Bandamaravuri Kishore Babu, Nayak Ashish K, Bandamaravuri Anu Sharma, Samad Abdul
Department of Plant Pathology, Crop Protection Division, CSIR-Central Institute of Medicinal and Aromatic Plants, Lucknow, 226015, India.
Microbial Genomics and Diagnostics Lab, Plant Pathology and Microbiology Division, Regional Plant Resource Centre, Bhubaneswar, Odisha, 751015, India.
AMB Express. 2020 Aug 3;10(1):135. doi: 10.1186/s13568-020-01071-x.
Powdery mildew and downy mildew are two devastating diseases on cucumber and other cucurbit crops caused by Podosphaera xanthii and Pseudoperonospora cubensis, respectively. Identification and detection of these pathogens from field and plant material could be significant for the selection of resistant varieties and formulation of disease management strategies. In the present study, a duplex qPCR assay developed for simultaneous detection and quantification of both pathogens from different samples. Two sets of species-specific primers developed for the detection of P. xanthii and P. cubensis pathogens by targeting the internal transcribed spacer (ITS) region of the rDNA gene cluster. The specificity of designed primers was also evaluated against the different microbial, plant, soil, and environmental samples. Initially, the individual assays for P. cubensis and P. xanthii were validated using their corresponding species-specific primers, which amplified the prominent and distinctive products of ~ 705 bp and ~ 290 bp size, respectively. SYBR green-based duplex real-time PCR assay was developed to detect and quantify both mildew pathogens from different field samples. The species-specific oligonucleotide primer sets showed high specificity with melt curve peaks at 85.83 °C and 88.05 °C, for P. xanthii and P. cubensis, respectively. The relative quantification and lowest detection limit of qPCR assays using tenfold diluted plasmid (Csp1 and Csd1) DNA were estimated (0.1 pg/µl) through a standard curve. In this study, the species-specific PCR and qPCR assays in both simplex and duplex formats have been validated successfully. These assays could be useful for efficient detection and quantification of mildew pathogens from the cucumber and other cucurbit crops.
白粉病和霜霉病分别是由瓜单囊壳白粉菌和古巴假霜霉菌引起的黄瓜及其他葫芦科作物的两种毁灭性病害。从田间和植物材料中鉴定和检测这些病原体对于抗性品种的选择和病害管理策略的制定具有重要意义。在本研究中,开发了一种双重定量聚合酶链反应(qPCR)检测方法,用于同时检测和定量不同样品中的两种病原体。针对瓜单囊壳白粉菌和古巴假霜霉菌病原体,通过靶向核糖体DNA(rDNA)基因簇的内部转录间隔区(ITS)区域,设计了两组物种特异性引物。还针对不同的微生物、植物、土壤和环境样品评估了所设计引物的特异性。最初,使用相应的物种特异性引物对古巴假霜霉菌和瓜单囊壳白粉菌的单独检测方法进行了验证,这两种引物分别扩增出大小约为705 bp和290 bp的显著且独特的产物。开发了基于SYBR Green的双重实时qPCR检测方法,以检测和定量不同田间样品中的两种霜霉病原体。物种特异性寡核苷酸引物组分别对瓜单囊壳白粉菌和古巴假霜霉菌显示出高特异性,熔解曲线峰分别在85.83 °C和88.05 °C。通过标准曲线估计了使用十倍稀释的质粒(Csp1和Csd1)DNA进行qPCR检测的相对定量和最低检测限(0.1 pg/µl)。在本研究中,单重和双重形式的物种特异性PCR和qPCR检测方法均已成功验证。这些检测方法可用于高效检测和定量黄瓜及其他葫芦科作物中的霜霉病原体。