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泰乐菌素、环丙沙星和磺胺二甲嘧啶对牛粪厌氧消化过程中 mcrA 基因丰度和产甲烷菌群落的影响。

Effects of tylosin, ciprofloxacin, and sulfadimidine on mcrA gene abundance and the methanogen community during anaerobic digestion of cattle manure.

机构信息

College of Science, Northwest A & F University, Yangling, Shaanxi 712100, China.

College of Resources and Environmental Sciences, Northwest A & F University, Yangling, Shaanxi 712100, China.

出版信息

Chemosphere. 2019 Apr;221:81-88. doi: 10.1016/j.chemosphere.2018.12.043. Epub 2018 Dec 18.

Abstract

This study evaluated how tylosin (TYL), ciprofloxacin (CIP), and sulfadimidine (SM) affected biogas and CH production during anaerobic digestion (AD) via their effects on the key genes related to methane production and the methanogenic community. The results showed that TYL, CIP, and SM reduced the production of methane during AD by 7.5%, 21.9%, and 16.0%, respectively. After AD for five days, CIP strongly inhibited the mcrA gene, where its abundance was 49% less than that in the control. TYL and SM decreased the abundances of Spirochaeta and Fibrobacteres during AD. High-throughput sequencing identified 10 methanogen genera, where Methanocorpusculum, Methanobrevibacter, and Methanosarcina accounted for 99.1% of the total archaeal reads. TYL and SM increased the efficiency of the acetoclastic methanogen pathway (Methanosarcina) by 29.04% and 52.79%, respectively. Redundancy analysis showed that Spirochaeta, Fibrobacteres, and Methanosarcina had positive correlations with CH and mcrA. We found that 30 mg kg CIP had a strong inhibitory effect on methane production by influencing the abundances of Methanobrevibacter and Methanosarcina during AD.

摘要

本研究通过考察与甲烷生成相关的关键基因和产甲烷菌群落,评估了泰乐菌素(TYL)、环丙沙星(CIP)和磺胺二甲嘧啶(SM)对厌氧消化(AD)中产沼气和 CH 的影响。结果表明,TYL、CIP 和 SM 分别使 AD 过程中的甲烷生成减少了 7.5%、21.9%和 16.0%。经过五天的 AD 后,CIP 强烈抑制了 mcrA 基因,其丰度比对照减少了 49%。TYL 和 SM 降低了 AD 过程中螺旋体菌属和纤维杆菌属的丰度。高通量测序鉴定出 10 种产甲烷菌属,其中甲烷球菌属、甲烷短杆菌属和产甲烷八叠球菌属占总古菌读长的 99.1%。TYL 和 SM 分别将乙酸营养型产甲烷途径(产甲烷菌)的效率提高了 29.04%和 52.79%。冗余分析表明,螺旋体菌属、纤维杆菌属和产甲烷菌属与 CH 和 mcrA 呈正相关。我们发现,30mgkg 的 CIP 通过影响 AD 中产甲烷菌属和产甲烷菌属的丰度,对甲烷生成具有很强的抑制作用。

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