Wang Peiyuan, Song Tianjiao, Bu Jingshu, Zhang Yiqiong, Liu Jiaxi, Zhao Jianbo, Zhang Tingkai, Xi Jiao, Xu Jing, Li Li, Lin Yanbing
College of Life Sciences, Northwest A&F University, Yangling, Shaanxi 712100, China.
College of Innovation and Experiment, Northwest A&F University, Yangling, Shaanxi 712100, China.
Sci Total Environ. 2022 Jun 10;824:153884. doi: 10.1016/j.scitotenv.2022.153884. Epub 2022 Feb 16.
Agricultural fields are severely contaminated with polyethylene mulching film (PMF) and this plastic in the natural environment can be colonized by biofilm-forming microorganisms that differ from those in the surrounding environment. In this study, we investigated the succession of the soil microbial communities in the PMF plastisphere using an artificial micro-ecosystem as well as exploring the degradation of PMF by plastisphere communities. The results indicated a significant and gradual decrease in the alpha diversity of the bacterial communities in the plastisphere and surrounding liquid. The community compositions in the plastisphere and surrounding liquid differed significantly from that in agricultural soil. Phyla and genera with the capacity to degrade polyethylene and hydrocarbon were enriched in the plastisphere, and some of these microorganisms were core members of the plastisphere community. Phylogenetic Investigation of Communities by Reconstruction of Unobserved States (PICRUSt) analysis detected increases in metabolism pathways for PMF plastisphere Xenobiotics Biodegradation and Metabolism, thereby suggesting the possibility of polyethylene degradation in the plastisphere. Observations by scanning electron microscopy (SEM) and confocal laser scanning microscopy demonstrated the formation of biofilms on the incubated PMF. SEM, atomic force microscopy, Fourier transform infrared spectroscopy and water contact angle detected significant changes in the surface microstructure, chemical composition and hydrophobicity change of the films, thereby suggesting that the plastisphere community degraded PMF during incubation. In conclusion, this study provides insights into the changes in agricultural soil microorganisms in the PMF plastisphere and the degradation of PMF.
农田受到聚乙烯地膜(PMF)的严重污染,这种塑料在自然环境中会被形成生物膜的微生物定殖,这些微生物与周围环境中的微生物不同。在本研究中,我们使用人工微生态系统研究了PMF塑料球中土壤微生物群落的演替,并探索了塑料球群落对PMF的降解作用。结果表明,塑料球及其周围液体中细菌群落的α多样性显著且逐渐降低。塑料球及其周围液体中的群落组成与农业土壤中的显著不同。具有降解聚乙烯和碳氢化合物能力的门和属在塑料球中富集,其中一些微生物是塑料球群落的核心成员。通过未观察状态重建对群落进行系统发育研究(PICRUSt)分析检测到,PMF塑料球的异生素生物降解和代谢的代谢途径增加,从而表明塑料球中存在聚乙烯降解的可能性。扫描电子显微镜(SEM)和共聚焦激光扫描显微镜观察表明,在培养的PMF上形成了生物膜。SEM、原子力显微镜、傅里叶变换红外光谱和水接触角检测到薄膜的表面微观结构、化学成分和疏水性发生了显著变化,从而表明塑料球群落在培养过程中降解了PMF。总之,本研究为了解PMF塑料球中农业土壤微生物的变化以及PMF的降解提供了见解。