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首页> 外文期刊>The Plant Genome >Four genetic loci control compact plant size with yellow pear‐shaped fruit in ornamental tomato (Solanum lycopersicum L.)
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Four genetic loci control compact plant size with yellow pear‐shaped fruit in ornamental tomato (Solanum lycopersicum L.)

机译:四种遗传基因座控制紧凑型植物大小与黄色梨形果实在观赏番茄中(Solanum Lycopersicum L.)

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摘要

Tomato is an attractive fruiting vegetable crop that can be used as an ornamental plant. Agronomical traits have been subjected to extensive genetic dissection to enhance vegetable breeding programs. By contrast, there are few genetic studies of ornamental traits for the development of ornamental tomato varieties. To investigate genetic loci linked to desired ornamental traits, we performed genetic analyses using an intraspecific mapping population that segregated for fruit color (yellow or red), fruit shape (round or pear), and plant height (high or compact). A genetic map was constructed with 965 single nucleotide polymorphisms (SNPs) and 33 simple sequence repeat markers. Subsequent linkage analysis using quantitative locus analysis and genome‐wide association study detected four genetic loci for the three selected traits, all of which were located near the reported genes. We performed KASP—kompetitive allele‐specific PCR—to develop SNP markers that were tightly linked to the four loci. Highly accurate genotyping data were obtained from the four SNPs across 187 F2 plants, which enabled us to select two lines with homozygous alleles for compact plant size and yellow pear‐shaped fruits. These newly developed SNP markers and genetic strategies could be used to accelerate breeding programs for ornamental tomato plants.
机译:番茄是一种有吸引力的蔬菜作物,可用作观赏植物。农艺性状受到广泛的遗传解剖,以增强蔬菜育种计划。相比之下,少量对观赏番茄品种开发的观赏性状的遗传研究。为了调查与所需装饰性状相关的遗传基因座,我们使用用于果实颜色(黄色或红色),果实形状(圆形或梨)和植物高度(高或紧凑)进行拆散的绘图群进行遗传分析。构建遗传图谱用965个单核苷酸多态性(SNP)和33个简单的序列重复标记。随后使用定量基因座分析和基因组 - 宽协会研究检测到三种选定的特征的四个遗传基因座,所有这些都位于报告的基因附近。我们进行了Kasp-Kometive等位基因特异性PCR - 以与四个基因座紧密相关的SNP标记。高精度的基因分型数据是从187个F2植物的四个SNP获得的,使我们能够选择两条线具有用于紧凑型植物尺寸和黄色梨形水果的纯合的等位基因。这些新开发的SNP标记和遗传策略可用于加速观赏番茄植物的育种计划。

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