环境修复
环境科学
土壤水分
生态系统
护根物
微生物
生物降解
微生物种群生物学
降级(电信)
生态学
适应(眼睛)
选择(遗传算法)
有益生物体
环境工程
丰度(生态学)
环境化学
水生生态系统
生物修复
生物多样性
地膜覆盖
微生物生态学
壤土
作者
Wenwen Gong,Wei Zhang,Haolan Su,Tingting Jin,Qingwei Bu,Bingru Li,Haifeng Li,Zhenguo Zhang,Gang Liang,An-Xiang Lu,Wei Zhou
标识
DOI:10.1021/acs.est.5c08528
摘要
The pervasive environmental impact of conventional nonbiodegradable plastics has spurred interest in biodegradable alternatives, such as polybutylene adipate terephthalate (PBAT). However, the impact of its long-term use on ecosystems and the degradation efficiency in natural soils remain key considerations. Here, we investigated the dynamic changes in soil microbial communities in response to multiyear PBAT use (1-3 years) and identified key microorganisms capable of degrading PBAT. PBAT exposure significantly affected the composition and diversity of the soil microbial communities. Network analysis showed increased complexity and connectivity in both bacterial and fungal communities in multiyear PBAT-treated soils, with bacteria showing progressively intensified interactions, while fungi exhibited initial disruption, followed by recovery and functional reorganization. In addition, we found a positive correlation between the abundance of active PBAT degraders (CFU/g of soil) and the duration of mulching. A total of 10 PBAT-degrading strains belonging to the Pseudomonadota and Actinomycetota phyla were isolated from the soils. Furthermore, by utilizing the high-throughput artificial selection technology, we constructed a bacterial consortium with enhanced degradation activity, highlighting the potential of artificial selection as a robust strategy for environmental remediation efforts. Overall, this study provides insights into mitigating the impact of biodegradable mulch residues.
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