Teagasc, Crop Science Department, Oak Park, R93 XE12 Carlow, Ireland.
AgResearch, Invermay Agricultural Centre, Private Bag, Mosgiel 50034, New Zealand.
Genes (Basel). 2020 Aug 4;11(8):887. doi: 10.3390/genes11080887.
is the causative fungal pathogen of septoria tritici blotch (STB) disease of wheat ( L.) that continuously threatens wheat crops in Ireland and throughout Europe. Under favorable conditions, STB can cause up to 50% yield losses if left untreated. STB is commonly controlled with fungicides; however, a combination of populations developing fungicide resistance and increased restrictions on fungicide use in the EU has led to farmers relying on fewer active substances. Consequently, this serves to drive the emergence of resistance against the remaining chemistries. In response, the use of resistant wheat varieties provides a more sustainable disease management strategy. However, the number of varieties offering an adequate level of resistance against STB is limited. Therefore, new sources of resistance or improved stacking of existing resistance loci are needed to develop varieties with superior agronomic performance. Here, we identified quantitative trait loci (QTL) for STB resistance in the eight-founder "NIAB Elite MAGIC" winter wheat population. The population was screened for STB response in the field under natural infection for three seasons from 2016 to 2018. Twenty-five QTL associated with STB resistance were identified in total. QTL either co-located with previously reported QTL or represent new loci underpinning STB resistance. The genomic regions identified and the linked genetic markers serve as useful resources for STB resistance breeding, supporting rapid selection of favorable alleles for the breeding of new wheat cultivars with improved STB resistance.
是导致小麦叶枯病(STB)的病原菌,这种疾病不断威胁着爱尔兰和整个欧洲的小麦作物。在有利条件下,如果不加以治疗,STB 可导致高达 50%的产量损失。STB 通常用杀菌剂控制;然而,种群对杀菌剂的抗性不断发展以及欧盟对杀菌剂使用的限制增加,导致农民依赖的活性物质减少。因此,这促使对剩余化学物质的抗性不断出现。作为回应,使用抗性小麦品种提供了一种更可持续的疾病管理策略。然而,提供对 STB 足够水平抗性的品种数量有限。因此,需要新的抗性来源或改进现有抗性基因座的组合,以开发具有卓越农艺性能的品种。在这里,我们在 2016 年至 2018 年的三个季节中,在自然感染下,对由 8 个创始人组成的“NIAB Elite MAGIC”冬小麦群体进行了 STB 抗性的数量性状基因座(QTL)鉴定。该群体在田间进行了 STB 响应筛选。共鉴定出与 STB 抗性相关的 25 个 QTL。QTL 要么与先前报道的 QTL 共定位,要么代表新的 STB 抗性基因座。鉴定的基因组区域和连锁的遗传标记可作为 STB 抗性育种的有用资源,支持快速选择有利等位基因,用于培育具有改良 STB 抗性的新小麦品种。