首页> 外文期刊>Plant Disease >Development of Three Loop-Mediated Isothermal Amplification (LAMP) Assays for the Rapid Detection of Calonectria ilicicola, Dactylonectria macrodidyma, and the Dactylonectria Genus in Avocado Roots
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Development of Three Loop-Mediated Isothermal Amplification (LAMP) Assays for the Rapid Detection of Calonectria ilicicola, Dactylonectria macrodidyma, and the Dactylonectria Genus in Avocado Roots

机译:三种环路介导的等温扩增(灯)测定的钙焦伊硅,DactyloneCritia Macrodidyma和鳄梨根的Dactylonectia Genus的快速检测

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Black root rot of avocado is a severe disease of nursery trees and young orchard transplants, causing tree death within a year after planting. In Australia, key pathogens include species complexes Calonectria ilicicola and Dactylonectria macrodidyma;however, several other Dactylonectria species also cause the disease. Rapid detection of these pathogens in planta is important to speed up implementation of disease management and reduce loss. The purpose of this study was to develop three loop-mediatedisothermal amplification (LAMP) diagnostic assays to rapidly identify species within the C. ilicicola and D. macrodidyma complexes and species in the Dactylonectria genus in avocado roots. Primers were designed from p-tubulin sequence data of C. ilicicola and from histone H3 of D. macrodidyma and the Dactylonectria genus. The LAMP primers were tested for specificity and sensitivity with 82 fungal isolates, which included the target species complexes C. ilicicola and D. macrodidyma; species within the target Dactylonectria genus viz. D. macrodidyma, D. anthuriicola, D. novozelandica, D. pauciseptata, and D. vitis; and isolates of nontarget species, including Calonectria sp., Cyllndrocla-dielia sp., Gliocladiopsis forsbergii, G. peggii, G. whileyi. llyoneclria sp., Mariannaea sp., Fusarium sp., and Phytophthora cinnamomi. The species-specific LAMP assays were sensitive and specific at DNA concentrations of 1 pg/u.1 for C. ilicicola and 0.01 ng/|xl for D. macrodidyma,whereas the Dactylonectria genus-wide assay was sensitive to 0.1 ng/u.1. Detection of C. ilicicola occurred within 10 to 15 or 15 to 30 min when the template was pure DNA or crude extracts obtained from suspending fungal cultures in sterile water, respectively. Detection of D. macrodidyma was between 12 to 29 min with pure DNA and 16 to 30 min with crude extracts. Dactylonectria spp. were detected within 6 to 25 min with pure DNA and 7 to 23 min with crude extracts. The specificity of the assays was found to be dependent on time and isothermal amplification temperature, with optimal specificity occurring in reactions of <30 min and at temperatures of 67°C for C. ilicicola and D. macrodidyma assays and 69°C for Dactylonectria genus-wide assays. The assays were modified to accommodate a DNA extraction step and use of avocado roots as DNA templates. Detection in avocado roots ranged between 12 to 25 min for C. ilicicola, 12 to 26 min for D. macrodidyma, and 14 to 30 min for species in the Dactylonectria genus. The LAMP assays are applicable across multiple agricultural industries, because C. ilicicola, D. macrodidyma, and Dactylonectria spp. are also important pathogens of various crops and ornamental plants.
机译:鳄梨的黑根腐烂是幼儿园和果园移植的严重疾病,在种植后一年内导致树脂。在澳大利亚,关键病原体包括种类复合物Calonectres Ilicicola和Dactylonectia Macrodidyma;然而,其他几种DartyloneCritia物种也会导致疾病。在Planta中快速检测这些病原体对于加速疾病管理并减少损失是重要的。该研究的目的是在鳄梨根中的Daytylonectria Genus中发育三种环介导热扩增(灯)诊断测定以快速识别C. Ilicicola和D. macrodidyma复合物和物种中的物种。从C.Ichulin序列数据和D.Macrodidyma的组蛋白H3和Dactylonectria属的组蛋白H3设计引物。用82个真菌分离株测试灯引物的特异性和敏感性,其中包括靶物种复合物C.Ilicicola和D. macrodidyma;目标DactyloneCritia Genus viz中的物种。 D. macrodidyma,D.Anthuriicola,D. Novozelandica,D.Pauciseptata和D.Vitis;和孤立的Nontarget物种,包括Calonectria Sp.,Cyllndrocla-dielia sp.,Gliocladiopsis forsbergii,G.Peggii,G. witlyi。 Llyoneclria sp。,mariannaea sp。,镰刀菌Sp。和phytophthora cinnamomi。物种特异性灯测定是敏感的,并且在DNA浓度为1pg / U.1的DNA浓度为C. ilicicola和0.01ng / HiON的D. macrodidyma,而DactyloneCrits Genus-宽的测定敏感于0.1ng / u。 1。当模板是纯DNA或从无菌水中的悬浮真菌培养物中获得的纯DNA或粗提取物,检测在10至15或15至30分钟内发生。 D. macrodidyma的检测在12至29分钟之间,纯DNA和粗提取物的16至30分钟。 dactylonectria spp。用纯DNA在6至25分钟内检测到7至23分钟,粗提取物。发现测定的特异性依赖于时间和等温扩增温度,在<30分钟和67℃的温度下发生最佳特异性,对于C. Ilicicola和D. macrodidyma测定和69°C用于Dactylonectria属的69℃ -Wide测定。修饰该测定以适应DNA提取步骤并使用鳄梨根作为DNA模板。鳄梨根部的检测在12至25分钟的髂硅,12至26分钟的D. macRodidyma,14至30分钟,在Dactylonectria Genus中的物种。灯泡测定适用于多个农业产业,因为C. Ilicicola,D. macrodidyma和Dactyloneastia SPP。也是各种作物和观赏植物的重要病原体。

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