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AsChip:一种高通量 qPCR 芯片,用于全面分析与砷微生物循环相关的基因。

AsChip: A High-Throughput qPCR Chip for Comprehensive Profiling of Genes Linked to Microbial Cycling of Arsenic.

机构信息

Section for Microbial Ecology and Biotechnology, Department of Plant and Environmental Sciences , University of Copenhagen , Thorvaldsenvej 40 , DK-1871 Frederiksberg C , Denmark.

Key Laboratory of Urban Environment and Health , Institute of Urban Environment , Chinese Academy of Science , 1799 Jimei Road , Xiamen 361021 , China.

出版信息

Environ Sci Technol. 2019 Jan 15;53(2):798-807. doi: 10.1021/acs.est.8b03798. Epub 2018 Dec 26.

Abstract

Arsenic (As) is a ubiquitous toxic element adversely affecting human health. Microbe-mediated cycling of As is largely mediated by detoxification and energy metabolism in microorganisms. We here report the development of a novel high-throughput qPCR (HT-qPCR) chip (AsChip) for comprehensive profiling of genes involved in microbial As cycling (here collectively termed "As genes"). AsChip contained 81 primer sets targeting 19 As genes and the 16S rRNA gene as a reference gene. Gene amplicon sequencing showed high identity (>96%) of newly designed primers corresponding to their targets. AsChip displayed high sensitivity (plasmid template serial dilution test; r = -0.99), with more than 96% of all PCR assays yielding true positive signals. R coefficients for standard curves and PCR amplification efficiencies averaged 0.98 and 0.99, respectively. A high correlation between C values obtained by AsChip and conventional qPCR was obtained ( r = 0.962, P < 0.001). Finally, we successfully applied AsChip on soil samples from a chromium-copper-arsenic-contaminated field site and identified diverse As genes with total abundance average of 0.4 As gene copies per 16S rRNA. Our results indicate that AsChip constitutes a robust tool for comprehensive quantitative profiling of As genes in environmental samples.

摘要

砷(As)是一种普遍存在的有毒元素,对人类健康有不良影响。微生物介导的砷循环主要由微生物中的解毒和能量代谢来介导。我们在这里报告了一种新型高通量 qPCR(HT-qPCR)芯片(AsChip)的开发,用于全面分析参与微生物砷循环的基因(这里统称为“砷基因”)。AsChip 包含 81 个针对 19 个砷基因和 16S rRNA 基因的引物组,作为参考基因。基因扩增子测序显示,新设计的引物与其靶标具有高度的同一性(>96%)。AsChip 显示出很高的灵敏度(质粒模板系列稀释测试;r = -0.99),超过 96%的 PCR 检测都产生了真正的阳性信号。标准曲线的 R 系数和 PCR 扩增效率平均分别为 0.98 和 0.99。通过 AsChip 获得的 C 值与传统 qPCR 之间具有高度相关性(r = 0.962,P < 0.001)。最后,我们成功地将 AsChip 应用于受铬铜砷污染的田间土壤样品,并鉴定出了具有平均总丰度为 0.4 个砷基因拷贝数/16S rRNA 的各种砷基因。我们的结果表明,AsChip 构成了一种用于环境样品中砷基因全面定量分析的强大工具。

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