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用于特异性快速检测坏死红球菌的环介导等温扩增法和聚合酶链反应法

Loop-Mediated Isothermal Amplification and Polymerase Chain Reaction Methods for Specific and Rapid Detection of Rhodococcus fascians.

作者信息

Serdani M, Curtis M, Miller M L, Kraus J, Putnam M L

机构信息

Department of Botany and Plant Pathology, Oregon State University, Corvallis, OR 97331.

出版信息

Plant Dis. 2013 Apr;97(4):517-529. doi: 10.1094/PDIS-02-12-0214-RE.

Abstract

Rhodococcus fascians is a phytopathogenic actinobacterium which causes leafy galls and other plant distortions that result in economically significant losses to nurseries producing ornamental plants. Traditional assays for detection and identification are time-consuming and laborious. We developed a rapid polymerase chain reaction (PCR) diagnostic assay based on two primer pairs, p450 and fas, which target the fasA and fasD genes, respectively, that are essential for pathogenicity. We also developed a faster, more convenient, loop-mediated isothermal amplification (LAMP) assay targeting the fasR gene, which regulates expression of virulence genes. Both assays were evaluated for sensitivity and specificity in vitro and in planta. The p450 and fas primers amplified DNA only from pure cultures of pathogenic reference isolates of R. fascians. Nonpathogenic isolates and 51 other plant-associated bacteria were not amplified. The PCR primers correctly detected pathogenic R. fascians from 73 of 75 (97%) bacterial strains isolated from naturally infected plants. The PCR assay correctly discriminated between pathogenic R. fascians and other bacteria in 132 of 139 (95%) naturally infected plants, and in 34 of 34 (100%) artificially inoculated plants. The fas primers were slightly more accurate than the p450 primers. The LAMP assay accurately detected pathogenic R. fascians in 26 of 28 (93%) naturally infected plants and did not react with 23 asymptomatic plants. The LAMP primers also amplified product for DNA extracts of 40 of 41 bacterial strains isolated from plants with leafy galls. The detection limit of both the PCR and LAMP assays was approximately 10 CFU/30-μl reaction. These new tools allow fast, reliable, and accurate detection of R. fascians in vitro and in planta. The LAMP assay in particular is a significant advancement in rapid R. fascians diagnostics, and enables those with limited laboratory facilities to confirm the presence of this pathogen in infected plants.

摘要

食酸红球菌是一种植物病原性放线菌,可导致叶瘿和其他植物畸变,给生产观赏植物的苗圃造成重大经济损失。传统的检测和鉴定方法既耗时又费力。我们基于两对引物p450和fas开发了一种快速聚合酶链反应(PCR)诊断检测方法,这两对引物分别靶向致病性所必需的fasA和fasD基因。我们还开发了一种更快、更便捷的环介导等温扩增(LAMP)检测方法,该方法靶向调节毒力基因表达的fasR基因。对这两种检测方法在体外和植物体内的灵敏度和特异性进行了评估。p450和fas引物仅从食酸红球菌致病性参考分离株的纯培养物中扩增出DNA。非致病性分离株和其他51种与植物相关的细菌未被扩增。PCR引物从75株从自然感染植物中分离的细菌菌株中的73株(97%)中正确检测出致病性食酸红球菌。PCR检测方法在139株自然感染植物中的132株(95%)以及34株人工接种植物中的34株(100%)中正确区分了致病性食酸红球菌和其他细菌。fas引物比p450引物略准确。LAMP检测方法在28株自然感染植物中的26株(93%)中准确检测出致病性食酸红球菌,并且与23株无症状植物无反应。LAMP引物还从41株从叶瘿植物中分离的细菌菌株中的40株的DNA提取物中扩增出产物。PCR和LAMP检测方法的检测限均约为10 CFU/30 μl反应。这些新工具能够在体外和植物体内快速、可靠且准确地检测食酸红球菌。特别是LAMP检测方法在食酸红球菌快速诊断方面是一项重大进展,并且使实验室设施有限的人员能够确认感染植物中这种病原体的存在。

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