CSIRO Agriculture and Food, Box 1700, Clunies Ross Street, Canberra, ACT, Australia.
Triticeae Research Institute, Sichuan Agricultural University, 211 Huimin Road, Wenjiang, Chengdu, 611130, Sichuan, China.
Theor Appl Genet. 2020 Nov;133(11):3049-3066. doi: 10.1007/s00122-020-03654-5. Epub 2020 Jul 18.
A stripe rust resistance QTL in durum wheat maps near the bread wheat Yr80 locus with the latter reduced to 15 candidate genes. Some wheat adult plant resistance (APR) genes provide partial resistance in the later stages of plant development to rust diseases and are an important component in protecting wheat crops from these fungal pathogens. These genes provide protection in both bread wheat and durum wheat. Here, we have mapped APR to wheat stripe rust, caused by the fungal pathogen Puccinia striiformis f. sp. tritici, in a cross between durum cultivars Stewart and Bansi. Two resistance QTLs derived from the Stewart parent were identified in multi-generational field trials. One QTL is located on chromosome 1BL and maps to the previously identified Yr29/Lr46/Sr58/Pm39 multi-pathogen APR locus. The second locus, located on chromosome 3BL, maps near the recently described bread wheat APR gene, Yr80. Fine mapping in durum and bread wheat families shows that the durum 3BL locus and Yr80 are closely located, with the later APR gene reduced to 15 candidate genes present in the Chinese Spring genome sequence. Distorted segregation of the durum 3BL region was observed with the Stewart locus preferentially transmitted through pollen when compared with the equivalent Bansi region.
一个在硬质小麦中与抗条锈病基因 Yr80 紧密连锁的数量抗性 QTL 被定位到 15 个候选基因。一些小麦成株期抗性(APR)基因在植物发育后期对锈病提供部分抗性,是保护小麦免受这些真菌病原体侵害的重要组成部分。这些基因在普通小麦和硬质小麦中都有保护作用。在这里,我们将由真菌病原体条锈菌引起的小麦条锈病的 APR 基因定位到了硬质小麦品种 Stewart 和 Bansi 的杂交后代中。在多世代田间试验中,从 Stewart 亲本中鉴定出了两个抗性 QTL。一个 QTL 位于 1BL 染色体上,与先前鉴定的 Yr29/Lr46/Sr58/Pm39 多病原体 APR 基因座定位。第二个位于 3BL 染色体上的基因座,与最近描述的面包小麦 APR 基因 Yr80 非常接近。在硬质小麦和面包小麦家族中的精细定位表明,硬质小麦 3BL 基因座和 Yr80 紧密连锁,后者的 APR 基因被简化为中国春基因组序列中存在的 15 个候选基因。与 Bansi 区域相比,Stewart 区域的硬质小麦 3BL 区域的花粉传递偏好性导致了其分离的扭曲。