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首页> 外文期刊>Phytopathology >Simultaneous Detection of Xanthomonas oryzae pv. oryzae and X. oryzae pv. oryzicola in Rice Seed Using a Padlock Probe-Based Assay
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Simultaneous Detection of Xanthomonas oryzae pv. oryzae and X. oryzae pv. oryzicola in Rice Seed Using a Padlock Probe-Based Assay

机译:同时检测米黄单胞菌PV。 oryzae and X. oryzae pv。基于挂锁探针的水稻种子中的稻米

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摘要

Based on 16S-23S internal transcribed spacer ribosomal DNA sequence data, two padlock probes (PLPs), P-Xoo and P-Xoc, were designed and tested to detect Xanthomonas oryzae pv. oryzae and X. oryzae pv. oryzicola, respectively. These PLPs were combined with dot-blot hybridization to detect X. oryzae pv. oryzae and X. oryzae pv. oryzicola individually in rice seed. Using this technique, a detection sensitivity of 1 pg of X. oryzae pv. oryzae genomic DNA was observed. The technique also facilitated the detection of X. oryzae pv. oryzae in rice seedlots with 2% artificially infested seed. With regards to X. oryzae pv. oryzico/a a detection threshold of 1 pg genomic DNA was observed and the pathogen was successful detected in rice seedlots with 0.2% artificially infested seed. The PLP assays detected X. oryzae pv. oryzae and X. oryzae pv. olyzicola in 39.3% (13 of 33) and 21.3% (10 of 47) of naturally infested commercial rice seedlots, respectively. In contrast, conventional polymerase chain reaction using OSF1/0SR1 and XoocF/XoocR primers sets detected X. oryzae pv. oryzae and X. oryzae pv. oryzico/a in 9.1% (3 of 33) and 8.5% (4 of 47) of the same rice seedlots, respectively. We also detected both pathogens simultaneously in two seedlots, which successfully proved that PLPs (P-Xoo and P-Xoc) combined with reverse dot-blot hybridization can be used to simultaneously detect multiple pathogens in naturally infested commercial rice seedlots. This approach has the potential to be an important tool for detecting multiple pathogens in seed and thereby preventing the spread of important pathogens.
机译:根据内部转录的16S-23S间隔区核糖体DNA序列数据,设计并测试了两个挂锁探针(PLP)P-Xoo和P-Xoc,以检测米黄单胞菌。 oryzae and X. oryzae pv。 Oryzicola,分别。这些PLP与斑点印迹杂交相结合,可检测米曲霉PV。 oryzae and X. oryzae pv。稻种子中的稻米。使用此技术,米曲霉PV的检测灵敏度为1 pg。观察到稻米基因组DNA。该技术还促进了米曲霉PV的检测。稻田中含有2%人工感染种子的稻米。关于X. oryzae pv。观察到oryzico / a的检测阈值为1 pg基因组DNA,并成功地在含有0.2%人工感染种子的水稻种子田中成功检测到病原体。 PLP分析检测到米曲霉PV。 oryzae and X. oryzae pv。分别在39.3%(33的13)和21.3%(47的10)的自然侵染的商业化水稻种田中种植olyzicola。相反,使用OSF1 / 0SR1和XoocF / XoocR引物的常规聚合酶链反应可检测出米曲霉pv。 oryzae and X. oryzae pv。分别占同一稻田的9.1%(33中的3)和8.5%(47中的4)的oryzico / a。我们还在两个种子田中同时检测到两种病原体,这成功证明了PLP(P-Xoo和P-Xoc)结合反向斑点杂交可用于同时检测天然受侵染的商业水稻种子田中的多种病原体。这种方法有可能成为检测种子中多种病原体从而防止重要病原体传播的重要工具。

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