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Ammonia stress reduces antibiotic efflux but enriches horizontal gene transfer of antibiotic resistance genes in anaerobic digestion

机译:氨胁迫减少抗生素渗透,但富集厌氧消化中的抗生素抗性基因的水平基因转移

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摘要

The dynamics of antibiotic resistance genes (ARGs) response to ammonia stress were evaluated using metagenomics and quantitative PCR (qPCR) in anaerobic digestion (AD). Ammonia stress reduced ARGs associated with antibiotic efflux, especially the major facilitator superfamily (MFS) of tet(L), due to free ammonia (FA) that changed the proton gradient of efflux system. Nonetheless, ARGs of antibiotic target alteration, especially ermB, were enriched under ammonia stress, which could be attributed to the initiation of the internal enhancer of the transferability of the broad host range plasmid, pAMbeta1. Statistical analysis elucidated the significant changes of ARGs are directly attributed to the mobile genetic elements (MGEs), but the little affected ARGs are mainly determined by the functional microbes reflected by nitrogen cycling genes (NCyc). This study deciphered the profiles of ARGs response to ammonia stress in AD, which indicated the importance of alleviation of ammonia inhibition for the mitigation of ARGs dissemination.
机译:在厌氧消化(AD)中,评估抗生素抗性基因(ARGS)对氨胁迫进行氨胁迫的响应。由于自由氨(Fa)改变了Efflux系统的自由氨(Fa),氨胁迫减少了与抗生素流出相关的Args,尤其是Tet(L)的主要促进剂超家族(MFS)。尽管如此,抗生素靶改变,特别是ERMB的ARGs在氨胁迫下富集,这​​可能归因于宽宿主范围质粒,PAMBETA1的可转移性的内部增强剂。统计分析阐明了args的显着变化是直接归因于流动遗传元素(升降机),但是受影响的睾丸主要由氮循环基因(Ncyc)反射的功能微生物决定。该研究破译了ARGS对AD中氨胁迫的反应的谱,这表明减轻氨抑制对args传播的影响的重要性。

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