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利用简化基因组测序技术对野生醋栗番茄自交回交系(IBLs)果实品质性状进行全基因组SNP发掘及QTL定位

Genome-wide SNP discovery and QTL mapping for fruit quality traits in inbred backcross lines (IBLs) of solanum pimpinellifolium using genotyping by sequencing.

作者信息

Celik Ibrahim, Gurbuz Nergiz, Uncu Ali Tevfik, Frary Anne, Doganlar Sami

机构信息

Department of Molecular Biology and Genetics, Izmir Institute of Technology, Urla, Izmir, Turkey.

Pressent Address: Department of Molecular Biology and Genetics, Necmettin Erbakan University, Konya, Turkey.

出版信息

BMC Genomics. 2017 Jan 3;18(1):1. doi: 10.1186/s12864-016-3406-7.

Abstract

BACKGROUND

Solanum pimpinellifolium has high breeding potential for fruit quality traits and has been used as a donor in tomato breeding programs. Unlocking the genetic potential of S. pimpinellifolium requires high-throughput polymorphism identification protocols for QTL mapping and introgression of favourable alleles into cultivated tomato by both positive and background selection.

RESULTS

In this study we identified SNP loci using a genotyping by sequencing (GBS) approach in an IBL mapping population derived from the cross between a high yielding fresh market tomato and S. pimpinellifolium (LA1589) as the recurrent and donor parents, respectively. A total of 120,983,088 reads were generated by the Illumina HiSeq next-generation sequencing platform. From these reads 448,539 sequence tags were generated. A majority of the sequence tags (84.4%) were uniquely aligned to the tomato genome. A total of 3.125 unique SNP loci were identified as a result of tag alignment to the genome assembly and were used in QTL analysis of 11 fruit quality traits. As a result, 37 QTLs were identified. S. pimpinellifolium contributed favourable alleles for 16 QTLs (43.2%), thus confirming the high breeding potential of this wild species.

CONCLUSIONS

The present work introduced a set of SNPs at sufficiently high density for QTL mapping in populations derived from S. pimpinellifolium (LA1589). Moreover, this study demonstrated the high efficiency of the GBS approach for SNP identification, genotyping and QTL mapping in an interspecific tomato population.

摘要

背景

醋栗番茄在果实品质性状方面具有很高的育种潜力,已被用作番茄育种计划的供体。要释放醋栗番茄的遗传潜力,需要高通量多态性鉴定方案,用于数量性状基因座(QTL)定位以及通过正向和背景选择将有利等位基因导入栽培番茄。

结果

在本研究中,我们使用测序基因分型(GBS)方法,在一个由高产鲜食市场番茄与醋栗番茄(LA1589)杂交产生的近等基因系(IBL)作图群体中鉴定SNP位点,其中高产鲜食市场番茄和醋栗番茄(LA1589)分别作为轮回亲本和供体亲本。Illumina HiSeq下一代测序平台共产生了120,983,088条 reads。从这些 reads 中产生了448,539个序列标签。大多数序列标签(84.4%)与番茄基因组唯一比对。通过将标签与基因组组装进行比对,共鉴定出3.125万个独特的SNP位点,并用于11个果实品质性状的QTL分析。结果,鉴定出了37个QTL。醋栗番茄为16个QTL(43.2%)贡献了有利等位基因,从而证实了这种野生种的高育种潜力。

结论

本研究引入了一组密度足够高的SNP,用于醋栗番茄(LA1589)衍生群体的QTL定位。此外,本研究证明了GBS方法在种间番茄群体中进行SNP鉴定、基因分型和QTL定位的高效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/073d/5209891/1064defcb90c/12864_2016_3406_Fig1_HTML.jpg

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