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[温度和搅拌对奶牛粪便厌氧消化中抗生素抗性基因和微生物群落变化的影响]

[Effects of Temperature and Stirring on the Changes of Antibiotic Resistance Genes and Microbial Communities in Anaerobic Digestion of Dairy Manure].

作者信息

Xu Ji-Fei, Zhang Qiu-Ping, Zhu Tian-Jiao, Qin Shuai, Zhu Wen-Bo, Pang Xiao-Ke, Zhao Ji

机构信息

School of Ecology and Environment, Inner Mongolia University, Hohhot 010021, China.

Inner Mongolia Key Laboratory of Environmental Pollution Control and Waste Resource Recycle, Inner Mongolia University, Hohhot 010021, China.

出版信息

Huan Jing Ke Xue. 2021 Jun 8;42(6):2992-2999. doi: 10.13227/j.hjkx.202010173.

Abstract

To investigate the effects of temperature and stirring on antibiotic resistance genes (ARGs) and microbial communities during the anaerobic digestion of dairy manure, mesophilic and thermophilic anaerobic digestion experiments were performed with and without stirring. Two-way analysis of variance indicated that temperature affected biogas production more strongly than stirring (=0.934>0.911), and thermophilic and stirring increased the total biogas yield by 13.93% and 12.63%, respectively. The effect of temperature on the removal of ARGs was also stronger than that of stirring (=0.992>0.920), where thermophilic conditions enhanced the reduction of ARGs and MGEs to 0.09-1.53 (logarithm), while stirring had no significant effects. When temperature was altered from mesophilic to thermophilic, the microbial communities shifted, with Firmicutes becoming the dominant phylum after thermophilic anaerobic digestion, with a relative abundance of >86%. Network analysis demonstrated that eight genera including , , and were the hosts of ARGs and MGEs, and the redundancy analysis suggested that physicochemical parameters play important roles in shaping microbial communities, especially TAN and TVFAs, which indirectly affected the ARGs by altering their host bacteria.

摘要

为研究温度和搅拌对奶牛粪便厌氧消化过程中抗生素抗性基因(ARGs)和微生物群落的影响,进行了有搅拌和无搅拌的中温及高温厌氧消化实验。双向方差分析表明,温度对沼气产量的影响比搅拌更强(=0.934>0.911),高温和搅拌分别使沼气总产量提高了13.93%和12.63%。温度对ARGs去除的影响也比搅拌更强(=0.992>0.920),其中高温条件下ARGs和移动遗传元件(MGEs)的减少量提高到0.09 - 1.53(对数),而搅拌没有显著影响。当温度从中温变为高温时,微生物群落发生变化,高温厌氧消化后厚壁菌门成为优势菌门,相对丰度>86%。网络分析表明,包括、和在内的8个属是ARGs和MGEs的宿主,冗余分析表明理化参数在塑造微生物群落中起重要作用,尤其是总氨氮(TAN)和挥发性脂肪酸(TVFAs),它们通过改变宿主细菌间接影响ARGs。

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