研究新西伯利亚地区环境条件下普通小麦品种的叶锈病抗性、作物产量和谷物品质。

IF 0.9 Q3 AGRICULTURE, MULTIDISCIPLINARY
L P Sochalova, V A Aparina, N I Boyko, E V Zuev, E V Morozova, K K Musinov, N A Vinichenko, I N Leonova, V V Piskarev
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引用次数: 0

摘要

品种的基因型、环境条件和植物病原菌负载量之间的关系是促成高产的关键因素,在选择抗性和高价值性状表现的供体时应加以考虑。对 49 个普通小麦品种的叶锈病抗性研究是在田间自然病原背景下和实验室条件下,利用对 Lr9 和 Lr24 具有致病力的单穗状病毒分离物进行的。结果表明,携带外来基因 Lr6Agi2(Tulaikovskaya 10)和 Lr6Agi1(Voevoda)的品种在田间和实验室均能抵抗叶锈病感染。品种 KWS Buran、KWS Akvilon、KW 240-3-13 和 Etyud 的作物产量从 417 克/平方米到 514 克/平方米不等,与最佳标准品种 Sibirskaya 17 相当,可以在西西伯利亚条件下合理用作 Lr24 抗性基因供体。鄂木斯克 44 品种的作物产量为 440 克/平方米,可用作 Lr19 和部分有效的 Lr26 的供体。建议将基因组中含有 Lr9 的品种 Tuleevskaya 和 Altayskaya 110 用于抗性基因阵列基因型的开发。CS2A/2M 样本的蛋白质和面筋含量最高,而 KWS Buran、Altayskaya 110、Volgouralskaya 和 KWS Akvilon 的蛋白质和面筋含量最低。在采集的普通小麦样本中,CS2A/2M、Tulaikovskaya 10、Pavon 和 Tuleevskaya 的微量元素(铜、锰、锌、铁)和大量元素(钙、镁、钾)含量最高,而 KWS Buran、Novosibirskaya 15 和 Volgouralskaya 的大多数元素含量最低。在感染背景下表现出抗叶锈病性的冬季品种通常带有成株抗性基因(Lr34、Lr12 和 Lr13),特别是与幼株 Lr26 基因结合在一起。尽管基因型中存在 Lr24,但冬季型品系(KS 93 U 62)中 Lr41 的存在使其能够保持对叶锈病病原体克隆 kLr24 的抗性。多卡(Doka)和切什斯卡娅 17(Cheshskaya 17)这两个品种可以作为抗性基因 Lr26 + Lr34 和 Lr9 + Lr12 + Lr13 + Lr34 的供体,也可以作为在西西伯利亚条件下矮化而不损失耐寒性和产量的来源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Studying a collection of common-wheat varieties for leaf rust resistance, crop yield and grain quality in the environmental conditions of Novosibirsk region.

The relationship between a variety's genotype, environmental conditions and phytopathogenic load are the key factors contributing to high yields that should be taken into account in selecting donors for resistance and high manifestation of valuable traits. The study of leaf rust resistance in 49 common wheat varieties was carried out in the field against the natural pathogen background and under laboratory conditions using single-pustule isolates with virulence to Lr9 and Lr24. It has been shown that the varieties carrying alien genes Lr6Agi2 (Tulaikovskaya 10) and Lr6Agi1 (Voevoda) were resistant to leaf rust infection both in the field and in the laboratory. Varieties KWS Buran, KWS Akvilon, KW 240-3-13, and Etyud producing crop yields from 417 to 514 g/m2 comparable to the best standard variety Sibirskaya 17 can be reasonably used as Lr24 resistance gene donors under West Siberian conditions. Omskaya 44 variety showing crop yield of 440g/m2 can be used as a donor for Lr19 and partially effective Lr26. Varieties Tuleevskaya and Altayskaya 110 with Lr9 in their genomes are recommended for the development of resistance gene-pyramided genotypes. The highest protein and gluten contents were observed in the CS2A/2M sample, while KWS Buran, Altayskaya 110, Volgouralskaya, and KWS Akvilon showed the lowest values. Varieties CS2A/2M, Tulaikovskaya 10, Pavon, and Tuleevskaya were ranked the highest in micro- (Cu, Mn, Zn, Fe) and macronutrient (Ca, Mg, K) contents among the common wheat samples from the collection, while the lowest values for most elements were observed in KWS Buran, Novosibirskaya 15, and Volgouralskaya. Winter varieties demonstrating leaf rust resistance against the infectious background typically carry adult plant resistance genes (Lr34, Lr12, and Lr13), particularly combined with the juvenile Lr26 gene. The presence of Lr41 in a winter type line (KS 93 U 62) allowed it to maintain resistance against a leaf rust pathogen clone kLr24, despite the presence of Lr24 in the genotype. Varieties Doka and Cheshskaya 17 may act as donors of resistance genes Lr26 + Lr34 and Lr9 + Lr12 + Lr13 + Lr34, as well as sources of dwarfing without losses in winter hardiness and yield under West Siberian conditions.

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来源期刊
Vavilovskii Zhurnal Genetiki i Selektsii
Vavilovskii Zhurnal Genetiki i Selektsii AGRICULTURE, MULTIDISCIPLINARY-
CiteScore
1.90
自引率
0.00%
发文量
119
审稿时长
8 weeks
期刊介绍: The "Vavilov Journal of genetics and breeding" publishes original research and review articles in all key areas of modern plant, animal and human genetics, genomics, bioinformatics and biotechnology. One of the main objectives of the journal is integration of theoretical and applied research in the field of genetics. Special attention is paid to the most topical areas in modern genetics dealing with global concerns such as food security and human health.
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