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发展检测草莓植株和土壤中丝核菌的分子方法。

Development of Molecular Methods to Detect Macrophomina phaseolina from Strawberry Plants and Soil.

机构信息

First, second, third, and fifth authors: Crop Improvement and Protection Research Unit, United States Department of Agriculture-Agricultural Research Service, Salinas, CA; and fourth author: TriCal Diagnostics, Hollister, CA.

出版信息

Phytopathology. 2018 Dec;108(12):1386-1394. doi: 10.1094/PHYTO-03-18-0071-R. Epub 2018 Oct 31.

Abstract

Macrophomina phaseolina is a broad-host-range fungus that shows some degree of host preference on strawberry, and causes symptoms that include crown rot and root rot. Recently, this pathogen has affected strawberry production as fumigation practices have changed, leaving many growers in California and around the world in need of accurate, rapid diagnostic tools for M. phaseolina in soil and infected plants. This study uses next-generation sequencing and comparative genomics to identify a locus that is unique to isolates within a main genotype shared by a majority of isolates that infect strawberry. This locus was used to develop a quantitative single-tube nested TaqMan polymerase chain reaction assay which is able to quantify as little as 2 to 3 microsclerotia/g of soil with 100% genotype specificity. An isothermal assay using recombinase polymerase amplification was developed from the same locus and has been validated on over 200 infected strawberry plants with a diagnostic sensitivity of 93% and a diagnostic specificity of 99%. Together, this work demonstrates the value of using new approaches to identify loci for detection and provides valuable diagnostic tools that can be used to monitor soil and strawberry plant samples for M. phaseolina.

摘要

尖孢镰刀菌是一种广泛宿主范围的真菌,在草莓上表现出一定程度的宿主偏好性,并引起包括冠腐和根腐在内的症状。最近,由于熏蒸实践的改变,这种病原体影响了草莓的生产,使得加利福尼亚州和世界各地的许多种植者都需要一种准确、快速的土壤和感染植物中尖孢镰刀菌的诊断工具。本研究利用下一代测序和比较基因组学,鉴定了一个独特的基因座,该基因座存在于主要基因型的菌株中,而大多数感染草莓的菌株都具有该基因型。该基因座被用于开发一种定量单管嵌套 TaqMan 聚合酶链反应检测方法,该方法能够定量检测土壤中低至 2 到 3 个微菌核/g,具有 100%的基因型特异性。来自同一基因座的等温重组酶聚合酶扩增检测方法已得到验证,可用于 200 多株感染草莓植株,其诊断灵敏度为 93%,诊断特异性为 99%。总之,这项工作展示了使用新方法鉴定检测基因座的价值,并提供了有价值的诊断工具,可用于监测土壤和草莓植株样本中的尖孢镰刀菌。

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