首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Microbial community evolution and fate of antibiotic resistance genes during sludge treatment in two full-scale anaerobic digestion plants with thermal hydrolysis pretreatment
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Microbial community evolution and fate of antibiotic resistance genes during sludge treatment in two full-scale anaerobic digestion plants with thermal hydrolysis pretreatment

机译:两种全规模厌氧消化植物污泥处理中抗生素抗性基因的微生物群落演变与命运,热水解预处理

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摘要

Anaerobic digestion (AD) with thermal hydrolysis pretreatment is widely used as an efficient sludge treatment nowadays. However, the evolution of microbial community (especially for the archaea community), the fate of antibiotic resistance genes (ARGs), and their associations during such process in full-scale sludge treatment plants are rarely reported. Therefore, these scientific questions were explored at two full-scale sludge treatment plants through high-throughput sequencing and quantitative PCR. Results showed that Methanobacterium and Methanosphaera were the dominant archaea in thermal hydrolyzed sludge. The predominant bacteria in the sludge first shifted from nutrients removal functional bacteria to spore-forming bacteria after thermal hydrolysis, and then shifted to fermentative bacteria after AD. The full-scale plants could select ermB, ermF, mefA/E, qnrS and tetM. Though the bacteria and archaea biomass and community largely influenced the fate of ARGs, multiple linear regression analysis showed that the total ARGs were mainly affected by mobile genetic elements (MGEs).
机译:具有热水解预处理的厌氧消化(AD)广泛用作现在的有效污泥处理。然而,很少报道微生物群落(特别是针对古群落),抗生素抗性基因(Args)的命运和它们的关联的进化很少。因此,通过高通量测序和定量PCR在两个全级污泥处理厂探索了这些科学问题。结果表明,甲基杆菌和甲基鏻是热水解污泥中的主要古亚茶。污泥中的主要细菌首先从营养物去除功能细菌转移到热水解后的孢子形成细菌,然后在AD后移至发酵细菌。全尺寸植物可以选择ERMB,ERMF,MEFA / E,QNR和TETM。虽然细菌和古代生物量和群落在很大程度上影响了args的命运,但多元线性回归分析表明,总args主要受移动遗传元素(升温)的影响。

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