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用于定量番茄植株和烟粉虱中番茄黄化曲叶撒丁岛病毒的实时聚合酶链式反应。

Real-time PCR for the quantitation of Tomato yellow leaf curl Sardinia virus in tomato plants and in Bemisia tabaci.

作者信息

Mason Giovanna, Caciagli Piero, Accotto Gian Paolo, Noris Emanuela

机构信息

Istituto di Virologia Vegetale, Consiglio Nazionale delle Ricerche, Strada delle Cacce 73, 10135 Turin, Italy.

出版信息

J Virol Methods. 2008 Feb;147(2):282-9. doi: 10.1016/j.jviromet.2007.09.015. Epub 2007 Nov 5.

Abstract

Tomato yellow leaf curl Sardinia virus (TYLCSV) (Geminiviridae) is an important pathogen severely affecting tomato production in the Mediterranean basin. Although diagnostic protocols are available for its detection in plants and its vector Bemisia tabaci (Gennadius), suitable tools for estimating and comparing viral loads in plant and insect tissues are needed. In this paper, real-time PCR methods are described for quantitation of TYLCSV in both tomato plant and whitefly extracts. The DNA extraction method was optimised on TYLCSV-infected tomato tissue. The amount of virus was determined using specific primers and probe and standardised to the amount of DNA present in each sample, using selected endogenous tomato or Bemisia genes as internal references. The distribution of TYLCSV was relatively quantified within the four uppermost leaves of plants. An absolute estimation of the amount of TYLCSV in the first leaf below the apex was obtained. The kinetics of virus retention within different batches of viruliferous whiteflies was also analysed. The real-time PCR was 2200-fold more sensitive than membrane hybridisation, allowing detection of as few as 10 viral copies in a sample. These methods are potentially suitable for several applications, such as plant breeding for resistance, analysis of virus replication, and virus-vector interaction studies.

摘要

番茄黄化曲叶撒丁岛病毒(TYLCSV)(双生病毒科)是一种严重影响地中海盆地番茄生产的重要病原体。尽管已有用于在植物及其传毒介体烟粉虱(Gennadius)中检测该病毒的诊断方法,但仍需要合适的工具来估计和比较植物及昆虫组织中的病毒载量。本文描述了用于定量番茄植株和粉虱提取物中TYLCSV的实时PCR方法。DNA提取方法在感染TYLCSV的番茄组织上进行了优化。使用特异性引物和探针测定病毒量,并以选定的番茄或烟粉虱内源性基因作为内参,将其标准化为每个样品中的DNA量。对植株最上部的四片叶内TYLCSV的分布进行了相对定量。获得了对茎尖以下第一片叶中TYLCSV量的绝对估计。还分析了不同批次带毒粉虱体内病毒留存的动力学。实时PCR比膜杂交灵敏2200倍,能够检测出样品中低至10个病毒拷贝。这些方法可能适用于多种应用,如抗病植物育种、病毒复制分析以及病毒-介体相互作用研究。

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