Department of Plant Genetics, Breeding and Biotechnology, Institute of Biology, Warsaw University of Life Sciences, Nowoursynowska 166, 02-787 Warszawa, Poland.
Plant Breeding and Acclimatization Institute-National Research Institute, Radzikow, 05-870 Blonie, Poland.
Genes (Basel). 2024 Feb 22;15(3):275. doi: 10.3390/genes15030275.
Leaf rust (LR) caused by f. sp. () is a highly destructive disease in rye. However, the genetic mechanisms underlying the rye immune response to this disease remain relatively uncharacterised. In this study, we analysed the expression of four genes in 12 rye inbred lines inoculated with at 20 and 36 h post-treatment (hpt): (1-deoxy-D-xylulose 5-phosphate synthase), (β-1,3-glucanase), (UDP-glycosyltransferase) and (pathogenesis-related protein 1). The RT-qPCR analysis revealed the upregulated expression of the four genes in response to in all inbred lines and at both time-points. The gene expression data were supported by microscopic and macroscopic examinations, which revealed that eight lines were susceptible to LR and four lines were highly resistant to LR. A relationship between the infection profiles and the expression of the analysed genes was observed: in the resistant lines, the expression level fold changes were usually higher at 20 hpt than at 36 hpt, while the opposite trend was observed in the susceptible lines. The study results indicate that , , and may encode proteins crucial for the rye defence response to the LR pathogen.
叶片锈病(LR)由 f. sp. ()引起,是黑麦的一种极具破坏性的疾病。然而,黑麦对这种疾病的免疫反应的遗传机制仍相对不明确。在这项研究中,我们分析了在接种 后 20 和 36 小时(hpt)时,12 个黑麦自交系中四个基因的表达情况:(1-脱氧-D-木酮糖 5-磷酸合酶)、(β-1,3-葡聚糖酶)、(UDP-糖基转移酶)和 (病程相关蛋白 1)。RT-qPCR 分析显示,所有自交系在两个时间点均对 表现出四个基因的上调表达。基因表达数据得到了微观和宏观检查的支持,这些检查揭示了 8 个系对 LR 敏感,而 4 个系对 LR 高度抗性。观察到感染谱与分析基因表达之间存在关系:在抗性系中,20 hpt 的表达水平变化倍数通常高于 36 hpt,而在敏感系中则相反。研究结果表明,、、和 可能编码对黑麦防御 LR 病原体反应至关重要的蛋白质。