下伏尔加河地区茎秆抗锈病基因Sr25和Sr6Agi有效性的丧失

O. Baranova, S. Sibikeev, A. E. Druzhin, I. Sozina
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引用次数: 4

摘要

小麦是俄罗斯最重要的粮食作物之一。锈病(叶锈病、黄锈病和茎锈病)是威胁粮食安全的特别危险的小麦病害。茎锈病(病原体为生物营养真菌小麦锈病)危害最大;作物损失可达50%至80%甚至更多。本文介绍了2016-2020年伏尔加河下游地区栽培的189个春软小麦品种和11个春软小麦品种的茎锈病抗性分析结果。并介绍了2016-2020年萨拉托夫病原菌种群毒力的植物病理学评估结果。结果表明,Sr13、Sr26、Sr31、Sr35以及Sr24+31、Sr36+31和Sr26+9g基因组合在2016 ~ 2020年的萨拉托夫群体中有效。在多年的研究中,没有发现对Sr31基因系有毒性的分离株。小麦品种和品系的抗性分析显示,Sr6Agi基因的抗性从2016年开始丧失,到2020年Sr25基因的抗性逐渐丧失。2020年,携带Sr25基因的品种(Lebedushka和Dobrynya)和带有该基因的品系在实验室条件下和自然感染背景下影响了萨拉托夫茎锈病种群。在189个渐渗品系中,主要鉴定出Sr25/Lr19(77.2%)和Sr31/Lr26(22.2%)基因,还鉴定出Sr22、Sr35、Sr28、Sr38/Lr37和Sr57/Lr34基因。经鉴定,携带Sr31与Sr25/Lr19和Sr6Agi组合的50个品系对茎锈病具有较高的抗性。结果表明,Sr31基因在伏尔加地区对禾草单孢菌群体有效,而Sr6Agi和Sr25基因在伏尔加地区无效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Loss of effectiveness of stem rust resistance genes Sr25 and Sr6Agi in the Lower Volga region
Wheat is one of the most important food crops in Russia. Rust diseases (leaf, yellow and stem rusts) are particularly dangerous diseases of wheat that threaten food security. The stem rust (the causative agent is a biotrophic fungus Puccinia graminis f. sp. tritici) is the most damaging; crop losses can reach 50 to 80% and more. The paper presents the results of the analysis of resistance to stem rust of 189 introgressive lines of spring soft wheat breeding ARISER and 11 varieties cultivated in the Lower Volga region in the growing season 2016-2020. The results of phytopathological assessment of virulence of Saratov pathogen population 2016-2020 are also presented. It is shown that Sr13, Sr26, Sr31, Sr35 and combinations of Sr24+31, Sr36+31 and Sr26+9g genes are effective for Saratov populations of P. graminis 2016 - 2020. No isolates virulent to the line with the Sr31 gene have been identified in all years of research. Analysis of resistance in wheat varieties and lines showed a loss of Sr6Agi gene efficacy from 2016 and a gradual loss of Sr25 efficacy by 2020. In 2020, varieties carrying the Sr25 gene (Lebedushka and Dobrynya) and lines with this gene affected the Saratov population of stem rust, both under laboratory conditions and in the field on a natural infection background. In the analyzed 189 introgressed lines, Sr25/Lr19 (77.2%) and Sr31/Lr26 (22.2%) genes were mainly identified, Sr22, Sr35, Sr28, Sr38/Lr37 and Sr57/Lr34 genes were also identified. Fifty lines carrying the combination of Sr31 with Sr25/Lr19 and Sr6Agi have been identified as highly resistant to stem rust. Thus, it was shown that Sr31 gene was effective against P. graminis populations in Volga region, while Sr6Agi and Sr25 genes lost their effectiveness in Volga region.
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