Silkova O G, Peresmyslova E E, Shchapova A I, Shumnyĭ V K
Genetika. 2008 Jan;44(1):102-11.
Cytogenetic analysis of meiosis in the wheat--rye dimonosomics 1Rv-1A, 1Ron-1A, 2R-2D, 5R-5A, and 6R-6A was conducted. C-banding was used to study the segregation pattern of each of two univalent chromosomes during the first meiotic division. It has been shown that the division frequency of the centromeric regions of all rye chromosomes in the pair studied is significantly higher than in the wheat chromosomes. The ANOVA performed suggest that the plant genotype contributes significantly (at P = 0.05) to the behavior pattern of univalent chromosomes in meiosis. The data obtained demonstrate that the rye and wheat chromosomes studied are involved in genetic regulation of centromere division in meiotic anaphase I (AI). The presence of rye chromosome 2R and wheat chromosome 2D suppresses the division of centromeres of the sister chromatids in AI. Rye chromosomes 1Rv, 1Ron, 5R, and 6R induce equational division; however, rye chromosome 1Rv increases to a greater degree the frequency of equational division of wheat chromosome 1A as compared with chromosome 1Ron.
对小麦-黑麦双单体1Rv-1A、1Ron-1A、2R-2D、5R-5A和6R-6A的减数分裂进行了细胞遗传学分析。采用C带技术研究了减数第一次分裂过程中两条单价染色体各自的分离模式。结果表明,在所研究的配对中,所有黑麦染色体着丝粒区域的分裂频率显著高于小麦染色体。方差分析表明,植物基因型对减数分裂中单价染色体的行为模式有显著贡献(P = 0.05)。所得数据表明,所研究的黑麦和小麦染色体参与了减数第一次分裂后期(AI)着丝粒分裂的遗传调控。黑麦2R染色体和小麦2D染色体的存在抑制了AI中姐妹染色单体着丝粒的分裂。黑麦染色体1Rv、1Ron、5R和6R诱导均等分裂;然而,与1Ron染色体相比,黑麦染色体1Rv更大程度地提高了小麦1A染色体均等分裂的频率。