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柑橘中致病型柑橘痂囊腔菌和非致病型芒果痂囊腔菌的qPCR定量分析

qPCR Quantification of Pathogenic Guignardia citricarpa and Nonpathogenic G. mangiferae in Citrus.

作者信息

Hu Jiahuai, Johnson Evan G, Wang Nan-Yi, Davoglio Tiago, Dewdney Megan M

机构信息

Citrus Research and Education Center, University of Florida, Lake Alfred 33850.

出版信息

Plant Dis. 2014 Jan;98(1):112-120. doi: 10.1094/PDIS-04-13-0465-RE.

Abstract

Citrus black spot, a major citrus disease caused by Guignardia citricarpa, was recently introduced in Florida. The nonpathogenic fungal endophyte G. mangiferae is commonly found in the same citrus tissues as G. citricarpa. Quantitative polymerase chain reaction (qPCR) assays based on internal transcribed spacer (ITS)-1 genes were developed to detect, quantify, and distinguish between these morphologically similar organisms in environmental samples. The primer/probe sets GCITS and GMITS were more than 95% efficient in single-set reactions in complex environmental DNA samples. Detection of 10 fg of G. citricarpa and G. mangiferae DNA was possible. Pycnidiospore disruption resulted in detection of single pycnidiospores with 78 (59 to 102; 95% confidence interval [CI]) and 112 (92 to 136; 95% CI) ITS copies for G. citricarpa and G. mangiferae, respectively. Detection was from partially decomposed leaves where fruiting bodies cannot be morphologically distinguished. Temperature and wetting period have significant effects on Guignardia spp. pseudothecia production in leaf litter. Based on relative biomass or the proportion of nuclei detected, G. citricarpa and G. mangiferae respond more strongly to wetting period than temperature. This qPCR assay will provide additional epidemiological data on black spot in tissues where G. citricarpa and G. mangiferae are not easily distinguished.

摘要

柑橘黑点病是由柑橘球座菌引起的一种主要柑橘病害,最近在佛罗里达州出现。非致病性真菌内生菌芒果球座菌通常与柑橘球座菌存在于相同的柑橘组织中。基于内转录间隔区(ITS)-1基因开发了定量聚合酶链反应(qPCR)检测方法,以检测、定量并区分环境样本中这些形态相似的生物体。引物/探针组GCITS和GMITS在复杂环境DNA样本的单组反应中效率超过95%。能够检测到10 fg的柑橘球座菌和芒果球座菌DNA。分生孢子器破裂后,分别检测到单个分生孢子,柑橘球座菌和芒果球座菌的ITS拷贝数分别为78(59至102;95%置信区间[CI])和112(92至136;95%CI)。检测来自无法从形态上区分子实体的部分分解叶片。温度和湿润期对叶凋落物中球座菌属假囊壳的产生有显著影响。基于相对生物量或检测到的细胞核比例,柑橘球座菌和芒果球座菌对湿润期的反应比对温度的反应更强。这种qPCR检测方法将为在柑橘球座菌和芒果球座菌不易区分的组织中提供有关黑点病的更多流行病学数据。

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