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Effect of different biochars on antibiotic resistance genes and bacterial community during chicken manure composting

机译:鸡粪堆肥中不同生物炭对抗生素抗性基因和细菌群落的影响

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Rice straw biochar (RSB) and mushroom biochar (MB) were added to lab-scale chicken manure composting to evaluate their effects on the behaviors of antibiotic resistance genes (ARGs) and on total and bioavailable heavy metals (Cu, Zn and As). The associated bacterial community was characterized by 16S rRNA high-throughput sequencing. The abundance of pathogenic bacteria was also calculated. At the end of the control composting experiment, the average removal rate of ARGs was 0.86 log units and the removal rate of pathogenic bacteria was 57.1%. MB addition resulted in a higher removal rate than that in the control composting experiment. However, RSB addition yielded opposite results, which may be due to the higher abundance of Erysipelotrichaceae, Lactobacillaceae, Family_XI_Incertae_Sedis (belonging to Firmicutes carrying and disseminating ARGs) and pathogenic bacteria carrying ARGs. Furthermore, the correlations between bio-available heavy metals and ARGs were more obvious than those between total heavy metals and ARGs. (C) 2015 Elsevier Ltd. All rights reserved.
机译:将稻草生物炭(RSB)和蘑菇生物炭(MB)添加到实验室规模的鸡粪堆肥中,以评估它们对抗生素抗性基因(ARG)的行为以及对总重和可生物利用的重金属(铜,锌和砷)的影响。通过16S rRNA高通量测序来表征相关的细菌群落。还计算了致病细菌的丰度。对照堆肥试验结束时,ARGs的平均去除率为0.86 log个单位,病原菌的去除率为57.1%。与对照堆肥实验相比,添加MB的去除率更高。然而,添加RSB却产生相反的结果,这可能是由于丹参,乳杆菌科,XI_Incertae_Sedis(属于携带和传播ARG的Firmicutes)和携带ARG的病原菌的丰度较高。此外,生物可用重金属与ARGs之间的相关性比总重金属与ARGs之间的相关性更明显。 (C)2015 Elsevier Ltd.保留所有权利。

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