Polyethylene mulching film degrading bacteria within the plastisphere: Co-culture of plastic degrading strains screened by bacterial community succession

细菌 微生物种群生物学 生物降解 生物膜 微生物学 微生物 生物 拉伤 聚乙烯 食品科学 化学 生态学 遗传学 解剖 有机化学
作者
Peiyuan Wang,Jiaxi Liu,Siqi Han,Yufan Wang,Yifan Duan,Tingting Liu,Lijun Hou,Zengqiang Zhang,Li Li,Yanbing Lin
出处
期刊:Journal of Hazardous Materials [Elsevier BV]
卷期号:442: 130045-130045 被引量:67
标识
DOI:10.1016/j.jhazmat.2022.130045
摘要

As an ecological niche close to the polymer, microorganisms in the plastisphere possess the advantage of degrading plastics. This study aims to investigate the bacterial community succession and obtain degrading bacteria in the plastisphere, as well as identify the most efficient degradation combination by co-culture of multiple strains. The findings demonstrate the alpha-diversity indices of the plastisphere bacterial community are significantly lower, and the community structure is regularly and significantly altered. With the time of culture, the plastisphere community composition alters regularly, and the hydrocarbon-degrading genera become the core members. Functional prediction of community reveals the potential for Xenobiotics Biodegradation and Metabolism of plastisphere, and the apparent variations detections of polyethylene mulching film (PMF) indicating the PMF degrading ability of plastisphere. Besides, three PMF-degrading bacterial strains, Rhodopseudomonas sp. P1 (P), Rhodanobacter sp. Rs (R) and Microbacterium sp. M1 (M), are screened for co-culture with PMF degrading strain Bacillus aryabhattai 5–3 (B). By considering bacterial growth, biofilm adhesion, and apparent degradation of different samples, RB (R. sp. Rs + B. aryabhattai 5–3) is ultimately selected as the best PMF degradation combination. This study provides a new possibility for plastisphere-related research from the perspective of mitigating plastic pollution on agricultural land.
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