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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Hydrothermal treatment of lincomycin mycelial residues: Antibiotic resistance genes reduction and heavy metals immobilization
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Hydrothermal treatment of lincomycin mycelial residues: Antibiotic resistance genes reduction and heavy metals immobilization

机译:LiNcomcycin菌丝体残留的水热处理:抗生素抗性基因还原和重金属固定化

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In this study, fate of antibiotic resistance genes (ARGs - lmrA, lmrB, ermB, lnuA, lnuB and vgaC) and species distribution of heavy metals during lincomycin mycelial residues hydrothermal treatment (HT) process were investigated. The results showed that HT could reduce both ARGs and mobile genetic elements effectively by 1.02 to 4.14 logs. Total bacterial biomass reflecting by 16S rRNA decreased from 1.27x10(9) to 4.47x10(5) copies g(-1) dry weight. Moreover, half-lives of these targets varied from 2.4 min (ermB) to 8.9 min (lmrB) in the first 30 min of treatment based on a biphasic first-order kinetic model. After the first 30 min, however, half-lives ranged between 15.4 min (lmrA) and 247.6 min (ISCR1). Complexation and precipitation resulted in the transformation of heavy metals from weakly bounded to relatively stable fraction in HT process. Simultaneously, their environmental risk level decreased by at least one grade.
机译:在本研究中,研究了抗生素抗性基因(Args - LMRA,LMRB,ERMB,LNUA,LNUB和VGAC)和重金属在林霉素菌丝菌丝菌丝体残留水热处理(HT)过程中的抗生素抗性基因的命运。 结果表明,HT可以通过1.02至4.14日志有效地减少args和移动遗传元件。 反射16S rRNA的总细菌生物质从1.27×10(9)〜4.47×10(5)拷贝G(-1)干重降低。 此外,基于双相的一阶动力学模型,这些靶标的半衰期从2.4分钟(ERMB)到8.9分钟(LMRB)不同。 然而,在前30分钟后,半衰期在15.4分钟(LMRA)和247.6分钟之间(ISCR1)之间。 络合和沉淀导致重金属从HT过程中弱界定的重金属转化。 同时,它们的环境风险水平至少减少了至少一个等级。

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