Winter Rye Varieties That Can Be Used as Sources of Resistance against Fungal Diseases in Phytoimmunity Breeding

L. M. Shchekleina, T. K. Sheshegova
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Abstract

The purpose of this study was to identify new sources of nonspecific resistance against most harmful diseases for the purposes of winter rye phytoimmunity breeding. The study was conducted in 2020–2022 in Kirov oblast. More than 140 domestic winter rye varieties were examined against the following infection-provocation backgrounds: snow mold, powdery mildew, brown and stem rust, Septoria leaf blotch, root rot, and ergot. The disease rates were estimated using commonly accepted techniques. The progress of fungal diseases in varietal biocoenoses was analyzed over the course of plant ontogenesis (phases 31 to 85 on the Zadoks growth scale). The plant–microbial interactions and resistance parameters were assessed based on two indices: AUDPC (area under disease progress curve) and RI (resistance index). In total, 28 varieties distinguished by nonspecific resistance to two or more diseases and slow progress of diseases in varietal biocoenoses (the slow rusting trait) were identified: Lika, Garmoniya, Simfoniya, Perepel, Grafit, Grafit FP, Era, Evrika, Vikras, Yantarnaya, Chusovaya, Saratovskaya 7, etc. These varieties can be used as sources in phytoimmunity breeding. Among them, the most high-yielding (840–1060 g/m2) varieties are Batist, Dymka, Perepel, Lika, Simfoniya, Kiprez, Grafit FP, Flora, Evrika, Dana, Marusen’ka, Era, Saratovskaya 7, and Chusovaya. The correlation coefficient (r) between yield capacity and aftergrowth after snow mold damages varies from 0.49 (2022) to 0.87 (2020), which confirms the high harmfulness of this disease in the studied region. The following varieties are of certain immunological value in terms of breeding for ergot resistance: Rada, Kiprez, Flora, Lika, Batist, Garmoniya, Simfoniya, and Chusovaya; compared to the standard and other varieties, they are significantly more resistant to ergot. The composed regression equations are linear (R2 = 0.96–0.99) and indicate daily progress of brown rust (5.4–16.4%) and stem rust (4.7–26.5%).

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在植物免疫育种中可用作抗真菌病源的冬季黑麦品种
摘要 本研究的目的是为冬季黑麦植物免疫育种确定抗最有害病害的非特异性抗性新来源。研究于 2020-2022 年在基洛夫州进行。对 140 多个国内冬季黑麦品种进行了检测,以确定其是否具有以下感染-诱发背景:雪霉病、白粉病、褐锈病和茎锈病、七叶病叶斑病、根腐病和麦角病。病害发生率是用公认的技术估算的。在植物生长过程中(扎多克生长量表中的第 31 期至第 85 期),分析了真菌病害在品种生物群落中的进展情况。植物与微生物的相互作用和抗性参数根据两个指数进行评估:AUDPC(病害进展曲线下面积)和 RI(抗性指数)。总共确定了 28 个品种,它们对两种或两种以上病害具有非特异性抗性,并且在品种生物群落中病害发展缓慢(慢锈性状):Lika、Garmoniya、Simfoniya、Perepel、Grafit、Grafit FP、Era、Evrika、Vikras、Yantarnaya、Chusovaya、Saratovskaya 7 等。这些品种可作为植物免疫育种的来源。其中,产量最高(840-1060 克/平方米)的品种是 Batist、Dymka、Perepel、Lika、Simfoniya、Kiprez、Grafit FP、Flora、Evrika、Dana、Marusen'ka、Era、Saratovskaya 7 和 Chusovaya。雪霉病危害后的产量能力与后生长之间的相关系数(r)从 0.49(2022 年)到 0.87(2020 年)不等,这证实了该病害在研究地区的高危害性。以下品种在抗麦角病育种方面具有一定的免疫学价值:Rada、Kiprez、Flora、Lika、Batist、Garmoniya、Simfoniya 和 Chusovaya;与标准品种和其他品种相比,它们对麦角菌的抗性明显更强。组成的回归方程是线性的(R2 = 0.96-0.99),表明褐锈病(5.4-16.4%)和茎锈病(4.7-26.5%)的日进展情况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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