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Rapid detection of Puccinia triticina causing leaf rust of wheat by PCR and loop mediated isothermal amplification

机译:利用PCR和环介导等温扩增快速检测小麦锈病的小麦锈菌

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摘要

Leaf rust of wheat caused by Puccinia triticina has significant impact on wheat production worldwide. Effective and quick detection methodologies are required to mitigate yield loss and time constraints associated with monitoring and management of leaf rust of wheat. In the present study, detection of P. triticina has been simplified by developing a rapid, reliable, efficient and visual colorimetric method i.e., loop mediated isothermal amplification of DNA (LAMP). Based on in silico analysis of P. triticina genome, PTS68, a simple sequence repeat was found highly specific to leaf rust fungus. A marker (PtRA68) was developed and its specificity was validated through PCR technique which gave a unique and sharp band of 919 bp in P. triticina pathotypes only. A novel gene amplification method LAMP which enables visual detection of pathogen by naked eye was developed for leaf rust pathogen. A set of six primers was designed from specific region of P. triticina and conditions were optimised to complete the observation process in 60 minutes at 65o C. The assay developed in the study could detect presence of P. triticina on wheat at 24 hpi (pre-symptomatic stage) which was much earlier than PCR without requiring thermal cycler. Sensitivity of LAMP assay developed in the study was 100 fg which was more sensitive than conventional PCR (50 pg) and equivalent to qPCR (100 fg). The protocol developed in the study was utilized for detection of leaf rust infected samples collected from different wheat fields. LAMP based colorimetric detection assay showed sky blue color in positive reaction and violet color in negative reaction after addition of 120 μM hydroxyl napthol blue (HNB) solution to reaction mixture. Similarly, 0.6 mg Ethidium bromide/ml was added to LAMP products, placed on transilluminator to witness full brightness in positive reaction and no such brightness could be seen in negative reaction mixture. Further, LAMP products spread in a ladder like banding pattern in gel electrophoresis. Our assay is significantly faster than the conventional methods used in the identification of P. triticina. The assay developed in the study shall be very much useful in the development of diagnostic kit for monitoring disease, creation of prediction model and efficient management of disease.
机译:小麦锈病引起的小麦叶锈病对全世界的小麦产量具有重大影响。需要有效且快速的检测方法来减轻与小麦叶锈病的监测和管理相关的产量损失和时间限制。在本研究中,通过开发一种快速,可靠,有效和可视比色法,即通过环介导的DNA等温扩增(LAMP),简化了小麦假单胞菌的检测。基于小麦白粉病基因组PTS68的计算机分析,发现了一个简单的序列重复序列,对叶锈菌具有高度特异性。开发了一种标记物(PtRA68),并通过PCR技术验证了其特异性,该技术仅在小麦疫病菌致病型中产生了一个独特且清晰的919 bp的条带。针对叶锈病病原体,开发了一种新型的基因扩增方法LAMP,可以通过肉眼目测病原体。从小麦疫霉菌的特定区域设计了一套六种引物,并优化了条件,以在60分钟内于65℃完成观察过程。小麦在24 hpi(有症状的阶段)上出现小麦,比PCR早得多,不需要热循环仪。该研究中开发的LAMP分析的灵敏度为100 fg,比常规PCR(50 pg)更为灵敏,相当于qPCR(100 fg)。该研究开发的方案用于检测从不同麦田收集的叶锈病感染样品。在向反应混合物中加入120μM羟基萘蓝(HNB)溶液后,基于LAMP的比色检测法在阳性反应中显示天蓝色,在阴性反应中显示紫色。同样,将0.6 mg溴化乙锭/ ml添加到LAMP产品中,放置在透射照明器上以在正反应中看到完全的亮度,而在负反应混合物中则看不到这种亮度。此外,LAMP产物在凝胶电泳中以梯状带状分布。我们的测定比用于鉴定小麦疫霉的常规方法快得多。该研究中开发的测定方法将在开发用于监测疾病的诊断试剂盒,创建预测模型和有效管理疾病方面非常有用。

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