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一个基于 RAD 标签的茄子连锁图谱和决定花青素着色的 QTL 定位。

A RAD tag derived marker based eggplant linkage map and the location of QTLs determining anthocyanin pigmentation.

机构信息

DIVAPRA Plant Genetics and Breeding, University of Torino, Grugliasco, Torino, Italy.

出版信息

PLoS One. 2012;7(8):e43740. doi: 10.1371/journal.pone.0043740. Epub 2012 Aug 17.

Abstract

Both inter- and intra-specific maps have been developed in eggplant (Solanum melongena L.). The former benefit from an enhanced frequency of marker polymorphism, but their relevance to marker-assisted crop breeding is limited. Combining the restriction-site associated DNA strategy with high throughput sequencing has facilitated the discovery of a large number of functional single nucleotide polymorphism (SNP) markers discriminating between the two eggplant mapping population parental lines '305E40' and '67/3'. A set of 347 de novo SNPs, together with 84 anchoring markers, were applied to the F(2) mapping population bred from the cross '305E40' x '67/3' to construct a linkage map. In all, 415 of the 431 markers were assembled into twelve major and one minor linkage group, spanning 1,390 cM, and the inclusion of established markers allowed each linkage group to be assigned to one of the 12 eggplant chromosomes. The map was then used to discover the genetic basis of seven traits associated with anthocyanin content. Each of the traits proved to be controlled by between one and six quantitative trait loci (QTL), of which at least one was a major QTL. Exploitation of syntenic relationships between the eggplant and tomato genomes facilitated the identification of potential candidate genes for the eggplant QTLs related to anthocyanin accumulation. The intra-specific linkage map should have utility for elucidating the genetic basis of other phenotypic traits in eggplant.

摘要

茄子(Solanum melongena L.)已经开发出了种间和种内图谱。前者得益于标记多态性频率的提高,但它们对标记辅助作物育种的相关性有限。将限制性位点相关 DNA 策略与高通量测序相结合,有助于发现大量区分茄子两个作图群体亲本系‘305E40’和‘67/3’的功能单核苷酸多态性(SNP)标记。一组 347 个从头 SNP 标记,加上 84 个锚定标记,应用于‘305E40’ב67/3’杂交产生的 F2 作图群体中,构建了一个连锁图谱。总共将 431 个标记中的 415 个组装成十二个主要和一个次要连锁群,跨度为 1390cM,包含已建立的标记允许将每个连锁群分配到茄子的 12 条染色体之一。然后,该图谱用于发现与花青素含量相关的七个性状的遗传基础。每个性状都被证明受一个到六个数量性状位点(QTL)的控制,其中至少有一个是主 QTL。利用茄子和番茄基因组之间的同线性关系,有助于鉴定与茄子花青素积累相关的 QTL 的潜在候选基因。种内连锁图谱应该对阐明茄子其他表型性状的遗传基础有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa32/3422253/61c77795b37b/pone.0043740.g001.jpg

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