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High-resolution linkage and quantitative trait locus mapping aided by genome survey sequencing: Building up an integrative genomic framework for a bivalve mollusc

机译:通过基因组调查测序辅助的高分辨率连杆和定量性状基因座映射:构建一肢体植物的综合基因组框架

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摘要

Genetic linkage maps are indispensable tools in genetic and genomic studies. Recent development of genotyping-by-sequencing (GBS) methods holds great promise for constructing high-resolution linkage maps in organisms lacking extensive genomic resources. In the present study, linkage mapping was conducted for a bivalve mollusc (Chlamys farreri) using a newly developed GBS method-2b-restriction site-associated DNA (2b-RAD). Genome survey sequencing was performed to generate a preliminary reference genome that was utilized to facilitate linkage and quantitative trait locus (QTL) mapping in C. farreri. A high-resolution linkage map was constructed with a marker density (3806) that has, to our knowledge, never been achieved in any other molluscs. The linkage map covered nearly the whole genome (99.5%) with a resolution of 0.41 cM. QTL mapping and association analysis congruously revealed two growth-related QTLs and one potential sex-determination region. An important candidate QTL gene named PROP1, which functions in the regulation of growth hormone production in vertebrates, was identified from the growth-related QTL region detected on the linkage group LG3. We demonstrate that this linkage map can serve as an important platform for improving genome assembly and unifying multiple genomic resources. Our study, therefore, exemplifies how to build up an integrative genomic framework in a non-model organism.
机译:遗传互联地图是遗传和基因组研究中的不可或缺的工具。逐序列(GBS)方法的最新发展对构建缺乏广泛的基因组资源的生物体中的高分辨率联系地图具有很大的承担。在本研究中,使用新开发的GBS方法-2B限制性位点(2b-rad)进行链接映射为双戊丝mollusc(Chlamys farreri)进行。进行基因组测序以产生初步参考基因组,用于促进C.Farreri中C. farreri中的连接和定量性状基因座(QTL)测绘。具有高分辨率的联系地图,具有标记密度(3806),它具有我们知识,在任何其他软体动物中从未实现过。连杆地图几乎全基因组(99.5%),分辨率为0.41厘米。 QTL映射和关联分析与两种生长相关的QTL和一个潜在的性别测定区域。一种重要的候选QTL基因,命名为prop1,其在脊椎动物中的生长激素产生调节中的作用,从联动基团Lg3上检测到的生长相关QTL区域鉴定出来。我们证明,这种联系地图可以作为改善基因组组装和统一多种基因组资源的重要平台。因此,我们的研究举例说明了如何在非模型生物体中积累综合基因组框架。

著录项

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  • 作者单位

    Key Laboratory of Marine Genetics and Breeding College of Marine Life Sciences Ocean University;

    Key Laboratory of Marine Genetics and Breeding College of Marine Life Sciences Ocean University;

    Key Laboratory of Marine Genetics and Breeding College of Marine Life Sciences Ocean University;

    Key Laboratory of Marine Genetics and Breeding College of Marine Life Sciences Ocean University;

    Key Laboratory of Marine Genetics and Breeding College of Marine Life Sciences Ocean University;

    Key Laboratory of Marine Genetics and Breeding College of Marine Life Sciences Ocean University;

    Key Laboratory of Marine Genetics and Breeding College of Marine Life Sciences Ocean University;

    Key Laboratory of Marine Genetics and Breeding College of Marine Life Sciences Ocean University;

    Key Laboratory of Marine Genetics and Breeding College of Marine Life Sciences Ocean University;

    Key Laboratory of Marine Genetics and Breeding College of Marine Life Sciences Ocean University;

    Key Laboratory of Marine Genetics and Breeding College of Marine Life Sciences Ocean University;

    Key Laboratory of Marine Genetics and Breeding College of Marine Life Sciences Ocean University;

    Key Laboratory of Marine Genetics and Breeding College of Marine Life Sciences Ocean University;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子遗传学;
  • 关键词

    2b-RAD genotyping; bivalve; genome sequencing; linkage mapping; quantitative trait locus mapping;

    机译:2b-rad基因分型;双抗体;基因组测序;联动映射;定量特质基因座映射;

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