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马铃薯四倍体褐斑作图群体中的连锁分析和数量性状基因座定位

Linkage analysis and QTL mapping in a tetraploid russet mapping population of potato.

作者信息

Massa Alicia N, Manrique-Carpintero Norma C, Coombs Joseph, Haynes Kathleen G, Bethke Paul C, Brandt Tina L, Gupta Sanjay K, Yencho G Craig, Novy Richard G, Douches David S

机构信息

USDA, Agricultural Research Service, National Peanut Research Laboratory, 1011 Forrester DR., SE, Dawson, GA, 39842, USA.

Plant, Soil and Microbial Sciences Department, Michigan State University, 1066 Bogue St, East Lansing, MI, 48824, USA.

出版信息

BMC Genet. 2018 Sep 21;19(1):87. doi: 10.1186/s12863-018-0672-1.

Abstract

BACKGROUND

Genome-wide single nucleotide polymorphism (SNP) markers coupled with allele dosage information has emerged as a powerful tool for studying complex traits in cultivated autotetraploid potato (Solanum tuberosum L., 2n = 4× = 48). To date, this approach has been effectively applied to the identification of quantitative trait loci (QTLs) underlying highly heritable traits such as disease resistance, but largely unexplored for traits with complex patterns of inheritance.

RESULTS

In this study, an F tetraploid russet mapping population (162 individuals) was evaluated for multiple quantitative traits over two years and two locations to identify QTLs associated with tuber sugar concentration, processing quality, vine maturity, and other high-value agronomic traits. We report the linkage maps for the 12 potato chromosomes and the QTL location with corresponding genetic models and candidate SNPs explaining the highest phenotypic variation for tuber quality and maturity related traits. Significant QTLs for tuber glucose concentration and tuber fry color were detected on chromosomes 4, 5, 6, 10, and 11. Collectively, these QTLs explained between 24 and 46% of the total phenotypic variation for tuber glucose and fry color, respectively. The QTL on chromosome 10 was associated with apoplastic invertases, with 'Premier Russet' contributing the favorable allele for fry processing quality. On chromosome 5, minor-effect QTLs for tuber glucose concentration and fry color co-localized with various major-effect QTLs, including vine maturity, growth habit, tuber shape, early blight (Altenaria tenuis), and Verticillium wilt (Verticillium spp.).

CONCLUSIONS

Linkage analysis and QTL mapping in a russet mapping population (A05141) using SNP dosage information successfully identified favorable alleles and candidate SNPs for resistance to the accumulation of tuber reducing sugars. These novel markers have a high potential for the improvement of tuber processing quality. Moreover, the discovery of different genetic models for traits with overlapping QTLs at the maturity locus clearly suggests an independent genetic control.

摘要

背景

全基因组单核苷酸多态性(SNP)标记结合等位基因剂量信息已成为研究栽培同源四倍体马铃薯(Solanum tuberosum L.,2n = 4x = 48)复杂性状的有力工具。迄今为止,这种方法已有效地应用于鉴定抗病性等高遗传力性状的数量性状位点(QTL),但对于具有复杂遗传模式的性状在很大程度上尚未得到探索。

结果

在本研究中,对一个四倍体红皮马铃薯作图群体(162个个体)在两年内两个地点进行了多个数量性状评估,以鉴定与块茎糖浓度、加工品质、藤蔓成熟度和其他高价值农艺性状相关的QTL。我们报告了12条马铃薯染色体的连锁图谱以及QTL位置,以及相应的遗传模型和候选SNP,这些候选SNP解释了块茎品质和成熟度相关性状的最高表型变异。在4号、5号、6号、10号和11号染色体上检测到了与块茎葡萄糖浓度和块茎薯条颜色相关的显著QTL。总体而言,这些QTL分别解释了块茎葡萄糖和薯条颜色总表型变异的24%至46%。10号染色体上的QTL与质外体转化酶相关,“Premier Russet”为薯条加工品质贡献了有利等位基因。在5号染色体上,块茎葡萄糖浓度和薯条颜色的微效QTL与各种主效QTL共定位,包括藤蔓成熟度、生长习性、块茎形状、早疫病(Altenaria tenuis)和黄萎病(Verticillium spp.)。

结论

利用SNP剂量信息在红皮马铃薯作图群体(A05141)中进行连锁分析和QTL定位成功鉴定了有利于块茎还原糖积累抗性的等位基因和候选SNP。这些新标记在改善块茎加工品质方面具有很高的潜力。此外,在成熟位点发现具有重叠QTL的性状的不同遗传模型清楚地表明了独立的遗传控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b94/6150958/0bf16a4aa3ae/12863_2018_672_Fig1_HTML.jpg

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