Молекулярно-генетическая характеристика образцов озимой мягкой пшеницы в связи с селекцией на устойчивость к полеганию

Е. А. Сычёва, Е. Б. Бондаревич, Л. А. Соловей, В. Е. Шимко, С. И. Гордей, И. В. Сацюк, Н. И. Дубовец
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Abstract

The objective of the study was to analyze the genomic structure and allelic composition of the dwarfing Rht-B1, Rht-D1 and Rht8 genes in 37 varieties and breeding samples of soft winter wheat in connection with breeding for lodging resistance in the Republic of Belarus. The molecular cytogenetic marking (C-banding) and DNA typing of genotypes were used. As a result, the analysis of the chromosomal composition of the breeding material showed that 21 winter wheat samples are characterized by the standard karyotype with the genomic structure AABBDD (2n = 42). Five variants of translocations affecting the chromosomes 1B, 3B, 5B, 6B, and 7B were revealed in the karyotypes of the remaining samples. It was found that the chromosomes of the 2nd and 4th homologous groups, in which the main dwarfing genes (Rht-B1, Rht-D1, and Rht8) are localized, did not undergo structural changes. Genotyping showed that 45.9 % of the samples contain one of the dwarfing alleles (Rht-B1b, Rht-D1b, Rht8c) in their genotype. A combination of two commercially significant alleles (Rht-B1b and Rht8c) in the genotype were identified in one of the winter wheat samples. The genotype with a combination of the Rht-B1a, Rht-D1a and Rht8b alleles occurred with the highest frequency (37.8 %) in the analysed breeding material. The Rht-B1b, Rht-D1a, Rht8b; Rht-B1a, Rht-D1a, Rht8a genotypes showed the frequency of 16.2 %. The Rht-B1a, Rht-D1a, Rht8c; Rht-B1a, Rht-D1b, Rht8b; Rht-B1a, Rht-D1b, Rht8j genotypes were identified in 5.4 % of the samples; the Rht-B1a, Rht-D1b, Rht8а genotypes – in 8.1 % of the samples. The analysis of the plant height, taking into account the karyotyping and genotyping data showed that the targeted selection of the most efficient allelic combinations of dwarfing genes is important for the cultivation region. The studies carried out allow us to suggest that the selection by the overwintering level can contribute to the fixation of the Rht8b allele in the breeding material, which is apparently associated with better winter hardiness in the conditions of Belarus.
小麦的分子-基因特征,因为育种具有耐药性
本研究旨在分析白俄罗斯37个软质冬小麦品种和选育样品中矮秆Rht-B1、Rht-D1和Rht8基因的基因组结构和等位基因组成。采用分子细胞遗传学标记(c带)和基因型DNA分型。结果,选育材料的染色体组成分析表明,21份冬小麦样品具有标准核型,基因组结构为AABBDD (2n = 42)。在剩余样本的核型中发现了影响1B、3B、5B、6B和7B染色体的5个易位变异。结果发现,主要矮化基因(Rht-B1、Rht-D1和Rht8)定位的第2和第4同源群染色体未发生结构变化。基因分型结果显示,45.9%的样品含有一个矮化等位基因(Rht-B1b、Rht-D1b、Rht8c)。在一份冬小麦样品中鉴定出两个具有商业意义的等位基因(Rht-B1b和Rht8c)的组合。Rht-B1a、Rht-D1a和Rht8b等位基因组合的基因型在分析的育种材料中出现频率最高(37.8%)。Rht-B1b、Rht-D1a、Rht8b;Rht-B1a、Rht-D1a、Rht8a基因型发生率为16.2%。Rht-B1a、Rht-D1a、Rht8c;Rht-B1a, Rht-D1b, Rht8b;5.4%的样本中鉴定出Rht-B1a、Rht-D1b、Rht8j基因型;Rht-B1a, Rht-D1b, rht8基因型-在8.1%的样本中。结合染色体组型和基因分型的株高分析表明,有针对性地选择矮化基因中效率最高的等位基因组合对栽培区域具有重要意义。这些研究表明,越冬水平的选择有助于Rht8b等位基因在育种材料中的固定,这显然与白俄罗斯条件下更好的耐寒性有关。
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