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基于 1581 个标记的欧洲鲈鱼(Dicentrarchus labrax)辐射杂交图谱:与模式鱼类基因组的同线性分析。

A radiation hybrid map of the European sea bass (Dicentrarchus labrax) based on 1581 markers: Synteny analysis with model fish genomes.

机构信息

CNRS UMR 6061 Institut de Génétique et Développement, Université de Rennes 1, 2 Avenue du Pr Léon Bernard, F-35043 Rennes Cedex, France.

出版信息

Genomics. 2010 Oct;96(4):228-38. doi: 10.1016/j.ygeno.2010.07.007. Epub 2010 Jul 24.

DOI:10.1016/j.ygeno.2010.07.007
PMID:20659549
Abstract

The selective breeding of fish for aquaculture purposes requires the understanding of the genetic basis of traits such as growth, behaviour, resistance to pathogens and sex determinism. Access to well-developed genomic resources is a prerequisite to improve the knowledge of these traits. Having this aim in mind, a radiation hybrid (RH) panel of European sea bass (Dicentrarchus labrax) was constructed from splenocytes irradiated at 3000 rad, allowing the construction of a 1581 marker RH map. A total of 1440 gene markers providing ~4400 anchors with the genomes of three-spined stickleback, medaka, pufferfish and zebrafish, helped establish synteny relationships with these model species. The identification of Conserved Segments Ordered (CSO) between sea bass and model species allows the anticipation of the position of any sea bass gene from its location in model genomes. Synteny relationships between sea bass and gilthead seabream were addressed by mapping 37 orthologous markers. The sea bass genetic linkage map was integrated in the RH map through the mapping of 141 microsatellites. We are thus able to present the first complete gene map of sea bass. It will facilitate linkage studies and the identification of candidate genes and Quantitative Trait Loci (QTL). The RH map further positions sea bass as a genetic and evolutionary model of Perciformes and supports their ongoing aquaculture expansion.

摘要

为了水产养殖的目的而对鱼类进行选择性繁殖,需要了解生长、行为、对病原体的抵抗力和性别决定等特征的遗传基础。获得发达的基因组资源是提高这些特征知识的前提。考虑到这一目标,从 3000 拉德辐照的脾脏细胞中构建了欧洲鲈鱼(Dicentrarchus labrax)的辐射杂种(RH)面板,从而构建了 1581 个标记 RH 图谱。总共 1440 个基因标记为三刺鱼、斑马鱼、河豚和斑马鱼的基因组提供了约 4400 个锚点,有助于与这些模式物种建立同线性关系。鲈鱼和模式物种之间保守片段排序(CSO)的鉴定允许根据模型基因组中基因的位置来预测任何鲈鱼基因的位置。通过对 37 个同源标记进行映射,解决了鲈鱼和金头鲷之间的同线性关系。通过对 141 个微卫星的映射,将鲈鱼的遗传连锁图谱整合到 RH 图谱中。因此,我们能够呈现鲈鱼的第一个完整基因图谱。它将促进连锁研究以及候选基因和数量性状基因座(QTL)的鉴定。RH 图谱进一步将鲈鱼定位为鲈形目鱼类的遗传和进化模型,并支持其正在进行的水产养殖扩张。

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