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四倍体马铃薯作图群体中块茎形状和比重的连锁和 QTL 作图,该群体代表了红皮市场类别。

Linkage and QTL mapping for tuber shape and specific gravity in a tetraploid mapping population of potato representing the russet market class.

机构信息

USDA-ARS, Small Grains and Potato Germplasm Research Unit, Aberdeen, ID, 83210, USA.

USDA-ARS, National Peanut Research Laboratory, Dawson, GA, 39842, USA.

出版信息

BMC Plant Biol. 2021 Nov 3;21(1):507. doi: 10.1186/s12870-021-03265-2.

Abstract

BACKGROUND

Tuber shape and specific gravity (dry matter) are important agronomic traits in potato processing and impact production costs, quality, and consistency of the final processed food products such as French fries and potato chips. In this study, linkage and QTL mapping were performed for these two traits to allow for the implementation of marker-assisted selection to facilitate breeding efforts in the russet market class. Two parents, Rio Grande Russet (female) and Premier Russet (male) and their 205 F1 progenies were initially phenotyped for tuber shape and specific gravity in field trials conducted in Idaho and North Carolina in 2010 and 2011, with specific gravity also being measured in Minnesota in 2011. Progenies and parents were previously genotyped using the Illumina SolCAP Infinium 8303 Potato SNP array, with ClusterCall and MAPpoly (R-packages) subsequently used for autotetraploid SNP calling and linkage mapping in this study. The 12 complete linkage groups and phenotypic data were then imported into QTLpoly, an R-package designed for polyploid QTL analyses.

RESULTS

Significant QTL for tuber shape were detected on chromosomes 4, 7, and 10, with heritability estimates ranging from 0.09 to 0.36. Significant tuber shape QTL on chromosomes 4 and 7 were specific to Idaho and North Carolina environments, respectively, whereas the QTL on chromosome 10 was significant regardless of growing environment. Single marker analyses identified alleles in the parents associated with QTL on chromosomes 4, 7, and 10 that contributed to significant differences in tuber shape among progenies. Significant QTL were also identified for specific gravity on chromosomes 1 and 5 with heritability ranging from 0.12 to 0.21 and were reflected across environments.

CONCLUSION

Fully automated linkage mapping and QTL analysis were conducted to identify significant QTL for tuber shape and dry matter in a tetraploid mapping population representing the russet market class. The findings are important for the development of molecular markers useful to potato breeders for marker-assisted selection for the long tuber shape and acceptable dry matter required by the potato industry within this important market class.

摘要

背景

在马铃薯加工过程中,薯形和比重(干物质)是重要的农艺性状,它们会影响生产成本、质量和最终加工食品(如薯条和薯片)的一致性。本研究对这两个性状进行了连锁和 QTL 作图,以便实施标记辅助选择,从而促进褐皮市场品种的选育工作。两个亲本,Rio Grande Russet(母本)和 Premier Russet(父本)及其 205 个 F1 后代于 2010 年和 2011 年在爱达荷州和北卡罗来纳州进行田间试验,对薯形和比重进行了最初的表型测定,2011 年在明尼苏达州还测定了比重。后代和亲本之前使用 Illumina SolCAP Infinium 8303 马铃薯 SNP 芯片进行了基因型分析,在本研究中使用 ClusterCall 和 MAPpoly(R 包)随后用于自动四倍体 SNP 调用和连锁作图。12 个完整的连锁群和表型数据随后被导入 QTLpoly,这是一个专门为多倍体 QTL 分析设计的 R 包。

结果

在第 4、7 和 10 号染色体上检测到显著的薯形 QTL,遗传力估计值在 0.09 到 0.36 之间。第 4 和 7 号染色体上的显著薯形 QTL分别与爱达荷州和北卡罗来纳州的环境有关,而第 10 号染色体上的 QTL则与生长环境无关。单标记分析鉴定出亲本中与第 4、7 和 10 号染色体上 QTL 相关的等位基因,这些等位基因导致了后代之间薯形的显著差异。在第 1 和 5 号染色体上也检测到了显著的比重 QTL,遗传力在 0.12 到 0.21 之间,并且在不同环境下都有反映。

结论

对代表褐皮市场品种的四倍体作图群体进行了全自动连锁作图和 QTL 分析,以鉴定薯形和干物质的显著 QTL。这些发现对于开发有用的分子标记非常重要,这些标记可以帮助马铃薯育种者进行标记辅助选择,以满足该重要市场品种对长薯形和可接受干物质的需求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1585/8565078/0750e3f34b46/12870_2021_3265_Fig1_HTML.jpg

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