Department of Agricultural Genetic Engineering, Nigde Omer Halisdemir University, Nigde, Turkey.
Faculty of Technical Sciences, Center for Quantitative Genetics and Genomics, Aarhus University, Aarhus, Denmark.
Methods Mol Biol. 2023;2638:415-435. doi: 10.1007/978-1-0716-3024-2_30.
Potato variety development entails a number of breeding steps, as well as testing and, finally, commercialization. Historically, phenotypic assesment were carried out to select and germplasm development. The US Department of Agriculture (USDA) funded the Solanaceae Coordinated Agricultural Project (SolCAP) to decode genomic resources into tools that breeders and geneticists can use. This project resulted in the creation of a genome-wide single-nucleotide polymorphism (SNP) array that can be used to evaluate elite potato-breeding germplasm. This array was used to genotype a diverse panel of Solanum species, as well as numerous biparental, diploid, and tetraploid populations. It has high marker density to generate genetic maps that can be used to identify numerous quantitative trait loci (QTLs) for agronomic, quality, biotic, and abiotic resistance traits. Up to now, numerous QTLs for important traits have been identified using new diploid and tetraploid genetic maps. SNP markers were used to assess germplasm relationships and fingerprint varieties and identify candidate genes. The Infinium 8303 SolCAP Potato array offers a common set of SNP markers that can be used for mapping, germplasm assessment, and fingerprinting with confidence. This array has also been helpful in furthering our understanding of the potato genome. Furthermore, some other Infinium potato arrays (i.e., 12 K, 20 K, and 25 K) have been genotyped, and breeders can map quantitative trait loci (QTLs) across multiple populations to improve our understanding of economically important traits and lead to marker-assisted selection (MAS) and breeding and, ultimately, improved varieties.
马铃薯品种的培育需要经过多个选育步骤,包括测试,最终才能商业化。过去,人们通过表型评估来进行选择和种质开发。美国农业部(USDA)资助了茄科作物协调农业项目(SolCAP),将基因组资源解码为育种家和遗传学家可以使用的工具。该项目产生了一个全基因组单核苷酸多态性(SNP)阵列,可用于评估优秀的马铃薯育种种质。该阵列用于对多种茄属物种以及众多双亲和二倍体、四倍体群体进行基因分型。它具有高密度的标记,可生成遗传图谱,用于鉴定许多与农艺、品质、生物和非生物抗性相关的数量性状基因座(QTL)。到目前为止,已经使用新的二倍体和四倍体遗传图谱鉴定了许多重要性状的 QTL。SNP 标记用于评估种质关系、鉴定品种和识别候选基因。Infinium 8303 SolCAP 马铃薯阵列提供了一组通用的 SNP 标记,可用于图谱构建、种质评估和指纹识别,具有较高的可信度。该阵列还帮助我们进一步了解了马铃薯基因组。此外,还对其他一些 Infinium 马铃薯阵列(即 12K、20K 和 25K)进行了基因分型,育种者可以在多个群体中定位数量性状基因座(QTL),以加深对经济重要性状的理解,并实现标记辅助选择(MAS)和育种,最终得到改良品种。