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基于环介导等温扩增技术(LAMP)检测引起甘蔗赤腐病的镰刀状炭疽菌。

Loop-mediated isothermal amplification (LAMP) based detection of Colletotrichum falcatum causing red rot in sugarcane.

作者信息

Chandra Amaresh, Keizerweerd Amber T, Que Youxiong, Grisham Michael P

机构信息

USDA-ARS, MSA, Sugarcane Research Laboratory, Houma, LA, 70360, USA.

出版信息

Mol Biol Rep. 2015 Aug;42(8):1309-16. doi: 10.1007/s11033-015-3875-9. Epub 2015 Apr 11.

Abstract

Red rot, caused by Colletotrichum falcatum, is a destructive disease prevalent in most sugarcane-producing countries. Disease-free sugarcane planting materials (setts) are essential as the pathogen spreads primarily through infected setts. The present study was undertaken to develop a loop-mediated isothermal amplification (LAMP) assay for the detection of C. falcatum. C. falcatum genomic DNA was isolated from pure mycelium culture and infected tissues. Four sets of primers corresponding to a unique DNA sequence specific to C. falcatum were designed. Specificity of the LAMP test was checked with DNA of another fungal pathogen of sugarcane, Puccinia melanocephala, as well as two closely-related species, Colletotrichum fructivorum and Colletotrichum acutatum. No reaction was found with the three pathogens. When C. falcatum DNA from pure culture was used in a detection limit analysis, sensitivity of the LAMP method was observed to be ten times higher than that of conventional PCR; however, sensitivity was only 5 times higher when DNA from C. falcatum-infected tissues was used. Using the LAMP assay, C. falcatum DNA is amplified with high specificity, efficiency, and rapidity under isothermal conditions. Moreover, visual judgment of color change in <1 h without further post-amplification processing makes the LAMP method convenient, economical, and useful in diagnostic laboratories and the field.

摘要

由甘蔗炭疽菌引起的赤腐病是一种在大多数甘蔗生产国普遍存在的毁灭性病害。无病甘蔗种植材料(蔗茎)至关重要,因为该病原体主要通过受感染的蔗茎传播。本研究旨在开发一种环介导等温扩增(LAMP)检测方法来检测甘蔗炭疽菌。从纯菌丝体培养物和受感染组织中分离出甘蔗炭疽菌基因组DNA。设计了四组对应于甘蔗炭疽菌特有的独特DNA序列的引物。用甘蔗另一种真菌病原体黑孢柄锈菌以及两个密切相关的物种,即果生炭疽菌和尖孢炭疽菌的DNA来检查LAMP检测的特异性。未发现与这三种病原体发生反应。当使用来自纯培养物的甘蔗炭疽菌DNA进行检测限分析时,观察到LAMP方法的灵敏度比传统PCR高10倍;然而,当使用来自受甘蔗炭疽菌感染组织的DNA时,灵敏度仅高5倍。使用LAMP检测方法,甘蔗炭疽菌DNA在等温条件下以高特异性、高效率和快速性进行扩增。此外,在无需进一步扩增后处理的情况下,在<1小时内通过颜色变化进行视觉判断,使得LAMP方法在诊断实验室和现场既方便、经济又实用。

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