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Impacts of addition of natural zeolite or a nitrification inhibitor on antibiotic resistance genes during sludge composting

机译:污泥堆肥过程中添加天然沸石或硝化抑制剂对抗生素抗性基因的影响

摘要

Composting is commonly used for the treatment and resource utilization of sewage sludge, and natural zeolite and nitrification inhibitors can be used for nitrogen conservation during sludge composting, while their impacts on ARGs control are still unclear. Therefore, three lab-scale composting reactors, A (the control), B (natural zeolite addition) and C (nitrification inhibitor addition of 3,4-dimethylpyrazole phosphate, DMPP), were established. The impacts of natural zeolite and DMPP on the levels of ARGs were investigated, as were the roles that heavy metals, mobile genetic elements (MGEs) and the bacterial community play in ARGs evolution. The results showed that total ARGs copies were enriched 2.04 and 1.95 times in reactors A and C, respectively, but were reduced by 1.5% in reactor B due to the reduction of conjugation and co-selection of heavy metals caused by natural zeolite. Although some ARGs (bla(CTX-M), bla(TEM), ermB, ereA and tetW) were reduced by 03-2 logs, others (ermF, sull, sulll, tetG, tetX, mefA and aac(6'-1b-cr) increased by 0.3-1.3 logs after sludge composting. Although the contributors for the ARGs profiles in different stages were quite different, the results of a partial redundancy analysis, Mantel test and Procrustes analysis showed that the bacterial community was the main contributor to the changes in ARGs compared to MGEs and heavy metals. Network analysis determined the potential host bacteria for various ARGs and further confirmed our results. (C) 2016 Elsevier Ltd. All rights reserved.
机译:堆肥通常用于污水污泥的处理和资源利用,而天然沸石和硝化抑制剂可用于污泥堆肥过程中的氮保护,但它们对ARGs控制的影响尚不清楚。因此,建立了三个实验室规模的堆肥反应器A(对照),B(天然沸石添加)和C(3,4-二甲基吡唑磷酸酯的硝化抑制剂添加,DMPP)。研究了天然沸石和DMPP对ARGs水平的影响,以及重金属,移动遗传元素(MGEs)和细菌群落在ARGs进化中的作用。结果表明,由于减少了天然沸石对重金属的共轭和共选作用,反应器A和C中的总ARGs拷贝分别富集了2.04和1.95倍,但在反应器B中却减少了1.5%。尽管某些ARGs(bla(CTX-M),bla(TEM),ermB,ereA和tetW)减少了03-2个对数,但另一些(ermF,sull,sulll,tetG,tetX,mefA和aac(6'-1b) -cr)在污泥堆肥后增加了0.3-1.3个对数。尽管不同阶段ARGs分布的贡献者差异很大,但部分冗余分析,Mantel试验和Procrustes分析的结果表明,细菌群落是造成该现象的主要原因(A)与MGE和重金属相比,ARG的变化;网络分析确定了各种ARG的潜在宿主细菌,并进一步证实了我们的结果(C)2016 Elsevier Ltd.保留所有权利。

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