 Dec;25(12):2746-2760. doi: 10.1111/1462-2920.16400. Epub 2023 May 16.
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.
在时空演替过程中,通才和专家的组装过程及其驱动机制是微生物生态学的核心问题,但在质外体中却是一个研究甚少的课题。我们研究了质外体中细菌通才和专家的组成变化、时空演替和组装过程,包括不可生物降解(NBMPs)和可生物降解微塑料(BMPs)。尽管 NBMPs 和 BMPs 上通才和专家的组成不同,但定植时间主要介导了组成变化。通才的相对丰度和物种替代的相对贡献最初增加,然后减少,而专家最初减少,然后增加。此外,丰富度差异也影响了质外体中通才和专家的组成变化,通才比相应的专家更容易受到丰富度差异的影响。此外,质外体中通才的组装主要由确定性过程主导,而专家的组装则主要由随机过程主导。网络稳定性测试表明,NBMPs 和 BMPs 上通才的群落稳定性低于相应的专家。我们的研究结果表明,不同的生态组装过程塑造了质外体中细菌通才和专家的时空演替,但受聚合物类型的影响较小。