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Establishment of a Rapid Detection Method for Rice Blast Fungus Based on One-Step Loop-Mediated Isothermal Amplification (LAMP)

机译:基于一步环介导等温扩增(灯)的稻瘟病真菌的快速检测方法

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摘要

Rice blast is one of the most serious diseases for rice, and controlling the filamentous fungus Magnaporthe oryzae that causes rice blast is crucial for global food security. Typically, early infected rice does not show symptoms. Therefore, the earlydiagnosis of rice blast is particularly important to avoid uncontrollable propagation of rice blast fungus. In the present work, a rapid and efficient loop-mediated isothermal amplification (LAMP) method was developed to detect the pathogen at the earlyinfected stage of rice. The AIM superfamily hypothetical protein MGG_04322, a nuclear shuttling factor involved in ribosome and melanin biogenesis, was chosen as the target for designing the LAMP primers. The LAMP assay enabled rapid detection of as little as 10 pg of pure genomic DNA of M. oryzae. In addition, we established the quantitative LAMP (q-LAMP) detection system to quantify the conidia ofrice blast fungus. The q-LAMP assay enabled rapid detection (within 35 min) of the fungal spores at a sensitivity of 3.2 spores/ml. In addition, the assay sets up the linearization formula of the standard curve as y = 0.3066 + 15.33* (where x = amplification of time), inferring that spore number = l0°-6Oy. In addition, the q-LAMP assay was successfully used to detect the presence of the virulence strains of M. oryzae (wild type) in comparison with that of the two mutant strains by quantifying the biomass within host tissue. These results provide a useful and convenient tool for detecting M. oryzae that could be applied in the incubation period of rice blast before symptoms appear.
机译:稻瘟是水稻最严重的疾病之一,并控制丝状真菌Magnaporthe Oryzae,导致稻瘟病对全球粮食安全至关重要。通常,早期感染的水稻没有显示出症状。因此,水稻爆炸的早期诊断尤为重要,避免稻瘟病真菌无法控制的繁殖。在本作工作中,开发了一种快速高效的回路介导的等温扩增(灯)方法以检测稻米早熟阶段的病原体。选择超家族假设蛋白MGG_04322,核糖体和黑色素生物发生的核穿梭因子作为设计灯引物的靶标。灯泡测定能够快速地检测为M. Oryzae的10 pg纯基因组DNA。此外,我们建立了定量灯(Q灯)检测系统,以量化红外菌毒性真菌。 Q灯测定能够以3.2孢子/ ml的敏感性快速检测(35分钟内)真菌孢子。另外,测定设定了标准曲线的线性化公式,如y = 0.3066 + 15.33 *(其中x =时间的放大),推断孢子数= l0°-6oy。另外,通过量化宿主组织内的生物质,成功地成功地使用Q灯测定检测M. Oryzae(野生型)的毒力菌株的存在。这些结果为检测M. Oryzae提供了一种有用而方便的工具,可在症状出现之前应用于稻瘟病潜伏期。

著录项

  • 来源
    《Plant Disease》 |2019年第8期|共7页
  • 作者单位

    The Key Laboratory for Quality Improvement of Agricultural Products of Zhejiang Province School of Agricultural and Food Sciences Zhejiang Agriculture and Forest University Hangzhou 311300 China;

    The Key Laboratory for Quality Improvement of Agricultural Products of Zhejiang Province School of Agricultural and Food Sciences Zhejiang Agriculture and Forest University Hangzhou 311300 China;

    The Key Laboratory for Quality Improvement of Agricultural Products of Zhejiang Province School of Agricultural and Food Sciences Zhejiang Agriculture and Forest University Hangzhou 311300 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物保护;
  • 关键词

    loop-mediated isothermal amplification (LAMP); Magna-porthe oryzae; MGG_04322; q-LAMP; rice blast;

    机译:环介导的等温扩增(灯);MAGNA-PORTHE ORYZAE;MGG_04322;Q灯;米爆炸;

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