Molecular Diagnostics of the Wheat Leaf Spot Complex Using the β-Tubulin 1 Gene

生物 分子诊断学 基因 多路复用 多重聚合酶链反应 病菌 限制性片段长度多态性 遗传学 计算生物学 叶斑病 真菌病原 聚合酶链反应 分子探针 基因组 分子标记 稳健性(进化) 分子生物学 接种 限制性酶 基因组学 格拉米菌球 子囊菌纲 宿主特异性 遗传标记 普通小麦 诊断试验 PCR变异 禾本科 生物技术 斑点
作者
Mohamed Hafez,D. González-Peña Fundora,R. Gourlie,M. Zid,E. Gunn,R. Aboukhaddour
出处
期刊:Phytopathology [American Phytopathological Society]
标识
DOI:10.1094/phyto-04-25-0156-r
摘要

The wheat leaf spot complex is a globally pervasive foliar disease caused by multiple fungal pathogens: Pyrenophora tritici-repentis (tan spot), Parastagonospora nodorum and Parastagonospora pseudonodorum (septoria nodorum blotch), Zymoseptoria tritici (septoria tritici blotch), and Bipolaris sorokiniana (spot blotch). Diagnostic challenges arise from overlapping symptoms and similar morphologies. We evaluated previously released molecular diagnostic tools and found that they either lacked specificity or failed to detect all species in the complex. Existing methods target different multicopy genomic regions and lacks validation against other wheat-associated pathogens. To overcome these limitations, we developed a detection tool targeting a single copy, conserved gene (β-tubulin 1, tub1) across all species. Species-specific primers were designed for multiplex PCR (mPCR) and TaqMan-based real-time quantitative PCR (qPCR), enabling sensitive, specific, and simultaneous quantification. The qPCR accurately quantified pathogen biomass with detection limits down to 0.04 pg of fungal DNA. We further showed that assays were highly accurate and species-specific when tested on wheat tissues inoculated under controlled conditions with defined single-species or mixed infections, as well as on naturally infected samples. PCR-restriction fragment length polymorphism (PCR-RFLP) analysis with selected restriction enzymes further distinguished species with unique cleavage patterns, providing an easy to use and clear identification system. Moreover, we confirmed that the assays do not cross detect barley-associated species such as the barley leaf spot pathogen Pyrenophora teres, ensuring robustness for use where host overlaps occurs. This comprehensive diagnostic provides a rapid and reliable detection, quantification of these pathogens, supporting improved disease diagnosis and enhance breeding for resistance.

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