首页> 外文期刊>Acta Horticulturae >An assessment of genetic diversity within and between Brassica napus and Brassica juncea lines from international germplasm collections.
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An assessment of genetic diversity within and between Brassica napus and Brassica juncea lines from international germplasm collections.

机译:来自国际种质收集的芸薹属植物中遗传多样性和芸薹属juncea系列的评估。

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摘要

Germplasm collections are valuable gene pools providing diverse genetic material that may be applied for the improvement of cultivars and advanced agronomic productivity. An assessment of genetic diversity in crop germplasm collections can assist in the choice of parents for genetic mapping populations and subsequent marker-assisted selection. Genotyping individuals and cultivars within germplasm collections can help breeders narrow the search for new alleles at loci of interest and assist in the identification of 'perfect' marker alleles from candidate genes that can then be introduced into new varieties along with their associated desirable traits. Genotypic information from germplasm collections can be used to assign lines and populations to heterotic groups; to study the evolutionary history of wild relatives; to verify pedigrees and fill in the gaps in incomplete pedigree or selection history and to monitor changes in allele frequencies in cultivars or populations. Towards the application of genetic diversity analysis to germplasm improvement, we have characterised within and between line genetic diversity in an international germplasm collection, consisting of over 100 B. napus and B. juncea lines, using genomic- and EST (expressed sequence tag)-derived Simple Sequence Repeat (SSR) molecular markers. Further genetic diversity analysis has been performed on related germplasm from 17 lines maintained in the UK along with 30 B. napus cultivars grown commercially in Australia. Analysis of the resulting data indicates clustering associated with geographical origin and breeding history as well as association with valuable agronomic traits..
机译:种质收集是提供各种遗传物质的有价值的基因库,可用于改善品种和高级农艺生产力。作物种质收集中遗传多样性的评估可以协助选择遗传造影种群的父母和随后的标记辅助选择。种族素分型个体和种质中的种族素收集中的种植体可以帮助育种者在兴趣基因座上寻找新的等位基因,并协助鉴定从候选基因的候选基因的“完美”标记等位基因,然后可以与其相关的所需特征一起引入新品种。来自种质收集的基因型信息可用于将线条和群体分配给异性群体;研究野生亲属的进化史;为了验证章节并填补不完整的血统或选择历史中的差距,并监测品种或人口中等位基因频率的变化。致遗传多样性分析对种质改善的应用,我们在国际种质收集中的线遗传多样性内部和之间的特征在于,由100多种B. Napus和B. juncea系列组成,使用基因组和EST(表达序列标签) - 衍生的简单序列重复(SSR)分子标记。在英国维护的17条系中,对来自英国维护的17条的相关种质进行了进一步的遗传多样性分析,以及在澳大利亚商业种植的30 b.纳珀品种。结果数据分析表明与地理原产地和育种历史相关的聚类以及与有价值的农艺性状相关联。

著录项

  • 来源
    《Acta Horticulturae》 |2006年第706期|共5页
  • 作者单位

    Plant Biotechnology Centre Primary Industries Research Victoria Department of Primary Industries La Trobe University Bundoora Victoria 3086 Australia.;

    Plant Biotechnology Centre Primary Industries Research Victoria Department of Primary Industries La Trobe University Bundoora Victoria 3086 Australia.;

    Plant Biotechnology Centre Primary Industries Research Victoria Department of Primary Industries La Trobe University Bundoora Victoria 3086 Australia.;

    Plant Biotechnology Centre Primary Industries Research Victoria Department of Primary Industries La Trobe University Bundoora Victoria 3086 Australia.;

    Plant Biotechnology Centre Primary Industries Research Victoria Department of Primary Industries La Trobe University Bundoora Victoria 3086 Australia.;

    Plant Biotechnology Centre Primary Industries Research Victoria Department of Primary Industries La Trobe University Bundoora Victoria 3086 Australia.;

    Plant Biotechnology Centre Primary Industries Research Victoria Department of Primary Industries La Trobe University Bundoora Victoria 3086 Australia.;

    Plant Biotechnology Centre Primary Industries Research Victoria Department of Primary Industries La Trobe University Bundoora Victoria 3086 Australia.;

    Plant Biotechnology Centre Primary Industries Research Victoria Department of Primary Industries La Trobe University Bundoora Victoria 3086 Australia.;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 园艺;
  • 关键词

    genetic diversity; genetic markers; genetic polymorphism; genetic variation; genotypes; geographical distribution; Indian mustard; plant genetic resources;

    机译:遗传多样性;遗传标志;遗传多态性;遗传变异;基因型;地理分布;印度芥末;植物遗传资源;

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