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测序基因分型在水产养殖育种与遗传学中的应用

Applications of genotyping by sequencing in aquaculture breeding and genetics.

作者信息

Robledo Diego, Palaiokostas Christos, Bargelloni Luca, Martínez Paulino, Houston Ross

机构信息

The Roslin Institute and Royal (Dick) School of Veterinary Studies University of Edinburgh Midlothian UK.

Department of Comparative Biomedicine and Food Science University of Padova Legnaro Padova Italy.

出版信息

Rev Aquac. 2018 Aug;10(3):670-682. doi: 10.1111/raq.12193. Epub 2017 Feb 4.

Abstract

Selective breeding is increasingly recognized as a key component of sustainable production of aquaculture species. The uptake of genomic technology in aquaculture breeding has traditionally lagged behind terrestrial farmed animals. However, the rapid development and application of sequencing technologies has allowed aquaculture to narrow the gap, leading to substantial genomic resources for all major aquaculture species. While high-density single-nucleotide polymorphism (SNP) arrays for some species have been developed recently, direct genotyping by sequencing (GBS) techniques have underpinned many of the advances in aquaculture genetics and breeding to date. In particular, restriction-site associated DNA sequencing (RAD-Seq) and subsequent variations have been extensively applied to generate population-level SNP genotype data. These GBS techniques are not dependent on prior genomic information such as a reference genome assembly for the species of interest. As such, they have been widely utilized by researchers and companies focussing on nonmodel aquaculture species with relatively small research communities. Applications of RAD-Seq techniques have included generation of genetic linkage maps, performing genome-wide association studies, improvements of reference genome assemblies and, more recently, genomic selection for traits of interest to aquaculture like growth, sex determination or disease resistance. In this review, we briefly discuss the history of GBS, the nuances of the various GBS techniques, bioinformatics approaches and application of these techniques to various aquaculture species.

摘要

选择性育种日益被视为水产养殖物种可持续生产的关键组成部分。水产养殖育种中基因组技术的应用传统上落后于陆地养殖动物。然而,测序技术的快速发展和应用使水产养殖能够缩小差距,为所有主要水产养殖物种带来了大量的基因组资源。虽然最近已经为一些物种开发了高密度单核苷酸多态性(SNP)阵列,但迄今为止,测序基因分型(GBS)技术一直是水产养殖遗传学和育种许多进展的基础。特别是,限制性内切酶位点相关DNA测序(RAD-Seq)及其后续变体已被广泛应用于生成群体水平的SNP基因型数据。这些GBS技术不依赖于诸如目标物种的参考基因组组装等先前的基因组信息。因此,它们已被专注于研究群体相对较小的非模式水产养殖物种的研究人员和公司广泛使用。RAD-Seq技术的应用包括生成遗传连锁图谱开展全基因组关联研究、改进参考基因组组装,以及最近对水产养殖感兴趣的性状(如生长、性别决定或抗病性)进行基因组选择。在本综述中,我们简要讨论了GBS的历史、各种GBS技术的细微差别、生物信息学方法以及这些技术在各种水产养殖物种中的应用。

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