根际
化学
转化(遗传学)
生物降解
大块土
环境化学
土壤生物学
农学
环境科学
土壤水分
土壤科学
生物
细菌
生物化学
有机化学
基因
遗传学
作者
Jianling Wang,Weitao Liu,Aurang Zeb,Qi Wang,Fan Mo,Ruiying Shi,Yuebin Sun,Fayuan Wang
标识
DOI:10.1021/acs.jafc.4c04206
摘要
The potential impacts of biodegradable and nonbiodegradable microplastics (MPs) on rhizosphere microbial nitrogen (N) transformation processes remain ambiguous. Here, we systematically investigated how biodegradable (polybutylene succinate, PBS) MPs and nonbiodegradable (polyethylene, PE) MPs affect microbial N processes by determining rhizosphere soil indicators of typical Glycine max (soybean)-soil (i.e., red and brown soils) systems. Our results show that MPs altered soil pH and dissolved organic carbon in MP/soil type-dependent manners. Notably, soybean growth displayed greater sensitivity to 1% (w/w) PBS MP exposure in red soil than that in brown soil since 1% PBS acidified the red soil and impeded nutrient uptake by plants. In the rhizosphere, 1% PBS negatively impacted microbial community composition and diversity, weakened microbial N processes (mainly denitrification and ammonification), and disrupted rhizosphere metabolism. Overall, it is suggested that biodegradable MPs, compared to nonbiodegradable MPs, can more significantly influence the ecological function of the plant–soil system.
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