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用于检测大豆叶片中菊池尾孢菌的定量聚合酶链反应检测方案的开发及其在记录杀菌剂应用对潜伏感染影响方面的应用。

Development of a Quantitative Polymerase Chain Reaction Detection Protocol for Cercospora kikuchii in Soybean Leaves and Its Use for Documenting Latent Infection as Affected by Fungicide Applications.

作者信息

Chanda A K, Ward N A, Robertson C L, Chen Z-Y, Schneider R W

出版信息

Phytopathology. 2014 Oct;104(10):1118-24. doi: 10.1094/PHYTO-07-13-0200-R.

DOI:10.1094/PHYTO-07-13-0200-R
PMID:24805074
Abstract

Cercospora leaf blight (CLB) of soybean, caused by Cercospora kikuchii, is a serious disease in the southern United States. A sensitive TaqMan probe-based real-time quantitative polymerase chain reaction (qPCR) assay was developed to specifically detect and quantify C. kikuchii in naturally infected soybean plants. The sensitivity was 1 pg of genomic DNA, which was equivalent to about 34 copies of genome of C. kikuchii. Using this qPCR assay, we documented a very long latent infection period for C. kikuchii in soybean leaves beginning at the V3 growth stage (as early as 22 days after planting). The levels of biomass of C. kikuchii remained low until R1, and a rapid increase was detected from the R2/R3 to R4/R5 growth stages shortly before the appearance of symptoms at R6. The efficacy of various fungicide regimens under field conditions also was evaluated over a 3-year period using this qPCR method. Our results showed that multiple fungicide applications beginning at R1 until late reproductive stages suppressed the development of C. kikuchii in leaves and delayed symptom expression. Different fungicide chemistries also had differential effects on the amount of latent infection and symptom expression during late reproductive growth stages.

摘要

由菊池尾孢菌引起的大豆尾孢叶枯病是美国南部的一种严重病害。开发了一种基于TaqMan探针的灵敏实时定量聚合酶链反应(qPCR)检测方法,用于特异性检测和定量自然感染大豆植株中的菊池尾孢菌。灵敏度为1 pg基因组DNA,相当于约34个菊池尾孢菌基因组拷贝。使用这种qPCR检测方法,我们记录了菊池尾孢菌在大豆叶片中从V3生长阶段(最早在种植后22天)开始的很长的潜伏感染期。菊池尾孢菌的生物量水平在R1之前一直较低,在R6出现症状前不久,从R2/R3到R4/R5生长阶段检测到其迅速增加。还使用这种qPCR方法在3年时间内评估了田间条件下各种杀菌剂方案的效果。我们的结果表明,从R1开始直到生殖后期进行多次杀菌剂处理可抑制叶片中菊池尾孢菌的发展并延迟症状表现。不同的杀菌剂化学类型对生殖后期潜伏感染量和症状表现也有不同影响。

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Diagnosis of Soybean Diseases Caused by Fungal and Oomycete Pathogens: Existing Methods and New Developments.由真菌和卵菌病原体引起的大豆病害诊断:现有方法与新进展
J Fungi (Basel). 2023 May 18;9(5):587. doi: 10.3390/jof9050587.
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The AVR4 effector is involved in cercosporin biosynthesis and likely affects the virulence of Cercospora cf. flagellaris on soybean.
AVR4 效应子参与了尾孢菌素生物合成,并可能影响 Cercospora cf. flagellaris 对大豆的毒力。
Mol Plant Pathol. 2020 Jan;21(1):53-65. doi: 10.1111/mpp.12879. Epub 2019 Oct 23.