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抗生素耐药基因丰度与苏格兰土壤中金属和地球化学条件相关。

Antibiotic resistance gene abundances correlate with metal and geochemical conditions in archived Scottish soils.

机构信息

Department of Civil Engineering, David Livingstone Centre for Sustainability, University of Strathclyde, Glasgow, United Kingdom.

出版信息

PLoS One. 2011;6(11):e27300. doi: 10.1371/journal.pone.0027300. Epub 2011 Nov 9.

Abstract

The vast majority of antibiotic resistant genes (ARG) acquired by human pathogens have originated from the natural environment. Therefore, understanding factors that influence intrinsic levels of ARG in the environment could be epidemiologically significant. The selection for metal resistance often promotes AR in exposed organisms; however, the relationship between metal levels in nature and the intrinsic presence of ARG has not been fully assessed. Here, we quantified, using qPCR, the abundance of eleven ARG and compared their levels with geochemical conditions in randomly selected soils from a Scottish archive. Many ARG positively correlated with soil copper levels, with approximately half being highly significant (p<0.05); whereas chromium, nickel, lead, and iron also significantly correlated with specific ARG. Results show that geochemical metal conditions innately influence the potential for AR in soil. We suggest soil geochemical data might be used to estimate baseline gene presence on local, regional and global scales within epidemiological risk studies related to AR transmission from the environment.

摘要

绝大多数人类病原体获得的抗生素耐药基因(ARG)都源自自然环境。因此,了解环境中内在 ARG 水平的影响因素在流行病学上可能具有重要意义。金属耐药性的选择通常会促进暴露生物中的 AR,但自然金属水平与内在 ARG 存在之间的关系尚未得到充分评估。在这里,我们使用 qPCR 定量了 11 种 ARG 的丰度,并将其水平与从苏格兰档案中随机选择的土壤的地球化学条件进行了比较。许多 ARG 与土壤铜水平呈正相关,其中约一半具有高度显著性(p<0.05);而铬、镍、铅和铁也与特定的 ARG 显著相关。结果表明,地球化学金属条件内在地影响土壤中 AR 的潜力。我们建议在与环境中 AR 传播相关的流行病学风险研究中,可利用土壤地球化学数据来估计局部、区域和全球范围内的基线基因存在。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/695b/3212566/8111bf9ab4f3/pone.0027300.g001.jpg

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