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利用标记-性状关联分析鉴定四倍体马铃薯品种中的农艺重要 QTL。

Identification of agronomically important QTL in tetraploid potato cultivars using a marker-trait association analysis.

机构信息

Plant Breeding, Wageningen University and Research Centre, P.O. Box 386, 6700 AJ, Wageningen, The Netherlands.

出版信息

Theor Appl Genet. 2014 Mar;127(3):731-48. doi: 10.1007/s00122-013-2254-y. Epub 2014 Jan 10.

Abstract

Nineteen tuber quality traits in potato were phenotyped in 205 cultivars and 299 breeder clones. Association analysis using 3364 AFLP loci and 653 SSR-alleles identified QTL for these traits. Two association mapping panels were analysed for marker-trait associations to identify quantitative trait loci (QTL). The first panel comprised 205 historical and contemporary tetraploid potato cultivars that were phenotyped in field trials at two locations with two replicates (the academic panel). The second panel consisted of 299 potato cultivars and included recent breeds obtained from five Dutch potato breeding companies and reference cultivars (the industrial panel). Phenotypic data for the second panel were collected during subsequent clonal selection generations at the individual breeding companies. QTL were identified for 19 agro-morphological and quality traits. Two association mapping models were used: a baseline model without, and a more advanced model with correction for population structure and genetic relatedness. Correction for population structure and genetic relatedness was performed with a kinship matrix estimated from marker information. The detected QTL partly not only confirmed previous studies, e.g. for tuber shape and frying colour, but also new QTL were found like for after baking darkening and enzymatic browning. Pleiotropic effects could be discerned for several QTL.

摘要

在 205 个栽培品种和 299 个育种无性系中对 19 个块茎品质性状进行了表型分析。利用 3364 个 AFLP 标记和 653 个 SSR 等位基因对这些性状进行了关联分析,确定了这些性状的 QTL。对两个关联作图面板进行了标记-性状关联分析,以鉴定数量性状基因座(QTL)。第一个面板由 205 个历史和当代四倍体马铃薯品种组成,这些品种在两个地点的田间试验中进行了表型分析,每个地点有两个重复(学术面板)。第二个面板由 299 个马铃薯品种组成,包括最近从五个荷兰马铃薯育种公司获得的品种和参考品种(工业面板)。第二个面板的表型数据是在各个育种公司的后续无性系选择世代中收集的。鉴定了 19 个农艺形态和品质性状的 QTL。使用了两种关联作图模型:一种是没有校正群体结构和遗传相关性的基线模型,另一种是更先进的模型。利用基于标记信息估计的亲缘关系矩阵校正了群体结构和遗传相关性。检测到的 QTL 不仅部分证实了先前的研究,例如块茎形状和油炸颜色,还发现了新的 QTL,如烘焙后变暗和酶褐变。几个 QTL 可以看出有复等位基因效应。

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