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Convergence effect during spatiotemporal succession of lacustrine plastisphere: loss of priority effects and turnover of microbial species

ISME Communications 2024 6 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 45 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Weihong Zhang, Weihong Zhang, Weihong Zhang, Hans‐Peter Grossart Yuyi Yang, Weihong Zhang, Weihong Zhang, Weihong Zhang, Yuyi Yang, Yuyi Yang, Yuyi Yang, Hans‐Peter Grossart Shuxin Liang, Joseph A. Christie‐Oleza, Joseph A. Christie‐Oleza, Hans‐Peter Grossart Weihong Zhang, Yuyi Yang, Hans‐Peter Grossart Joseph A. Christie‐Oleza, Yuyi Yang, Hans‐Peter Grossart Hans‐Peter Grossart Hans‐Peter Grossart Hans‐Peter Grossart Weihong Zhang, Shuxin Liang, Joseph A. Christie‐Oleza, Hans‐Peter Grossart Weihong Zhang, Hans‐Peter Grossart Hans‐Peter Grossart Weihong Zhang, Hans‐Peter Grossart Yuyi Yang, Shuxin Liang, Joseph A. Christie‐Oleza, Joseph A. Christie‐Oleza, Joseph A. Christie‐Oleza, Yuyi Yang, Joseph A. Christie‐Oleza, Hans‐Peter Grossart Hans‐Peter Grossart Geoffrey Michael Gadd, Hans‐Peter Grossart Hans‐Peter Grossart Hans‐Peter Grossart Hans‐Peter Grossart Yuyi Yang, Yuyi Yang, Hans‐Peter Grossart Yuyi Yang, Yuyi Yang, Yuyi Yang, Yuyi Yang, Yuyi Yang, Yuyi Yang, Joseph A. Christie‐Oleza, Joseph A. Christie‐Oleza, Geoffrey Michael Gadd, Yuyi Yang, Yuyi Yang, Hans‐Peter Grossart Yuyi Yang, Hans‐Peter Grossart Hans‐Peter Grossart Yuyi Yang, Joseph A. Christie‐Oleza, Yuyi Yang, Yuyi Yang, Hans‐Peter Grossart Yuyi Yang, Weihong Zhang, Hans‐Peter Grossart Hans‐Peter Grossart Yuyi Yang, Yuyi Yang, Yuyi Yang, Weihong Zhang, Yuyi Yang, Yuyi Yang, Yuyi Yang, Hans‐Peter Grossart Yuyi Yang, Yuyi Yang, Hans‐Peter Grossart Yuyi Yang, Yuyi Yang, Yuyi Yang, Hans‐Peter Grossart Weihong Zhang, Joseph A. Christie‐Oleza, Hans‐Peter Grossart Hans‐Peter Grossart Hans‐Peter Grossart Yuyi Yang, Hans‐Peter Grossart Hans‐Peter Grossart Hans‐Peter Grossart Yuyi Yang, Yuyi Yang, Hans‐Peter Grossart Hans‐Peter Grossart Hans‐Peter Grossart Hans‐Peter Grossart Hans‐Peter Grossart

Summary

Temporal succession trajectories and ecological assembly mechanisms of plastisphere microbial communities were assessed across four freshwater lakes, finding convergence over time despite initial priority effects and compositional differences. Differences in temporal turnover rates and assembly processes between lakes were not exclusively governed by colonization environments.

Study Type Environmental

Succession is a fundamental aspect of ecological theory, but studies on temporal succession trajectories and ecological driving mechanisms of plastisphere microbial communities across diverse colonization environments remain scarce and poorly understood. To fill this knowledge gap, we assessed the primary colonizers, succession trajectories, assembly, and turnover mechanisms of plastisphere prokaryotes and eukaryotes from four freshwater lakes. Our results show that differences in microbial composition similarity, temporal turnover rate, and assembly processes in the plastisphere do not exclusively occur at the kingdom level (prokaryotes and eukaryotes), but also depend on environmental conditions and colonization time. Thereby, the time of plastisphere colonization has a stronger impact on community composition and assembly of prokaryotes than eukaryotes, whereas for environmental conditions, the opposite pattern holds true. Across all lakes, deterministic processes shaped the assembly of the prokaryotes, but stochastic processes influenced that of the eukaryotes. Yet, they share similar assembly processes throughout the temporal succession: species turnover over time causes the loss of any priority effect, which leads to a convergent succession of plastisphere microbial communities. The increase and loss of microbial diversity in different kingdoms during succession in the plastisphere potentially impact the stability of entire microbial communities and related biogeochemical cycles. Therefore, research needs to integrate temporal dynamics along with spatial turnovers of the plastisphere microbiome. Taking the heterogeneity of global lakes and the diversity of global climate patterns into account, we highlight the urgency to investigate the spatiotemporal succession mechanism of plastisphere prokaryotes and eukaryotes in more lakes around the world.

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