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Article ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Tier 2 ? Original research — experimental, observational, or case-control study. Direct primary evidence. Gut & Microbiome Sign in to save

Colonization characteristics of bacterial communities on plastic debris: The localization of immigrant bacterial communities

Water Research 2021 40 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 40 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Nan Wu Nan Wu Xiaohan Zhang, Xiaohan Zhang, Ying Zhang, Nan Wu Ying Zhang, Ying Zhang, Nan Wu Nan Wu Nan Wu Nan Wu Ying Zhang, Nan Wu Nan Wu Nan Wu Nan Wu Nan Wu Nan Wu Nan Wu Ying Zhang, Ying Zhang, Ying Zhang, Yongzheng Ma, Yongzheng Ma, Nan Wu Zhiguang Niu, Zhiguang Niu, Ying Zhang, Ying Zhang, Ying Zhang, Ying Zhang, Ying Zhang, Ying Zhang, Ying Zhang, Ying Zhang, Ying Zhang, Ying Zhang, Ying Zhang, Yongzheng Ma, Ying Zhang, Ying Zhang, Ying Zhang, Ying Zhang, Yongzheng Ma, Ying Zhang, Yongzheng Ma, Nan Wu Nan Wu Ying Zhang, Ying Zhang, Ying Zhang, Zhiguang Niu, Zhiguang Niu, Zhiguang Niu, Ying Zhang, Wenjie Li, Ying Zhang, Ying Zhang, Ying Zhang, Zhiguang Niu, Ying Zhang, Xiaocui Song, Ying Zhang, Xiaohan Zhang, Ying Zhang, Xiaocui Song, Zhiguang Niu, Yongzheng Ma, Ying Zhang, Yongzheng Ma, Zhiguang Niu, Ying Zhang, Nan Wu Nan Wu Yongzheng Ma, Ying Zhang, Zhiguang Niu, Yongzheng Ma, Ying Zhang, Yongzheng Ma, Yongzheng Ma, Zhiguang Niu, Zhiguang Niu, Ying Zhang, Ying Zhang, Ying Zhang, Yongzheng Ma, Zhiguang Niu, Ying Zhang, Yongzheng Ma, Zhiguang Niu, Zhiguang Niu, Zhiguang Niu, Ying Zhang, Yongzheng Ma, Ying Zhang, Ying Zhang, Yongzheng Ma, Ying Zhang, Nan Wu Nan Wu Nan Wu Nan Wu

Summary

Researchers investigated the colonization characteristics of bacterial communities on plastic debris in environmental settings, finding that the localization of immigrant bacterial communities on plastic surfaces reflects specific colonization dynamics distinct from random sampling effects.

The unique characteristics of bacterial communities on plastic debris and microplastics in the environment have been widely studied in recent years. However, due to the randomness of sampling, it is hard to identify whether the unique characteristics of bacterial communities on plastic debris is due to the plastics as substrate itself, or the accumulation and transportation by plastics. Therefore, the ecological effects of bacterial communities on plastic debris, including the species invasion, are still not clear. To investigate such issue, we took the Haihe Estuary (Tianjin, China) as an example, and designed a strategy to sample and redeploy randomly collected environmental plastic debris for 6 weeks, thus the variation of bacterial communities on plastic debris could be assessed. At the same time, commercial experimental plastic debris was used as the control group to monitor the growth of local bacterial communities on plastics in the cultivation environment. Our study discussed the bacterial communities on the environmental plastic debris from three aspects, including colonization characteristics, taxonomic analysis and molecular metabolism estimation. We found that the bacterial communities on environmental plastic debris tended to show local characteristics, which were less affected by their original characteristics. Therefore, the results reminded us that the ecological risks of bacterial communities on plastics, which were brought by the transportation of plastic debris in the environment, may not be as serious as it was expected previously.

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