首页> 外文期刊>Euphytica >Amplified fragment length polymorphism as a tool for molecular characterization of almond germplasm: genetic diversity among cultivated genotypes and related wild species of almond, and its relationships with agronomic traits
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Amplified fragment length polymorphism as a tool for molecular characterization of almond germplasm: genetic diversity among cultivated genotypes and related wild species of almond, and its relationships with agronomic traits

机译:扩增的片段长度多态性作为杏仁种质分子表征的工具:杏仁的栽培基因型和相关野生物种之间的遗传多样性及其与农艺性状的关系

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摘要

Amplified fragment length polymorphism (AFLP) analysis is a rapid and efficient method for producing DNA fingerprints and molecular characterization. Our objectives were to: estimate genetic similarities (GS), marker indices, and polymorphic information contents (PICs) for AFLP markers in almond cultivars; assess the genetic diversity of almond cultivars and wild species, using GS estimated from AFLP fingerprints and molecular characterization; and facilitate the use of markers in inter-specific introgression and cultivar improvement. The genetic diversity of 45 almond cultivars from Iran, Europe, and America, were studied assaying 19 primer combinations. In addition, several agronomic traits were evaluated, including flowering and maturity times, self-incompatibility, and kernel and fruit properties. Out of the 813 polymerase chain reaction fragments that were scored, 781 (96.23%) were polymorphic. GS ranged from 0.5 to 0.96, marker indices ranged from 51.37 to 78.79, and PICs ranged from 0.56 to 0.86. Results allowed the unique molecular identification of all assayed genotypes. However, the correlation between genetic similarity clustering as based on AFLP and clustering for agronomic traits was low. Cluster analysis based on AFLP data clearly differentiated the genotypes and wild species according to their origin and pedigree, whereas, cluster analysis based on agronomic data differentiated according the pomological characterization. Our results showed the great genetic diversity of the almond cultivars and their interest for almond breeding.
机译:扩增片段长度多态性(AFLP)分析是一种快速有效的方法,用于产生DNA指纹和分子表征。我们的目标是:估计杏仁品种AFLP标记的遗传相似性(GS),标记指数和多态信息含量(PIC);利用AFLP指纹图谱和分子特征估计的GS,评估杏仁品种和野生物种的遗传多样性;并促进在种间渗入和品种改良中使用标记。研究了来自伊朗,欧洲和美国的45个杏仁品种的遗传多样性,分析了19种引物组合。此外,还评估了几种农艺性状,包括开花和成熟时间,自交不亲和性以及仁和果实特性。在813个聚合酶链反应片段中,有781个(96.23%)是多态的。 GS范围从0.5到0.96,标记指数范围从51.37到78.79,PIC范围从0.56到0.86。结果允许对所有测定的基因型进行独特的分子鉴定。但是,基于AFLP的遗传相似性聚类与农艺性状聚类之间的相关性较低。基于AFLP数据的聚类分析可以根据基因型和野生物种的起源和血统清楚地区分不同基因,而基于农艺数据的聚类分析则可以根据基因组学特征进行区分。我们的结果显示了杏仁品种的巨大遗传多样性及其对杏仁育种的兴趣。

著录项

  • 来源
    《Euphytica》 |2007年第3期|327-344|共18页
  • 作者单位

    Department of Agronomy and Plant Breeding Faculty of Agriculture Shahrekord University Shahrekord P.O. Box 115 Iran;

    Department of Agronomy and Plant Breeding Faculty of Agriculture Shahrekord University Shahrekord P.O. Box 115 Iran;

    Department of Pomology University of California Davis CA 95616 USA;

    Department of Forestry Michigan State University 126 Natural Resources Building East Lansing MI 48824 USA;

    Department of Plant Breeding CEBAS-CSIC P.O. Box 164 30100 Espinardo Murcia Spain;

    Department of Natural Resources Faculty of Agriculture Shahrekord University Shahrekord P.O. Box 115 Iran;

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

    AFLP; Molecular characterization; Genetic diversity; Prunus dulcis;

    机译:AFLP;分子特征;遗传多样性;李;

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