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A slurry microcosm study on the interaction between antibiotics and soil bacterial community

机译:泥浆微观研究抗生素与土壤细菌群落相互作用的研究

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摘要

Antibiotics released in the environment have attracted great attention. The environmental emission control of antibiotics should be based on the degree of their negative impacts on the environment and ecology. Here, we conducted a series of soil slurry microcosm experiments to investigate the interactions between antibiotics and the soil bacterial community. In the soil slurry, distinctive behaviors were observed for different antibiotics. Beta-lactams (ampicillin and ceftriaxone) experienced fast biodegradation. Kanamycin was adsorbed on soil particles soon after its addition. Nalidixic acid was stable throughout the experimental period (164 h). The main inactivation mechanism of tetracycline was deduced to be hydrolysis. Bacterial communities in slurries with or without antibiotic-treatment were profiled high-throughput Illumina sequencing of the 16S rRNA gene. Unstable (ceftriaxone) and adsorbed (kanamycin) antibiotics show minor or negligible influences on the soil bacterial community. Stable antibiotics (nalidixic acid and tetracycline) have significantly affected the structure of the bacterial community. Most of enriched bacterial genera by various antibiotics belong to the same phylum, . Inhibited bacterial phyla by nalidixic acid are and , while those inhibited by tetracycline are , and . According to the PICRUSt prediction of metagenome, influence of antibiotics on overall metabolic function of the bacterial community is rather limited. This study has provided valuable information, from a phylogenetic viewpoint, about the influence of high concentration of antibiotics on soil bacterial community.
机译:在环境中释放的抗生素引起了极大的关注。抗生素的环境排放控制应基于其对环境和生态的负面影响的程度。在这里,我们进行了一系列土壤泥浆微观实验,以研究抗生素与土壤细菌群落之间的相互作用。在土壤浆液中,观察到了不同抗生素的不同行为。 β-内酰胺(氨苄青霉素和头孢曲松)经历了快速的生物降解。加入后,卡那霉素很快被吸附在土壤颗粒上。萘啶酸在整个实验期间(164小时)稳定。推测四环素的主要失活机理是水解。浆液中细菌群落经过或未经过抗生素处理的情况均已通过16S rRNA基因的高通量Illumina测序进行了分析。不稳定的(头孢曲松)和吸附的(卡那霉素)抗生素对土壤细菌群落的影响很小或可忽略不计。稳定的抗生素(纳西地酸和四环素)已显着影响细菌群落的结构。通过各种抗生素富集的细菌属大多数都属于同一门。萘啶酸抑制细菌门的为和,而四环素抑制细菌的门和为。根据PICRUSt对基因组的预测,抗生素对细菌群落整体代谢功能的影响相当有限。从系统发育的角度来看,这项研究为高浓度抗生素对土壤细菌群落的影响提供了有价值的信息。

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