首页> 外文学位 >Rapid Detection of Grapevine Leafroll-associated virus Type 3 using the reverse transcription loop-mediated amplification method.
【24h】

Rapid Detection of Grapevine Leafroll-associated virus Type 3 using the reverse transcription loop-mediated amplification method.

机译:使用逆转录环介导的扩增方法快速检测3型葡萄叶卷相关病毒。

获取原文
获取原文并翻译 | 示例

摘要

Grapevine Leafroll disease (GLD), one of the most destructive diseases of grapevines, has been found in every country where grapevines are grown. Grapevine Leafroll associated virus type 3 (GLRaV-3), one of several viruses associated with GLD globally, is the most prevalent virus in South African grapevines and therefore control of GLRaV-3 takes high priority in any strategy aimed at control of GLD. GLD can be controlled through the use of an integrated strategy which includes using certified plant material, controlling insect vectors through use of systemic insecticides and the removal of infected vines by roguing. Infected individuals are identified each autumn, using either symptom display (in red cultivars, where infected individuals display interveinal reddening and downward rolling of leaves) or ELISA (in symptomless white cultivars). ELISA is laborious, time consuming and relatively insensitivity compared to molecular techniques and a simpler, more rapid and more sensitive means of indentifying GLRaV-3 infected vines is required.;A simple RNA extraction procedure combined with a single-tube reverse transcriptase loop-mediated amplification (RT-LAMP) has been developed which allows for the rapid, simple detection of GLRaV-3. Using RT-LAMP, a viral target can be amplified in 2 hours under isothermal conditions. This GLRaV-3 specific RT-LAMP uses hydroxy napthol blue (HNB), a colourimetric indicator that changes from violet to sky blue only where a positive RT-LAMP reaction has occurred, making results quick and easy to interpret. The sensitivity of this technique was compared to ELISA and nested PCR by pooling samples at varying ratios of healthy to infected plants. Using nested PCR and RT-LAMP 1 infected sample could be detected amongst 50 healthy individuals while ELISA could only detect 1 amongst 30 infected making RTLAMP more sensitive than ELISA. Further RT-LAMP could be performed in 2 hours compared to nested PCR and ELISA's 8 and 48 hours respectively. Based on these results, RT-LAMP is viable alternative for ELISA for the detection of GLRaV-3 in the field.;RT-LAMP was also tested for its ability to detect GLRaV-3 in grapevine rootstocks where, due to low viral titres and erratic distribution, it is notoriously difficult to detect. The rootstocks which were used for testing of GLRaV-3 had been tested in a previous study and it was found that only 28% of samples tested positive after 33 months (post inoculation). Using RT-LAMP, 78% of samples tested positive for GLRaV-3. Although further testing must be done, RT-LAMP may also be a viable alternative for testing grapevine rootstocks for GLRaV-3 infection.
机译:葡萄卷叶病(GLD)是葡萄藤中最具破坏性的疾病之一,在每个种植葡萄藤的国家都被发现。葡萄叶卷相关病毒3型(GLRaV-3)是全球与GLD相关的几种病毒之一,是南非葡萄中最流行的病毒,因此,在任何旨在控制GLD的策略中,控制GLRaV-3都应被高度重视。 GLD可以通过使用一种综合策略来控制,该策略包括使用经过认证的植物材料,通过使用系统性杀虫剂来控制昆虫媒介以及通过流氓去除被感染的葡萄藤。每年秋天使用症状显示(在红色品种中,感染个体显示出静脉变红和叶片向下滚动)或ELISA(在无症状白色品种中)鉴定感染的个体。与分子技术相比,ELISA费力,费时且相对不敏感,并且需要更简单,更快速和更灵敏的方法来鉴定GLRaV-3感染的葡萄。;简单的RNA提取程序与单管逆转录酶环介导的结合已经开发了扩增(RT-LAMP),可以快速,简单地检测GLRaV-3。使用RT-LAMP,可以在等温条件下2小时内扩增出病毒靶标。这款特定于GLRaV-3的RT-LAMP使用羟基萘酚蓝(HNB),这是一种比色指示剂,仅在发生正性RT-LAMP反应时才从紫色变为天蓝色,从而使结果快速且易于理解。通过以不同比例的健康植物与受感染植物合并样品,将该技术的灵敏度与ELISA和巢式PCR进行了比较。使用巢式PCR和RT-LAMP,可以在50个健康个体中检测到1个感染样本,而ELISA仅能检测30个感染者中的1个,这使得RTLAMP比ELISA更加敏感。相比嵌套PCR和ELISA分别需要8个小时和48个小时,可以在2个小时内执行更多的RT-LAMP。根据这些结果,RT-LAMP是现场检测GLRaV-3的ELISA的可行替代方法; RT-LAMP还检测了其在葡萄砧木中检测GLRaV-3的能力,这是由于病毒滴度低和分布不稳定,众所周知,这很难检测。在先前的研究中对用于测试GLRaV-3的砧木进行了测试,发现33个月后(接种后)只有28%的样品呈阳性。使用RT-LAMP,78%的样品检测到GLRaV-3呈阳性。尽管必须进行进一步的测试,但RT-LAMP可能也是测试葡萄根茎是否感染GLRaV-3的可行选择。

著录项

  • 作者

    Walsh, Helen Ann.;

  • 作者单位

    University of Pretoria (South Africa).;

  • 授予单位 University of Pretoria (South Africa).;
  • 学科 Plant pathology.;Microbiology.
  • 学位 M.S.
  • 年度 2013
  • 页码 100 p.
  • 总页数 100
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号