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MRG 芯片:一种高通量 qPCR 工具,用于评估重金属(类)抗性组。

MRG Chip: A High-Throughput qPCR-Based Tool for Assessment of the Heavy Metal(loid) Resistome.

机构信息

State Key Laboratory of Agricultural Microbiology, Huazhong Agricultural University, Wuhan 430070, China.

College of Resources and Environment, Huazhong Agricultural University, Wuhan 430070, China.

出版信息

Environ Sci Technol. 2022 Aug 2;56(15):10656-10667. doi: 10.1021/acs.est.2c00488. Epub 2022 Jul 25.

Abstract

Bacterial metal detoxification mechanisms have been well studied for centuries in pure culture systems. However, profiling metal resistance determinants at the community level is still a challenge due to the lack of comprehensive and reliable quantification tools. Here, a novel high-throughput quantitative polymerase chain reaction (HT-qPCR) chip, termed the metal resistance gene (MRG) chip, has been developed for the quantification of genes involved in the homeostasis of 9 metals. The MRG chip contains 77 newly designed degenerate primer sets and 9 published primer sets covering 56 metal resistance genes. Computational evaluation of the taxonomic coverage indicated that the MRG chip had a broad coverage matching 2 kingdoms, 29 phyla, 64 classes, 130 orders, 226 families, and 382 genera. Temperature gradient PCR and HT-qPCR verified that 57 °C was the optimal annealing temperature, with amplification efficiencies of over 94% primer sets achieving 80-110%, with > 0.993. Both computational evaluation and the melting curve analysis of HT-qPCR validated a high specificity. The MRG chip has been successfully applied to characterize the distribution of diverse metal resistance determinants in natural and human-related environments, confirming its wide scope of application. Collectively, the MRG chip is a powerful and efficient high-throughput quantification tool for exploring the microbial metal resistome.

摘要

细菌金属解毒机制在纯培养系统中已经研究了几个世纪。然而,由于缺乏全面和可靠的定量工具,在群落水平上分析金属抗性决定因素仍然是一个挑战。在这里,开发了一种新的高通量定量聚合酶链反应(HT-qPCR)芯片,称为金属抗性基因(MRG)芯片,用于定量参与 9 种金属动态平衡的基因。MRG 芯片包含 77 个新设计的简并引物对和 9 个已发表的引物对,涵盖 56 个金属抗性基因。基于分类学覆盖范围的计算评估表明,MRG 芯片具有广泛的覆盖范围,匹配 2 个王国、29 个门、64 个纲、130 个目、226 个科和 382 个属。温度梯度 PCR 和 HT-qPCR 验证了 57°C 是最佳退火温度,超过 94%的扩增效率达到 80-110%,>0.993。计算评估和 HT-qPCR 的熔解曲线分析均验证了高特异性。MRG 芯片已成功应用于描述自然和与人类相关环境中不同金属抗性决定因素的分布,证实了其广泛的应用范围。总之,MRG 芯片是一种强大且高效的高通量定量工具,可用于探索微生物金属抗性组。

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