Nordic Seed A/S, Grindsnabevej 25, 8300 Odder, Denmark.
Department of Agroecology, Faculty of Technical Sciences, Aarhus University, 4200 Slagelse, Denmark.
Cells. 2021 Dec 27;11(1):64. doi: 10.3390/cells11010064.
Leaf rust constitutes one of the most important foliar diseases in rye ( L.). To discover new sources of resistance, we phenotyped 180 lines belonging to a less well-characterized Gülzow germplasm at three field trial locations in Denmark and Northern Germany in 2018 and 2019. We observed lines with high leaf rust resistance efficacy at all locations in both years. A genome-wide association study using 261,406 informative single-nucleotide polymorphisms revealed two genomic regions associated with resistance on chromosome arms 1RS and 7RS, respectively. The most resistance-associated marker on chromosome arm 1RS physically co-localized with molecular markers delimiting . In the reference genomes Lo7 and Weining, the genomic region associated with resistance on chromosome arm 7RS contained a large number of nucleotide-binding leucine-rich repeat (NLR) genes. Residing in close proximity to the most resistance-associated marker, we identified a cluster of NLRs exhibiting close protein sequence similarity with the wheat leaf rust gene situated on chromosome arm 5DL in wheat, which is syntenic to chromosome arm 7RS in rye. Due to the close proximity to the most resistance-associated marker, our findings suggest that the considered leaf rust gene, provisionally denoted , could be a ortholog in rye.
叶锈病是黑麦(L.)最重要的叶部病害之一。为了发现新的抗性来源,我们在 2018 年和 2019 年在丹麦和德国北部的三个田间试验点对属于不太为人知的古尔佐种质的 180 个品系进行了表型分析。我们观察到在这两年的所有地点,这些品系都具有很高的叶锈病抗性效果。使用 261406 个信息单核苷酸多态性进行的全基因组关联研究显示,分别在染色体臂 1RS 和 7RS 上有两个与抗性相关的基因组区域。在染色体臂 1RS 上与抗性最相关的标记与分子标记物理共定位,这些标记界定了. 在参考基因组 Lo7 和 Weining 中,与染色体臂 7RS 上抗性相关的基因组区域包含大量核苷酸结合亮氨酸丰富重复(NLR)基因。在与最相关的标记密切相关的位置,我们鉴定了一个 NLR 簇,与位于小麦 5DL 染色体臂上的小麦叶锈病基因密切相关,该基因与黑麦的 7RS 染色体臂在小麦中是同源的。由于与最相关的标记密切相关,我们的发现表明,所考虑的叶锈病基因可能是黑麦中的一个 同源基因。