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利用 K-Seq 基因分型技术发现番茄控制 IV 型毛密度的主效 QTL。

Discovery of a Major QTL Controlling Trichome IV Density in Tomato Using K-Seq Genotyping.

机构信息

Instituto Universitario de Conservación y Mejora de la Agrodiversidad Valenciana, COMAV, Universitat Politècnica de València, 46022 Valencia, Spain.

Instituto Cavanilles de Biodiversidad y Biología Evolutiva, Universitat de València, 46980 Paterna, Spain.

出版信息

Genes (Basel). 2021 Feb 8;12(2):243. doi: 10.3390/genes12020243.

Abstract

Trichomes are a common morphological defense against pests, in particular, type IV glandular trichomes have been associated with resistance against different invertebrates. Cultivated tomatoes usually lack or have a very low density of type IV trichomes. Therefore, for sustainable management of this crop, breeding programs could incorporate some natural defense mechanisms, such as those afforded by trichomes, present in certain species. We have identified a accession with very high density of this type of trichomes. This accession was crossed with a var. and a var. accessions, and the two resulting F2 populations have been characterized and genotyped using a new genotyping methodology, K-seq. We have been able to build an ultra-dense genetic map with 147,326 SNP markers with an average distance between markers of 0.2 cm that has allowed us to perform a detailed mapping. We have used two different families and two different approaches, QTL mapping and QTL-seq, to identify several QTLs implicated in the control of trichome type IV developed in this accession on the chromosomes 5, 6, 9 and 11. The QTL located on chromosome 9 is a major QTL that has not been previously reported in . This QTL could be easily introgressed in cultivated tomato due to the close genetic relationship between both species.

摘要

毛状体是一种常见的抵御害虫的形态防御结构,特别是 IV 型腺毛状体与不同无脊椎动物的抗性有关。栽培番茄通常缺乏或仅有非常低密度的 IV 型毛状体。因此,为了可持续管理这种作物,可以在培育计划中纳入一些天然防御机制,例如某些物种中存在的毛状体提供的防御机制。我们已经确定了一个具有非常高密度这种毛状体的品系。该品系与一个 品种和一个 品种杂交,并且使用新的基因分型方法 K-seq 对两个产生的 F2 群体进行了特征描述和基因分型。我们已经能够构建一个具有 147326 个 SNP 标记的超密集遗传图谱,标记之间的平均距离为 0.2 厘米,这使我们能够进行详细的图谱绘制。我们使用了两个不同的家系和两种不同的方法,QTL 作图和 QTL-seq,来鉴定在这个品系中控制 IV 型毛状体发育的几个 QTL,这些 QTL 位于染色体 5、6、9 和 11 上。位于染色体 9 上的 QTL 是一个主要的 QTL,以前在 中没有报道过。由于两个物种之间的密切遗传关系,这个 QTL 可以很容易地导入到栽培番茄中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7240/7915031/9eef69400d00/genes-12-00243-g001.jpg

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