首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Inheritance of fertility restoration of male-sterility conferred by cytotype Y and identification of instability of male fertility phenotypes in onion (Allium cepa L.)
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Inheritance of fertility restoration of male-sterility conferred by cytotype Y and identification of instability of male fertility phenotypes in onion (Allium cepa L.)

机译:细胞型γ赋予雄性不育性的生育恢复的遗传,鉴定洋葱(Allium Cepa L.)的男性生育表型不稳定性

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摘要

A novel onion (Allium cepa L.) cytoplasm, cytotype Y, was found in a previous study. Cytotype Y contained unique stoichiometry of coxI and orf725, a candidate gene responsible for male-sterility induction in onions. A S-1 segregating population was produced from a single plant selected from PI273626. Although male-fertility segregated in this population, the ratio significantly deviated from single-gene inheritance. However, genotypes of RF31446 marker perfectly linked to Ms locus-controlling fertility restoration completely matched with male-fertility phenotypes, indicating that male-fertility restoration of male-sterility conferred by cytotype Y might be determined by the Ms locus. One plant derived from the S-1 population showed discrepancy between male-fertility phenotype and RF31446 genotype. Although the RF31446 genotype was homozygous recessive, reduced amount of pollen grains were observed in anthers. Many pollen grains of the unstable male-sterile plant were deformed. Analysis of 13 molecular markers flanking the Ms locus showed no crossover between the Ms locus and the RF31446 marker. Ten more unstable male-sterile plants were identified from open-pollinated progenies of the unstable male-sterile plant. Viable seeds were successfully produced from unstable male-sterile plants, indicating that pollen grains of the unstable male-sterile plants were partially viable. In addition, an umbel containing unstable male-fertile flowers was identified from one of maintainer lines, although both male and female organs might be sterile in these flowers.
机译:在先前的研究中发现了一种新型洋葱(葱属CEPA L.)细胞质,细胞型Y。细胞型Y含有Coxi和ORF725的独特化学计量,该候选基因负责洋葱中的雄性不育诱导。 S-1分离群体由选自PI273626中的单一植物生产。虽然在这群人群中进行了雄性生育率,但从单一基因遗传中显着偏离的比例显着偏离。然而,RF31446标记的基因型与MS基因座控制的生育恢复完全连接到与雄性生育表型完全匹配,表明通过细胞型Y赋予的雄性无菌的雄性生育恢复可能由MS基因座确定。源自S-1种群的一种植物在雄性生育表型和RF31446基因型之间显示出差异。虽然RF31446基因型是纯合的隐性,但在花药中观察到降量的花粉颗粒。许多不稳定的雄性无菌植物的花粉颗粒变形。侧翼MS基因座的13个分子标记的分析显示MS基因座和RF31446标记之间的交叉。从不稳定的雄性无菌植物的开放授粉后代鉴定出一种更不稳定的雄性无菌植物。可从不稳定的雄性无菌植物成功生产活种子,表明不稳定的雄性无菌植物的花粉颗粒部分可行。此外,含有不稳定的雄性肥沃的花朵的脐织物是从维护系中鉴定的,尽管雄性和雌性器官可能在这些花中无菌。

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