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控制苹果(苹果属杂交种Borkh.)果皮颜色及适用于标记辅助选择的A和MdMYB1等位基因特异性标记。

A and MdMYB1 allele-specific markers controlling apple (Malus x domestica Borkh.) skin color and suitability for marker-assisted selection.

作者信息

Zhang X J, Wang L X, Chen X X, Liu Y L, Meng R, Wang Y J, Zhao Z Y

机构信息

College of Horticulture, Northwest A&F University, Yangling, Shaanxi, China.

State Key Laboratory of Crop Stress Biology in Arid Areas, Yangling, Shaanxi, China.

出版信息

Genet Mol Res. 2014 Oct 31;13(4):9103-14. doi: 10.4238/2014.October.31.26.

Abstract

Pre-selection for fruit skin color at the seedling stage would be highly advantageous, with marker-assisted selection offering a potential method for apple pre-selection. A and MdMYB1 alleles are allele-specific DNA markers that are potentially associated with apple skin color, and co-segregate with the Rf and Rni loci, respectively. Here, we assessed the potential application of these 2 alleles for marker-assisted breeding across 30 diverse cultivars and 2 apple seedling progenies. The red skin color phenotype was usually associated with the MdMYB1-1 allele and A(1) allele, respectively, while the 2 molecular markers provided approximately 91% predictability in the 'Fuji' x 'Cripps Pink' and 'Fuji' x 'Gala' progenies. The results obtained from the 30 cultivars and 2 progenies were consistent for the 2 molecular markers. Hence, the results supported that Rf and Rni could be located in a gene cluster, or even correspond to alleles of the same gene. Our results are consistent with the hypothesis that red/yellow dimorphism is controlled by a monogenic system, with the presence of the red anthocyanin pigmentation being dominant. In addition, our results supported that the practical utilization of the 2 function markers to efficiently and accurately select red-skinned apple cultivars in apple scion breeding programs.

摘要

在幼苗期对苹果果皮颜色进行预选将非常有利,标记辅助选择为苹果预选提供了一种潜在方法。A和MdMYB1等位基因是与苹果果皮颜色潜在相关的等位基因特异性DNA标记,分别与Rf和Rni位点共分离。在此,我们评估了这两个等位基因在30个不同品种和2个苹果幼苗后代中进行标记辅助育种的潜在应用。红色果皮颜色表型通常分别与MdMYB1-1等位基因和A(1)等位基因相关,而这两个分子标记在‘富士’ב克里普斯粉红’和‘富士’ב嘎啦’后代中提供了约91%的预测性。从30个品种和2个后代获得的结果对于这两个分子标记是一致的。因此,结果支持Rf和Rni可能位于一个基因簇中,甚至对应于同一基因的等位基因。我们的结果与红色/黄色二态性由单基因系统控制的假设一致,红色花青素色素沉着的存在是显性的。此外,我们的结果支持这两个功能标记在苹果接穗育种计划中实际用于高效准确地选择红色果皮苹果品种。

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