微塑料对抗生素污染土壤中氮素转化功能基因与抗生素抗性基因丰度的影响
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X53

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浙江省自然科学基金项目(LZ19D10001)和国家自然科学基金项目(42177021)资助。


Impact of Microplastics on Abundance of Nitrogen Functional Genes and Antibiotic Resistance Genes in Soil Contaminated by Antibiotics
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    摘要:

    农田土壤中微塑料与抗生素因有共同来源而存在复合或混合污染,成为一类新污染问题。本文以磺胺甲噁唑(SMZ)和四环素(TC)污染土壤为对象,研究低密度聚乙烯(LDPE)微塑料对土壤中抗生素降解的影响,以及微塑料和抗生素复合污染情况下,铵态氮和硝态氮组成、氮素转化功能基因(nifHamoAamoBnirKnirS)和抗生素抗性基因(sulItetA)的丰度变化。研究结果表明:①LDPE微塑料添加未显著改变土壤中四环素和磺胺甲噁唑的降解特征;但显著(P<0.05)降低了土壤中sulItetA抗性基因的丰度。②微塑料的添加对土壤铵态氮含量的影响要高于对硝态氮含量的影响,其中,0.05%(m/m)添加量的LDPE微塑料显著(P<0.05)增加了土壤中铵态氮的含量,并且在培养15 d时影响最为显著。③LDPE微塑料添加显著(P<0.05)降低了土壤氮素转化功能基因nifHnirKnirS的丰度,改变了氨氧化过程功能基因amoAamoB的组成,但随着微塑料添加量的增加,两个氨氧化功能基因的丰度差异缩小。本研究对进一步认识土壤环境中微塑料-抗生素复合/混合污染体系下氮素形态变化和耐药性风险均具有重要意义。

    Abstract:

    The combined or mixed pollution of microplastics and antibiotics due to their same sources has become an emerging environmental problem in farmland soils. This study is to explore the impact of low-density polyethylene (LDPE) microplastics amendment on the degradation of two antibiotics:sulfamethoxazole (SMZ) and tetracycline (TC), the changes of ammonium and nitrate composition, the abundances of nitrogen functional genes (nifH, amoA, amoB, nirK and nirS) and two typical antibiotic resistance genes (sulI and tetA). The results showed that the degradation of SMZ and TC in the soil was not significantly changed after being amended with LDPE microplastics, however, the abundance of sulI and tetA resistance genes in the soil decreased significantly (P<0.05). A severer impact of LDPE microplastic amending was observed for ammonium nitrogen than nitrate nitrogen in the soil. LDPE microplastics amended with 0.05% (m/m) significantly (P<0.05) increased the content of ammonium nitrogen, and such an impact was most prominent on the 15th day of incubation. LDPE microplastics significantly decreased the abundance of nifH, nirK and nirS genes and changed the composition of the functional genes of the ammonia oxidation process (amoA and amoB). The abundance difference between amoA and amoB decreased with the increase of microplastics amendment. This study is of great significance for further understanding the changes in nitrogen form and the risk of resistance genes in soil environment under a microplastics-antibiotics composite/mixed pollution system.

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赵婷,黄顺寅,蔡怡敏,张瑜涛,章海波.微塑料对抗生素污染土壤中氮素转化功能基因与抗生素抗性基因丰度的影响[J].土壤,2023,55(6):1323-1328. ZHAO Ting, HUANG Shunyin, CAI Yimin, ZHANG Yutao, ZHANG Haibo. Impact of Microplastics on Abundance of Nitrogen Functional Genes and Antibiotic Resistance Genes in Soil Contaminated by Antibiotics[J]. Soils,2023,55(6):1323-1328

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  • 收稿日期:2022-12-06
  • 最后修改日期:2023-01-01
  • 录用日期:2023-01-04
  • 在线发布日期: 2023-12-22
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