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High diversity and abundance of cultivable tetracycline-resistant bacteria in soil following pig manure application

机译:施用猪粪后土壤中可培养的四环素抗性细菌的多样性和丰富性

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By performing a microcosm experiment mimicking fertilization, we assessed the dynamic distribution of tetracycline-resistant bacteria (TRB) and corresponding tetracycline resistance genes (TRGs) from pig manure (PM) to the fertilized soil, by culture-dependent methods and PCR detection. Cultivable TRB were most abundant in PM, followed by fertilized soil and unfertilized soil. By restriction fragment length polymorphism (RFLP) analysis, TRB were assigned to 29, 20, and 153 operational taxonomic units (OTUs) in PM, unfertilized soil, and fertilized soil, respectively. After identification, they were further grouped into 19, 12, and 62 species, showing an enhanced diversity of cultivable TRB in the soil following PM application. The proportions of potentially pathogenic TRB in fertilized soil decreased by 69.35% and 41.92% compared with PM and unfertilized soil. Bacillus cereus was likely widely distributed TRB under various environments, and Rhodococcus erythropolis and Acinetobacter sp. probably spread from PM to the soil via fertilization. Meanwhile, tetL was the most common efflux pump gene in both unfertilized and fertilized soils relative to PM; tetB(P) and tet36 were common in PM, whereas tetO was predominant in unfertilized and fertilized soil samples. Sequencing indicated that over 65% of randomly selected TRB in fertilized soil with acquired resistance derived from PM.
机译:通过进行模拟施肥的微观实验,我们通过依赖于培养物的方法和PCR检测,评估了四环素抗性细菌(TRB)和相应的四环素抗性基因(TRGs)从猪粪(PM)到受肥土壤的动态分布。可耕TRB在PM中含量最高,其次是施肥土壤和未施肥土壤。通过限制性片段长度多态性(RFLP)分析,将TRB分别分配给PM,未施肥土壤和施肥土壤中的29、20和153个操作分类单位(OTU)。鉴定后,将它们进一步分为19、12和62种,显示PM施用后土壤中可培养TRB的多样性增加。与PM和未施肥的土壤相比,施肥的土壤中潜在致病性TRB的比例分别降低了69.35%和41.92%。蜡状芽孢杆菌很可能在各种环境下广泛分布于TRB,而红球菌和不动杆菌属也存在。可能通过施肥从PM扩散到土壤。同时,相对于PM,tetL是未施肥和施肥土壤中最常见的外排泵基因。 tetB(P)和tet36在PM中很常见,而tetO在未施肥和施肥的土壤样品中占主导地位。测序表明,在获得性抗性的施肥土壤中,超过65%的随机选择的TRB来自PM。

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