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蚯蚓通俗环毛蚓肠道微生物群对砷和纳米塑料污染的响应。

Responses of earthworm Metaphire vulgaris gut microbiota to arsenic and nanoplastics contamination.

作者信息

Wang Hong-Tao, Ma Lei, Zhu Dong, Ding Jing, Li Gang, Jin Bing-Jie, Shao Yuan-Hu, Zhang Wei-Xin, Song Meng-Ya, Fu Sheng-Lei

机构信息

College of Geography and Environmental Science, Henan University, Kaifeng 475004, China; Key Laboratory of Geospatial Technology for the Middle and Lower Yellow River Regions (Henan University), Ministry of Education, Kaifeng 475004, China.

College of Geography and Environmental Science, Henan University, Kaifeng 475004, China; Key Laboratory of Geospatial Technology for the Middle and Lower Yellow River Regions (Henan University), Ministry of Education, Kaifeng 475004, China.

出版信息

Sci Total Environ. 2022 Feb 1;806(Pt 2):150279. doi: 10.1016/j.scitotenv.2021.150279. Epub 2021 Sep 11.

Abstract

The growing contamination of arsenic and plastics has severely effects on the soil fauna health, including shifts of gut microbiota community. A few studies have focused on effects of microplastics and metal(loid) in soil and fauna gut microbiome. However, the environmental effect of nanoplastics and arsenic on the earthworm gut microbiota, especially on arsenic biotransformation in the gut, remain largely unknown. Here, a microcosm study was performed to explore the effects of nanoplastics and arsenic on the microbiota characteristics in earthworm Metaphire vulgaris gut using Illumina high throughput sequencing, and to investigate changes in the gut microbiota-mediated arsenic biotransformation genes (ABGs) by using high-throughput quantitative PCR. Our results demonstrated that the concentration of arsenic in the earthworm body tissues after exposure to arsenic and nanoplastics was significantly lower from that with arsenic alone exposure. Moreover, the clearly different bacterial community was observed in the soil compared with the earthworm gut, which was dominated by Proteobacteria, Actinobacteria, and Firmicutes at phylum level. Arsenic exposure significantly disturbed bacterial community structure in the earthworm gut, but exposure to nanoplastics did not induce gut microbiota changes. More interestingly, nanoplastics can relieve adverse effect of arsenic on the gut microbiota possibly by adsorbing arsenic. In addition, a total of 16 ABGs were detected, and predominant genes involved in arsenic reduction and transport process were observed in the earthworm guts. In short, this study provides a new picture of the effects of nanoplastics and arsenic on the gut microbiota and arsenic biotransformation in soil fauna gut.

摘要

砷和塑料污染的日益严重对土壤动物健康产生了严重影响,包括肠道微生物群落的变化。一些研究聚焦于土壤和动物肠道微生物群中的微塑料和金属(类金属)的影响。然而,纳米塑料和砷对蚯蚓肠道微生物群的环境影响,尤其是对肠道中砷生物转化的影响,在很大程度上仍然未知。在此,进行了一项微观世界研究,以利用Illumina高通量测序探索纳米塑料和砷对普通环毛蚓肠道微生物群特征的影响,并通过高通量定量PCR研究肠道微生物群介导的砷生物转化基因(ABGs)的变化。我们的结果表明,暴露于砷和纳米塑料后,蚯蚓身体组织中的砷浓度明显低于仅暴露于砷的情况。此外,与蚯蚓肠道相比,在土壤中观察到明显不同的细菌群落,在门水平上以变形菌门、放线菌门和厚壁菌门为主。砷暴露显著扰乱了蚯蚓肠道中的细菌群落结构,但暴露于纳米塑料并未引起肠道微生物群的变化。更有趣的是,纳米塑料可能通过吸附砷来减轻砷对肠道微生物群的不利影响。此外,共检测到16个ABGs,在蚯蚓肠道中观察到参与砷还原和转运过程的主要基因。简而言之,本研究提供了纳米塑料和砷对土壤动物肠道微生物群及砷生物转化影响的新情况。

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