Robène Isabelle, Perret Marion, Jouen Emmanuel, Escalon Aline, Maillot Marie-Véronique, Chabirand Aude, Moreau Aurélie, Laurent Annie, Chiroleu Frédéric, Pruvost Olivier
CIRAD, UMR Peuplements Végétaux et Bioagresseurs en Milieu Tropical, CIRAD-Université de la Réunion, Pôle de Protection des Plantes (3P), 7, chemin de l'IRAT, 97410 Saint Pierre, Reunion Island, France.
CIRAD, UMR Peuplements Végétaux et Bioagresseurs en Milieu Tropical, CIRAD-Université de la Réunion, Pôle de Protection des Plantes (3P), 7, chemin de l'IRAT, 97410 Saint Pierre, Reunion Island, France.
J Microbiol Methods. 2015 Jul;114:78-86. doi: 10.1016/j.mimet.2015.04.017. Epub 2015 May 1.
Bacterial blight of onion is an emerging disease threatening world onion production. The causal agent Xanthomonas axonopodis pv. allii is seed transmitted and a reliable and sensitive tool is needed to monitor seed exchanges. A triplex quantitative real-time PCR assay was developed targeting two X. axonopodis pv. allii-specific markers and an internal control chosen in 5.8S rRNA gene from Alliaceae. Amplification of at least one marker indicates the presence of the bacterium in seed extracts. This real-time PCR assay detected all the 79 X. axonopodis pv. allii strains tested and excluded 85.2% of the 135 non-target strains and particularly all 39 saprophytic and pathogenic bacteria associated with onion. Cross-reactions were mainly obtained for strains assigned to nine phylogenetically related X. axonopodis pathovars. The cycle cut-off was estimated statistically at 36.3 considering a risk of false positive of 1%. The limit of detection obtained in at least 95% of the time (LOD 95%) was 5×10(3) CFU/g (colony forming unit/g). The sensitivity threshold was found to be 1 infected seed in 32,790 seeds. This real-time PCR assay should be useful for preventing the long-distance spread of X. axonopodis pv. allii via contaminated seed lots and determining the epidemiology of the bacterium.
洋葱细菌性叶枯病是一种新出现的病害,威胁着全球洋葱生产。病原菌洋葱黄单胞菌洋葱致病变种可通过种子传播,因此需要一种可靠且灵敏的工具来监测种子交易。开发了一种三重定量实时PCR检测方法,该方法针对两个洋葱黄单胞菌洋葱致病变种特异性标记以及从葱科植物5.8S rRNA基因中选择的一个内参。至少一个标记的扩增表明种子提取物中存在该细菌。这种实时PCR检测方法检测了所有79株测试的洋葱黄单胞菌洋葱致病变种菌株,并排除了135株非目标菌株中的85.2%,特别是所有39株与洋葱相关的腐生菌和病原菌。交叉反应主要出现在被归为9个系统发育相关的洋葱黄单胞菌致病变种的菌株中。考虑到1%的假阳性风险,通过统计估计循环阈值为36.3。至少95%的时间内获得的检测限(LOD 95%)为5×10(3) CFU/g(菌落形成单位/克)。发现灵敏度阈值为32790粒种子中有1粒受感染种子。这种实时PCR检测方法对于防止洋葱黄单胞菌洋葱致病变种通过受污染的种子批次远距离传播以及确定该细菌的流行病学情况应该是有用的。