首页> 外文期刊>Journal of the American Society for Horticultural Science >Parthenogenic Haploids in Melon: Generation and Molecular Characterization of a Doubled Haploid Line Population
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Parthenogenic Haploids in Melon: Generation and Molecular Characterization of a Doubled Haploid Line Population

机译:甜瓜中的孤雌性单倍体:双倍单倍体系种群的产生和分子特征

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摘要

Melon (Cucumis melo) is one of the principal vegetable crops for fresh market, for which a large number of breeding programs, oriented to generate inbred pure lines and hybrids, is established worldwide. The process to obtain and select these lines has been highly accelerated by the use of biotechnological techniques such as the generation of doubled haploid line (DHL) populations and molecular markers. Moreover, the use of DHLs in genetic studies is a useful tool because of their complete homozygosity and the permanent availability of plant material perpetuated by seed. In this work, the parthenogenetic response of 17 melon genotypes and the F-1 hybrid PI 161375 x Spanish cultivar Piel de Sapo (PS) was studied considering three stages along the in vitro DHL generation process. The response of the analyzed melon cultivars was heterogeneous through the DHL generation with different limiting steps for each genotype. The response of the PI 161375 x PS hybrid was more similar to the male (PS) than the female parent (PI 161375), although the response of the maternal genotype was higher for some stages. This points to the important role of alleles from both parents in the different steps of the DHL generation process, and it could explain the identification of six genomic regions with distorted allelic segregation skewed toward PS or PI 161375. This hybrid was used to generate a population of 109 DHLs, the gametophytic origin of which was confirmed by flow cytometry and molecular markers.
机译:甜瓜(Cucumis melo)是新鲜市场上主要的蔬菜作物之一,为此在世界范围内建立了许多育种计划,旨在产生近交纯系和杂种。通过使用生物技术技术,例如双倍单倍体系(DHL)种群和分子标记的产生,已大大加快了获得和选择这些系的过程。此外,由于DHL具有完全的纯合性,并且种子可永久提供植物材料,因此在遗传研究中使用DHL是一种有用的工具。在这项工作中,研究了17种甜瓜基因型和F-1杂种PI 161375 x西班牙品种Piel de Sapo(PS)的孤雌生殖响应,考虑了体外DHL生成过程的三个阶段。通过DHL产生,分析的甜瓜品种的响应是异质的,每种基因型具有不同的限制步骤。尽管母体基因型的响应在某些阶段较高,但PI 161375 x PS杂种的响应与母体(PI 161375)的响应更类似于雄性(PS)。这表明了双亲等位基因在DHL产生过程的不同步骤中的重要作用,并且可以解释鉴定具有偏向PS或PI 161375的扭曲等位基因分离的六个基因组区域。该杂种被用来产生种群109种DHL中的配子体来源由流式细胞仪和分子标记物确定。

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