Ha Y, Fessehaie A, Ling K S, Wechter W P, Keinath A P, Walcott R R
Department of Plant Pathology, The University of Georgia, Athens, GA 30602, USA.
Phytopathology. 2009 Jun;99(6):666-78. doi: 10.1094/PHYTO-99-6-0666.
To improve the simultaneous detection of two pathogens in cucurbit seed, a combination of magnetic capture hybridization (MCH) and multiplex real-time polymerase chain reaction (PCR) was developed. Single-stranded DNA hybridization capture probes targeting DNA of Acidovorax avenae subsp. citrulli, causal agent of bacterial fruit blotch, and Didymella bryoniae, causal agent of gummy stem blight, were covalently attached to magnetic particles and used to selectively concentrate template DNA from cucurbit seed samples. Sequestered template DNAs were subsequently amplified by multiplex real-time PCR using pathogen-specific TaqMan PCR assays. The MCH multiplex real-time PCR assay displayed a detection threshold of A. avenae subsp. citrulli at 10 CFU/ml and D. bryoniae at 10(5) conidia/ml in mixtures of pure cultures of the two pathogens, which was 10-fold more sensitive than the direct real-time PCR assays for the two pathogens separately. Although the direct real-time PCR assay displayed a detection threshold for A. avenae subsp. citrulli DNA of 100 fg/microl in 25% (1/4 samples) of the samples assayed, MCH real-time PCR demonstrated 100% detection frequency (4/4 samples) at the same DNA concentration. MCH did not improve detection sensitivity for D. bryoniae relative to direct real-time PCR using conidial suspensions or seed washes from D. bryoniae-infested cucurbit seed. However, MCH real-time PCR facilitated detection of both target pathogens in watermelon and melon seed samples (n = 5,000 seeds/sample) in which 0.02% of the seed were infested with A. avenae subsp. citrulli and 0.02% were infested with D. bryoniae.
为提高葫芦科种子中两种病原体的同时检测能力,开发了一种磁捕获杂交(MCH)与多重实时聚合酶链反应(PCR)相结合的方法。针对细菌性果斑病的致病因子燕麦嗜酸菌西瓜亚种和蔓枯病的致病因子黄瓜壳二孢的DNA,设计了单链DNA杂交捕获探针,并将其共价连接到磁性颗粒上,用于从葫芦科种子样品中选择性富集模板DNA。随后,使用病原体特异性TaqMan PCR检测法通过多重实时PCR扩增被隔离的模板DNA。在两种病原体的纯培养物混合物中,MCH多重实时PCR检测法对燕麦嗜酸菌西瓜亚种的检测阈值为10 CFU/ml,对黄瓜壳二孢的检测阈值为10⁵ 个分生孢子/ml,这比单独对两种病原体进行的直接实时PCR检测法灵敏度高10倍。尽管直接实时PCR检测法在25%(1/4样本)的检测样本中对燕麦嗜酸菌西瓜亚种DNA的检测阈值为100 fg/μl,但MCH实时PCR在相同DNA浓度下显示出100%的检测频率(4/4样本)。相对于使用来自感染黄瓜壳二孢的葫芦科种子的分生孢子悬浮液或种子洗涤液进行的直接实时PCR,MCH并没有提高对黄瓜壳二孢的检测灵敏度。然而,MCH实时PCR有助于在西瓜和甜瓜种子样本(每个样本5000粒种子)中检测两种目标病原体,其中0.02%的种子感染了燕麦嗜酸菌西瓜亚种且0.02%的种子感染了黄瓜壳二孢。