Font I Forcada Carolina, Guajardo Verónica, Chin-Wo Sebastian Reyes, Moreno María Ángeles
Department of Pomology, Estación Experimental de Aula Dei-CSIC, Zaragoza, Spain.
Centro de Estudios Avanzados en Fruticultura, Rengo, Chile.
Front Plant Sci. 2019 Jan 17;9:2005. doi: 10.3389/fpls.2018.02005. eCollection 2018.
The identification of genes involved in variation of peach fruit quality would assist breeders to create new cultivars with improved fruit quality. Peach is a genetic and genomic model within the Rosaceae. A large quantity of useful data suitable for fine mapping using Single Nucleotide Polymorphisms (SNPs) from the peach genome sequence was used in this study. A set of 94 individuals from a peach germplasm collection was phenotyped and genotyped, including local Spanish and modern cultivars maintained at the Experimental Station of Aula Dei, Spain. Phenotypic evaluation based on agronomical, pomological and fruit quality traits was performed at least 3 years. A set of 4,558 out of a total of 8,144 SNPs markers developed by the Illumina Infinium BeadArray (v1.0) technology platform, covering the peach genome, were analyzed for population structure analysis and genome-wide association studies (GWAS). Population structure analysis identified two subpopulations, with admixture within them. While one subpopulation contains only modern cultivars, the other one is formed by local Spanish and several modern cultivars from international breeding programs. To test the marker trait associations between markers and phenotypic traits, four models comprising both general linear model (GLM) and mixed linear model (MLM) were selected. The MLM approach using co-ancestry values from population structure and kinship estimates (K model) identified a maximum of 347 significant associations between markers and traits. The associations found appeared to map within the interval where many candidate genes involved in different pathways are predicted in the peach genome. These results represent a promising situation for GWAS in the identification of SNP variants associated to fruit quality traits, potentially applicable in peach breeding programs.
鉴定参与桃果实品质变异的基因将有助于育种者培育出果实品质改良的新品种。桃是蔷薇科的遗传和基因组模型。本研究使用了大量适用于利用桃基因组序列中的单核苷酸多态性(SNP)进行精细定位的有用数据。对来自桃种质资源库的94个个体进行了表型分析和基因分型,包括保存在西班牙奥尔德伊实验站的当地西班牙品种和现代品种。基于农艺、果树学和果实品质性状的表型评价至少进行了3年。对Illumina Infinium BeadArray(v1.0)技术平台开发的总共8144个SNP标记中的4558个进行了分析,这些标记覆盖了桃基因组,用于群体结构分析和全基因组关联研究(GWAS)。群体结构分析确定了两个亚群,其中存在混合情况。一个亚群仅包含现代品种,另一个亚群由当地西班牙品种和来自国际育种计划的几个现代品种组成。为了测试标记与表型性状之间的标记-性状关联,选择了包括一般线性模型(GLM)和混合线性模型(MLM)的四个模型。使用来自群体结构的共同祖先值和亲属关系估计值的MLM方法(K模型)确定了标记与性状之间最多347个显著关联。发现的这些关联似乎定位在桃基因组中预测有许多参与不同途径的候选基因的区间内。这些结果为GWAS在鉴定与果实品质性状相关的SNP变异方面呈现出一个有前景的情况,可能适用于桃育种计划。