Key Laboratory of Groundwater Resources and Environment of the Ministry of Education, College of New Energy and Environment, Jilin University, China.
Key Laboratory of Groundwater Resources and Environment of the Ministry of Education, College of New Energy and Environment, Jilin University, China.
Environ Int. 2024 Aug;190:108938. doi: 10.1016/j.envint.2024.108938. Epub 2024 Aug 4.
Plant microbiota are an important factor impacting plant cadmium (Cd) uptake. However, little is known about how plant microbiota affects the Cd uptake by plants under the influence of microplastics (MPs) with different particle sizes. In this study, bacterial structure and assembly in the rhizosphere and endosphere in pakchoi were analyzed by amplicon sequencing of 16S rRNA genes under the influence of different particle sizes of polystyrene microplastics (PS-MPs) combined with Cd treatments. Results showed that there were no significant differences observed in the shoot endophytes among different treatments. However, compared to Cd treatment, larger-sized PS-MPs (2 and 20 μm) significantly increased community diversity and altered the structural composition of rhizosphere bacteria and root endophytes, while smaller-sized PS-MPs (0.2 μm) did not. Under the treatment of larger-sized PS-MPs, the niche breadth of rhizosphere bacteria and root endophytes were significantly increased. And larger-sized PS-MPs also maintained stability and complexity of bacterial co-occurrence networks, while smaller-sized PS-MPs reduced them. Furthermore, compared to Cd treatment, the addition of larger particle size PS-MPs decreased the proportion of homogeneous section, while increased the proportion of drift in root endophytic bacterial community assembly. The role of larger-sized MPs in the community assembly of rhizosphere bacteria was opposite. Using random forest and structural equation models, the study found that larger-sized PS-MPs can promote the colonization of specific bacterial taxa, such as Brevundimonas, AKAU4049, SWB02, Ellin6055, Porphyrobacter, Sphingorhabdus, Rhodobacter, Erythrobacter, Devosia and some other bacteria belonging to Alphaproteobacteria, in the rhizosphere and root endosphere. The colonization of these taxa can may induce the formation of biofilms in the roots, immobilize heavy metals through oxidation processes, and promote plant growth, thereby reducing Cd uptake by pakchoi. The findings of this study provide important insights into the microbial mechanisms underlying the influence of MPs with different particle sizes on plant Cd uptake.
植物微生物群是影响植物镉(Cd)吸收的一个重要因素。然而,对于在不同粒径的微塑料(MPs)影响下,植物微生物群如何影响植物的 Cd 吸收,人们知之甚少。在这项研究中,通过扩增子测序 16S rRNA 基因,分析了不同粒径的聚苯乙烯微塑料(PS-MPs)与 Cd 处理相结合对小白菜根际和根内细菌结构和组装的影响。结果表明,不同处理之间,在茎叶内生菌中没有观察到显著差异。然而,与 Cd 处理相比,较大粒径的 PS-MPs(2 和 20 μm)显著增加了群落多样性,并改变了根际细菌和根内生细菌的结构组成,而较小粒径的 PS-MPs(0.2 μm)则没有。在较大粒径 PS-MPs 的处理下,根际细菌和根内生细菌的生态位宽度显著增加。较大粒径的 PS-MPs 还维持了细菌共生网络的稳定性和复杂性,而较小粒径的 PS-MPs 则降低了它们。此外,与 Cd 处理相比,较大粒径 PS-MPs 的添加降低了根内生细菌群落组装中同源部分的比例,而增加了漂移部分的比例。较大粒径 MPs 在根际细菌群落组装中的作用则相反。通过随机森林和结构方程模型,研究发现较大粒径的 PS-MPs 可以促进特定细菌类群在根际和根内的定殖,如 Brevundimonas、AKAU4049、SWB02、Ellin6055、Porphyrobacter、Sphingorhabdus、Rhodobacter、Erythrobacter、Devosia 和其他一些属于 Alphaproteobacteria 的细菌。这些类群的定殖可能会诱导根内生物膜的形成,通过氧化过程固定重金属,并促进植物生长,从而降低小白菜对 Cd 的吸收。本研究的结果为不同粒径 MPs 对植物 Cd 吸收影响的微生物机制提供了重要见解。