The College of Natural Resources and Environment , South China Agricultural University , Guangzhou 510642 , China.
State Key Laboratory of Organic Geochemistry, Guangzhou Institute of Geochemistry , Chinese Academy of Sciences , Guangzhou 510640 , China.
J Agric Food Chem. 2020 Feb 26;68(8):2457-2466. doi: 10.1021/acs.jafc.9b06634. Epub 2020 Feb 13.
The influence of the rhizosphere on the abundance and diversity of antibiotic resistance genes (ARGs) has been recognized but there is a lack of consensus because of broad ranges of plant species and antibiotic concentrations across different habitats and the elusive underlying mechanisms. Here, we profiled antibiotic concentrations and resistomes in the rhizosphere and bulk soils by cultivating 10 types of crops in manure-amended agricultural soils. Rhizosphere effects altered the antibiotic resistome structure, significantly increased the absolute abundance of the antibiotic resistome, and decreased their relative abundance, contrasting previous studies. Such plantation-driven variation in ARGs resulted from the boost of bacterial lineages with negative relationships with ARGs and the constraint of the potential ARG-hosts in the rhizosphere of plants cultivated in soils with low antibiotic concentrations as the selective pressure. This mechanism is not reported previously and deepens our understanding about the rhizosphere effects on ARGs.
根际对抗生素耐药基因(ARGs)丰度和多样性的影响已得到认可,但由于不同生境中植物种类和抗生素浓度范围广泛,以及潜在的难以捉摸的作用机制,目前尚未达成共识。在这里,我们通过在有机肥改良的农业土壤中种植 10 种作物,分析了根际和土壤中抗生素浓度和抗药性组。根际效应改变了抗药性组的结构,显著增加了抗药性组的绝对丰度,降低了其相对丰度,与以往的研究形成对比。这种由种植植物引起的 ARGs 变化是由于与 ARGs 呈负相关的细菌谱系的增加,以及在抗生素浓度低的土壤中种植植物的根际中潜在的 ARG 宿主受到限制,从而产生了选择压力。这种机制以前没有报道过,加深了我们对根际对抗生素耐药基因影响的理解。