Diversity of barley accessions from the Asian part of Russia in greenbug resistance

Q4 Biochemistry, Genetics and Molecular Biology Proceedings on Applied Botany, Genetics and Breeding Pub Date : 2024-01-11 DOI:10.30901/2227-8834-2023-4-215-221
E. Radchenko, R. A. Abdullaev, K. D. Dyatlova, D. E. Akimova, I. A. Zveinek
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Abstract

Background. The use of barley cultivars resistant to greenbug (Schizaphis graminum Rondani) is an effective, economical and ecology-friendly way to control the dangerous phytophage. The insect is able to overcome the resistance of the host plant, which necessitates a relentless search for new genes to ensure reliable protection of barley fields from the pest.Materials and methods. Resistance to the Krasnodar greenbug population was assessed in 345 barley accessions from the Asian part of Russia. Besides, resistance to S. graminum was studied in cv. ‘Post’ (carrier of the Rsg1 gene), a pure line derived from cv. ‘Onokhoisky’ (k-16626, Buryatia) heterogeneous for this trait, and landraces from Mongolia (k-3885, k-3904, and k-4080). Juvenile plants were infested with aphids in the laboratory, and when a susceptible control died, the damage to experimental barley accessions was assessed using a scoring scale. Genetic control of greenbug resistance in the line derived from cv. ‘Onokhoisky’ was studied using the insect’s test clones and an analysis of the segregation in F2 hybrids from crossing the resistant line with cv. ‘Belogorsky’ susceptible to the aphid, when the plants were infested with the Krasnodar population of the phytophage and with clones of S. graminum.Results and conclusions. We identified 7 accessions heterogeneous for aphid resistance. Among them, plants with a high level of greenbug resistance were found in three landraces from Tuva (k-14714, k-14718, and k-14733). Resistance was also clearly expressed in the line derived from cv. ‘Onokhoisky’. This cultivar is protected by a dominant allele that differs from the previously identified Rsg1, as well as from the alleles found in Mongolian landraces k-3904, k-4080, and k-3885. ‘Onokhoisky’ also has genes with low expressivity, which manifest themselves when the main gene for resistance to S. graminum appears ineffective.
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俄罗斯亚洲地区大麦品种在抗绿线虫方面的多样性
背景。使用抗绿蜘蛛(Schizaphis graminum Rondani)的大麦栽培品种是一种有效、经济和生态友好的方法来控制这种危险的噬菌体。这种昆虫能克服寄主植物的抗性,因此有必要不懈地寻找新基因,以确保大麦田受到可靠的保护,免遭虫害。评估了俄罗斯亚洲地区 345 个大麦品种对克拉斯诺达尔绿蝽种群的抗性。此外,还研究了变种'Post'(Rsg1 基因携带者)对禾谷线虫的抗性,该变种是由变种'Onokhoisky'(k-16626,布里亚特)和来自蒙古的陆地品系(k-3885、k-3904 和 k-4080)杂交而来的纯系。在实验室中用蚜虫侵染幼苗,当易感对照死亡时,用评分表评估实验大麦品种的受害情况。利用昆虫试验克隆研究了 "Onokhoisky "品系的抗绿蝽遗传控制,并分析了抗性品系与易感蚜虫的 "Belogorsky "品系杂交的 F2 杂交种的分离情况,当时植株受到蚜虫克拉斯诺达尔种群和禾谷蝇克隆的侵染。我们发现了 7 个具有不同抗蚜性的品种。其中,来自图瓦(Tuva)的三个品系(k-14714、k-14718 和 k-14733)的植株具有较高的抗绿蝽能力。由 "Onokhoisky "变种衍生的品系也具有明显的抗性。该品种受到一个显性等位基因的保护,该等位基因不同于之前确定的 Rsg1,也不同于在蒙古陆地品种 k-3904、k-4080 和 k-3885 中发现的等位基因。'Onokhoisky'还具有低表达性基因,当抗禾谷镰刀菌的主要基因出现失效时,这些基因就会表现出来。
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来源期刊
Proceedings on Applied Botany, Genetics and Breeding
Proceedings on Applied Botany, Genetics and Breeding Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
0.70
自引率
0.00%
发文量
65
审稿时长
12 weeks
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