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Multiplex Real-Time qPCR Assay for Simultaneous and Sensitive Detection of Phytoplasmas in Sesame Plants and Insect Vectors

机译:同时灵敏检测芝麻植物和昆虫载体中植物质的多重实时qPCR分析

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摘要

Phyllody, a destructive and economically important disease worldwide caused by phytoplasma infections, is characterized by the abnormal development of floral structures into stunted leafy parts and contributes to serious losses in crop plants, including sesame (Sesamum indicum L.). Accurate identification, differentiation, and quantification of phyllody-causing phytoplasmas are essential for effective management of this plant disease and for selection of resistant sesame varieties. In this study, a diagnostic multiplex qPCR assay was developed using TaqMan® chemistry based on detection of the 16S ribosomal RNA gene of phytoplasmas and the 18S ribosomal gene of sesame. Phytoplasma and sesame specific primers and probes labeled with different fluorescent dyes were used for simultaneous amplification of 16SrII and 16SrIX phytoplasmas in a single tube. The multiplex real-time qPCR assay allowed accurate detection, differentiation, and quantification of 16SrII and 16SrIX groups in 109 sesame plant and 92 insect vector samples tested. The assay was found to have a detection sensitivity of 1.8 x 102 and 1.6 x 102 DNA copies for absolute quantification of 16SrII and 16SrIX group phytoplasmas, respectively. Relative quantification was effective and reliable for determination of phyllody phytoplasma DNA amounts normalized to sesame DNA in infected plant tissues. The development of this qPCR assay provides a method for the rapid measurement of infection loads to identify resistance levels of sesame genotypes against phyllody phytoplasma disease.
机译:Phyllody是一种全球范围内由植物质浆感染引起的破坏性和经济上重要的疾病,其特征是花艺结构异常发育成发育不良的叶状部分,并导致包括芝麻在内的农作物遭受严重损失(芝麻)。准确识别,区分和量化引起叶病的植物原质对于有效控制这种植物病害和选择抗性芝麻品种至关重要。在这项研究中,基于TaqMan ®化学技术,在检测植物质体的16S核糖体RNA基因和芝麻18S核糖体基因的基础上,开发了诊断性多重qPCR分析方法。质体和芝麻特异性引物以及用不同荧光染料标记的探针用于在单个试管中同时扩增16SrII和16SrIX植物质体。多重实时qPCR测定法可对109种芝麻植物和92种昆虫载体样品中的16SrII和16SrIX组进行准确的检测,区分和定量。发现该测定法对16SrII和16SrIX组植原体的绝对定量分别具有1.8 x 10 2 和1.6 x 10 2 DNA拷贝的检测灵敏度。相对定量对于确定感染植物组织中的芝麻DNA标准化的叶状植原体DNA量是有效和可靠的。该qPCR分析的发展提供了一种快速测量感染负荷的方法,以鉴定芝麻基因型对叶肉质原体病的抗性水平。

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