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番石榴焦腐病菌LAMP检测方法的建立及应用
引用本文:吴敏亮,张溢溪,兰成忠,刘裴清,李本金,陈庆河,,翁启勇. 番石榴焦腐病菌LAMP检测方法的建立及应用[J]. 植物病理学报, 2013, 43(6): 574-580
作者姓名:吴敏亮  张溢溪  兰成忠  刘裴清  李本金  陈庆河    翁启勇
作者单位:1. 福建农林大学植物保护学院,福州 350002;
2.福建省农业科学院植物保护研究所,福州 350013
基金项目:农业部公益性行业(农业)科研专项(200903034);福建省农业科学院科技创新团队建设基金(STIF-Y07);福建省农业科学院博士科研启动基金(2012DBS-2);福建省农业科学院科技重大专项(ZDZX-1302)
摘    要: 以钙黄绿素(calcein)为指示剂,建立了番石榴焦腐病菌(Botryosphaeria rhodina)的环介导等温扩增(Loop mediated isothermal amplification, LAMP)可视化快速检测方法。在该方法中,以番石榴焦腐病菌特异的核糖体转录间隔区(Internal transcribed spacer, ITS)序列为目的DNA片段,设计4条引物(2条内引物、2条外引物),优化LAMP反应条件和反应体系,并进行特异性和灵敏度验证。研究确定最佳反应温度为64℃,反应时间1 h;特异性检测结果显示,15株不同地理来源的番石榴焦腐病菌和10份番石榴焦腐病病果组织LAMP产物均为阳性(绿色),而26株其它病原菌及10份健康番石榴果实组织LAMP产物均为阴性(橘黄色);灵敏度验证结果显示,该方法的检测灵敏度在DNA水平上可达到10 pg。实验结果表明,快速、准确、灵敏的LAMP检测方法适合基层部门及田间检测番石榴焦腐病菌使用。

关 键 词:番石榴  葡萄座腔菌  内转录间隔区  环介导等温扩增  钙黄绿素  

Development of a loop-mediated isothermal amplification assay for detection of Botryosphaeria rhodina
WU Min-liang,ZHANG Yi-xi,LAN Cheng-zhong,LIU Pei-qing,LI Ben-jin,CHEN Qing-he,,WENG Qi-yong. Development of a loop-mediated isothermal amplification assay for detection of Botryosphaeria rhodina[J]. Acta Phytopathologica Sinica, 2013, 43(6): 574-580
Authors:WU Min-liang  ZHANG Yi-xi  LAN Cheng-zhong  LIU Pei-qing  LI Ben-jin  CHEN Qing-he    WENG Qi-yong
Affiliation:1.College of Plant Protection,Fujian Agriculture and Forestry University,Fuzhou 350002, China;
2 Institute of Plant Protection, Fujian Academy of Agricultural Sciences, Fuzhou 350013, China
Abstract:A visual LAMP (Loop-mediated isothermal amplification) detection of Botryosphaeria rhodina was developed with calcein as a fluorescence indicator in this study. Based on the ITS (Internal transcribed spacer) sequence of B. rhodina, a set of four LAMP primers was designed. The reaction conditions were optimized and the specificity and sensitivity of LAMP were assayed. The results showed that the constant temperature of 64℃ for 1 h was the optimum reaction condition of LAMP. Specificity assays showed that the amplification results of 15 isolates of B. rhodina from different background and 10 samples of Psidium guajava fruits infected by B. rhodina were positive, and that of the other 26 pathogens and 10 healthy fruits were negative. The detection limit of LAMP was 10 pg pure genomic DNA per 25 μL reaction. The LAMP assay developed in this study was simple, fast, sensitive and specific, and can be used to detect B. rhodina infected plant tissues in the field.
Keywords:Psidium guajava  Botryosphaeria rhodina  internal transcribed spacer  loop-mediated isothermal amplification  calcein  
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