首页> 外文期刊>Aquaculture Reports >Development and validation of a SNP-based genotyping tool for pedigree establishment in Australian greenlip abalone Haliotis laevigata Donovan, 1808
【24h】

Development and validation of a SNP-based genotyping tool for pedigree establishment in Australian greenlip abalone Haliotis laevigata Donovan, 1808

机译:澳大利亚Greenlip Abalone Haliotis Laevigata Donovan,1808年澳大利亚Greenlip Abalone的SNP基因分型工具的开发和验证

获取原文
           

摘要

To enable cumulative increases in aquaculture productivity, structured and efficient selective breeding programs are required. These are contingent on the management of genetic resources within the breeding population though the attainment of accurate pedigree information which can be provided by DNA-based parentage analysis. This study developed a SNP panel for greenlip abalone, Haliotis laevigata, from DArTSeq data produced from a genetic audit of greenlip abalone (n?=?336) from five farms. The initial dataset consisted of 15,320 SNPs. Strict filtering on SNP quality control metrics was conducted to select the most informative 1,004 SNPs for the design of a DArTag? genotyping panel for greenlip abalone. Sixteen broodstock and 1035 hatchery produced progeny were genotyped using the 1,004 SNP DArTag? panel. The resulting genotypes were filtered, to produce 705 high performing SNPs. In silico parentage analysis using subsets of these SNPs (highest ranked by polymorphic information content) revealed that the inclusion of 50 SNPs were satisfactory to resolve parentage for 10,000 simulated progeny to up to 200 candidate parents. The resolving power of the panel was also assessed under high levels of inbreeding (0–50 %) and relatedness (0–50 %) between candidate parents, and conditions of missing parental genotypes (10–50 %) in silico . Under all levels of inbreeding, relatedness and missing parental genotypes simulated, the panel was able to accurately assign parental pairs to the offspring. To validate these in silico results, parentage analysis of the hatchery produced progeny of the 16 candidate broodstock was conducted using both CERVUS and APIS. Complete parentage was assigned to all experimental progeny, with 100 % consensus between the two methods used. This study indicates this panel will serve as an efficient and cost-effective tool for accurate pedigree establishment for greenlip abalone.
机译:为了实现水产养殖生产率的累积增加,需要结构化和有效的选择性育种计划。这些虽然达到了可以通过基于DNA的父母数分析提供的准确血统信息,但这些遗传资源的管理仍由繁殖人群内的遗传资源管理。本研究开发了Freenlip Abalone,Haliotis Laevigata的SNP面板,来自来自五个农场的Greenlip鲍鱼(n?= 336)的遗传审计产生的Dartseq数据。初始数据集由15,320个SNP组成。对SNP质量控制指标进行严格过滤,选择用于DARTAG的设计最具信息丰富的1,004个SNP? Greenlip鲍鱼的基因分型面板。使用1,004 snp dartag产生了16岁的卧室和1035种孵化场生成的后代基因分为型?控制板。过滤所得基因型,以产生705高的性能的SNP。在Silico级级分析中使用这些SNP的子集(由多态信息内容排名最高),显示包含& 50个SNPS令人满意,可以解决10,000个模拟后期的父母,最多为200名候选人父母。在候选父母之间的高水平近亲(0-50%)和相关性(0-50%)之间也评估了面板的分辨力,以及硅基缺失的父母基因型(10-50%)的病症。在所有途径的近亲繁殖,相关性和缺少的父母基因型中,小组能够准确地将父母对分配给后代。为了在Silico结果中验证这些结果,使用宫颈和API进行16个候选前衣的孵化场的父母分析。完整的父母被分配给所有实验后代,在使用的两种方法之间有100%的共识。本研究表明,该专家面板将作为Greenlip鲍鱼的准确谱系建立的高效且具有成本效益的工具。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号