单次和重复暴露下石墨烯对土壤微生物活性的时间依赖性影响

Wenjuan Liu, Yufeng Guo, Zihan Wang, Wenbo Deng
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摘要

石墨烯具有巨大的工业和生物医学潜力,其对土壤微生物的不良影响已在生态毒理学研究中得到评价。这些研究主要集中于单次暴露,但在实际暴露情景下,低浓度的重复暴露更有可能发生。本研究基于土壤酶活性和高通量测序,比较了单次和多次暴露GR对土壤细菌群落结构、丰度和功能的影响。结果表明,孵育4天后,重复暴露于GR(两次暴露实验每两周15 mg GR,三次暴露实验每10 mg GR,最终浓度均为300 mg/kg)后,脲酶和荧光素双乙酸酯酶的活性分别增加了约12%和4%。相反,单次暴露(30 mg单次暴露实验)后,脲酶和荧光素双乙酸酯酶的活性分别下降了13%和6%。随着孵育时间延长至60 d,这些活性差异不大。土壤细菌群落的α多样性在重复暴露条件下比单次暴露条件下增加更多,表明低浓度长期暴露会增加特定细菌群落的多样性。PCoA和样本水平聚类树显示,单次暴露4 d后,土壤细菌群落发生了一定程度的变化。在整个培养过程中,无论何种GR暴露场景下,门水平上除变形菌门(Proteobacteria)和放线菌门(Actinobacteria)的相对丰度外,大多数细菌的系统型都没有太大变化。这些结果表明,与单一暴露相比,重复暴露可增加土壤微生物群落的代谢活性和多样性。该研究为研究碳纳米材料对土壤微生物群落的影响提供了新的视角。
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Time-Dependent Effect of Graphene on the Microbial Activity of the Soil Under Single and Repeated Exposures
Graphene (GR) has huge industrial and biomedical potential, and its adverse effect on soil microorganisms has been evaluated in ecotoxicological studies. These studies focused on single exposure to GR, but repeated exposures with low concentration are more likely to occur under actual exposure scenario. In this study, we compared the impact of single and repeated exposures of GR on structure, abundance and function of soil bacterial community based on soil enzyme activity and high-throughput sequencing. The results displayed that after 4 days of incubation the activities of urease and fluorescein diacetate esterase increased by approximately 12% and 4% upon repeated exposure to GR (biweekly 15 mg doses GR for the two-exposure experiment, 10 mg doses GR for the three-exposure experiment, resulting in the same final concentration of 300 mg/kg), respectively. Instead, the activities of urease and fluorescein diacetate esterase decreased by 13% and 6% upon single exposure (30 mg for the single-exposure experiment), respectively. As the incubation time increased to 60 days, these activities showed little difference. The alpha diversity of soil bacterial community under repeated exposures increased more than that under single exposure, demonstrating that a low concentration chronic exposure to GR increase the diversity within a specific bacterial community. The PCoA and sample level clustering tree showed single exposure to GR after 4 days alter the soil bacterial community to some extent. During the entire incubation process, no matter what kind of exposure scenarios to GR, the majority of bacterial phylotypes at the phylum level had no great change except for Proteobacteria and Actinobacteria according to the relative abundance of phylotypes. These results elucidated the repeated exposures to GR increased the metabolic activity and diversity of the soil microbial community as compared with single exposure. This study can provide a new perspective on the impact of carbon nanomaterials on soil microbial community.
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