首页> 外文期刊>Plant Disease >Detecting and Differentiating Phytoplasmas Belonging to Subgroups 16SMV-A and 16SHV-D Associated With Lethal Declines of Palms in Florida Using qPCR and High-Resolution Melt Analysis (HRMA)
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Detecting and Differentiating Phytoplasmas Belonging to Subgroups 16SMV-A and 16SHV-D Associated With Lethal Declines of Palms in Florida Using qPCR and High-Resolution Melt Analysis (HRMA)

机译:使用QPCR和高分辨率熔体分析(HRMA)检测和分化属于亚群的卵群和16SHV-D与佛罗里达州甘草的致死下降相关联的16SHV-D.

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摘要

Lethal yellowing (LY) and Texas Phoenix palm decline (TPPD) are two important phytoplasma diseases of palms in Florida. Both have been responsible for major economic losses historically and remain a constant threat to the sustainability of palm production in the landscaping and nursery industries in Florida. These two diseases cause rapid, lethal decline in afflicted palms, so rapid detection and identification is crucial to implement appropriate management strategies to reduce further spread and losses. In this study, a qPCR assay was developed to detect and identify the causal agents of LY and TPPD. Based on sequence data of the 16S gene forthe 16SrIV-A phytoplasma (LY) and the 16SrIV-D phytoplasma (TPPD), two regions were identified in the gene that possessed sufficient variation to yield amplicons with measurable differences in melting temperature based on high resolution melt analysis (HRMA). One region was in the 5' region and the other was located in the 3' region of the gene. Products from both regions yielded amplicons with significantly different melting temperatures between the two phytoplasma strains. This research allows for thedetection and identification of phytoplasmas in palms rapidly by eliminating many lengthy and post-PCR steps commonly used in phytoplasma identification.
机译:致命的泛黄(LY)和德克萨斯州凤凰棕榈(TPPD)是佛罗里达州棕榈树的两个重要植物植物。历史上,两者都对主要经济损失负责,仍然是对佛罗里达州园林绿化和苗圃产业的棕榈生产可持续性的不断威胁。这两种疾病导致痛苦的手掌迅速,致命的下降,因此快速的检测和识别对于实施适当的管理策略来减少进一步的蔓延和损失至关重要。在该研究中,开发了QPCR测定以检测和鉴定LY和TPPD的因果子。基于16S基因的序列数据,在16SRIV-一种柔软的植物(LY)和16SRIV-D植物(TPPD)中,在基因中鉴定出具有足够变化的基因中的两个区域,得到扩增的熔融温度差异,基于高分辨率熔体分析(HRMA)。一个区域在5'区域中,另一个区域位于基因的3'区域中。来自两个地区的产品产生扩增子,两种植物菌株之间具有显着不同的熔化温度。该研究允许通过消除植物鉴定的许多冗长和PCR后步骤来迅速地进行棕榈树植物的植物植物。

著录项

  • 来源
    《Plant Disease》 |2017年第8期|共6页
  • 作者单位

    Department of Entomology and Nematology University of Florida Davie 33314-7719;

    Department of Entomology and Nematology University of Florida Davie 33314-7719;

    Department of Plant Pathology University of Florida Davie 33314-7719;

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

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