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非互补 5' AT 丰富序列对开发多重 TaqMan 实时 PCR 进行特异性和稳健检测的协同作用,用于特异性和稳健检测 Clavibacter michiganensis 和 C. michiganensis subsp. nebraskensis。

Synergetic effect of non-complementary 5' AT-rich sequences on the development of a multiplex TaqMan real-time PCR for specific and robust detection of Clavibacter michiganensis and C. michiganensis subsp. nebraskensis.

机构信息

Department of Plant and Environmental Protection Sciences, University of Hawaii at Manoa, Honolulu, Hawaii, United States of America.

Department of Plant Pathology, Kansas State University, Manhattan, Kansas, United States of America.

出版信息

PLoS One. 2019 Jul 11;14(7):e0218530. doi: 10.1371/journal.pone.0218530. eCollection 2019.

Abstract

Clavibacter is an agriculturally important genus comprising a single species, Clavibacter michiganensis, and multiple subspecies, including, C. michiganensis subsp. nebraskensis which causes Goss's wilt/blight of corn, accounts for high yield losses and is listed among the five most significant diseases of corn in the United States of America. Our research objective was to develop a robust and rapid multiplex TaqMan real-time PCR (qPCR) to detect C. michiganensis in general and C. michiganensis subsp. nebraskensis with enhanced reliability and accuracy by adding non-complementary AT sequences to the 5' end of the forward and reverse primers. Comparative genomic analyses were performed to identify unique and conserved gene regions for primer and probe design. The unique genomic regions, ABC transporter ATP-binding protein CDS/ABC-transporter permease and MFS transporter were determined for specific detection of C. michiganensis and C. m. subsp. nebraskensis, respectively. The AT-rich sequences at the 5' position of the primers enhanced the reaction efficiency and sensitivity of rapid qPCR cycling; the reliability, accuracy and high efficiency of the developed assay was confirmed after testing with 59 strains from inclusivity and exclusivity panels-no false positives or false negatives were detected. The assays were also validated through naturally and artificially infected corn plant samples; all samples were detected for C. michiganensis and C. m. subsp. nebraskensis with 100% accuracy. The assay with 5' AT-rich sequences detected up to 10- and 100-fg of C. michiganensis and C. michiganensis subsp. nebraskensis genome targets, respectively. No adverse effect was observed when sensitivity assays were spiked with host genomic DNA. Addition of 5' AT-rich sequences enhanced the qPCR reaction efficiency from 0.82 (M = -3.83) and 0.91 (M = -3.54) to 1.04 (with optimum slope value; M = -3.23) for both C. michiganensis and C. michiganensis subsp. nebraskensis, respectively; an increase of 10-fold sensitivity was also obtained with C. michiganensis primer set. The methodology proposed here can be used to optimize reaction efficiency and to harmonize diagnostic protocols which have prodigious applications in routine diagnostics, biosecurity and microbial forensics.

摘要

棒形杆菌属是一个具有重要农业意义的属,包含一个单一的种,即密歇根棒形杆菌,以及多个亚种,包括导致玉米 Goss 萎蔫/枯萎的密歇根棒形杆菌亚种。该亚种导致了高产量损失,并且被列为美国五种最重要的玉米病害之一。我们的研究目标是开发一种稳健且快速的多重 TaqMan 实时 PCR(qPCR)方法,通过在正向和反向引物的 5' 端添加非互补的 AT 序列,以提高可靠性和准确性,从而检测一般的密歇根棒形杆菌和密歇根棒形杆菌亚种。通过比较基因组分析,确定了用于引物和探针设计的独特和保守的基因区域。用于特定检测密歇根棒形杆菌和密歇根棒形杆菌亚种的独特基因组区域是 ABC 转运蛋白 ATP 结合蛋白 CDS/ABC 转运蛋白渗透酶和 MFS 转运蛋白。引物 5' 位置的富含 AT 序列提高了快速 qPCR 循环的反应效率和灵敏度;通过对包容性和排他性面板中的 59 株菌株进行测试,验证了该方法的可靠性、准确性和高效率;未检测到假阳性或假阴性。该方法还通过自然和人工感染的玉米植物样本进行了验证;所有样本均以 100%的准确性检测到密歇根棒形杆菌和密歇根棒形杆菌亚种。具有 5' AT 丰富序列的检测法可分别检测到高达 10-和 100 fg 的密歇根棒形杆菌和密歇根棒形杆菌亚种基因组靶标。在灵敏度检测中添加宿主基因组 DNA 时,未观察到不良反应。添加 5' AT 丰富序列可将密歇根棒形杆菌和密歇根棒形杆菌亚种的 qPCR 反应效率分别从 0.82(M = -3.83)和 0.91(M = -3.54)提高到 1.04(最佳斜率值;M = -3.23);对于密歇根棒形杆菌引物组,还获得了 10 倍的灵敏度提高。这里提出的方法可用于优化反应效率,并协调诊断方案,这些方案在常规诊断、生物安全和微生物取证方面具有广泛的应用。

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