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An integrated approach for increasing breeding efficiency in apple and peach in Europe

机译:欧洲提高苹果和桃子育种效率的综合方法

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摘要

Despite the availability of whole genome sequences of apple and peach, there has been a considerable gap between genomics and breeding. To bridge the gap, the European Union funded the FruitBreedomics project (March 2011 to August 2015) involving 28 research institutes and private companies. Three complementary approaches were pursued: (i) tool and software development, (ii) deciphering genetic control of main horticultural traits taking into account allelic diversity and (iii) developing plant materials, tools and methodologies for breeders. Decisive breakthroughs were made including the making available of ready-to-go DNA diagnostic tests for Marker Assisted Breeding, development of new, dense SNP arrays in apple and peach, new phenotypic methods for some complex traits, software for gene/QTL discovery on breeding germplasm via Pedigree Based Analysis (PBA). This resulted in the discovery of highly predictive molecular markers for traits of horticultural interest via PBA and via Genome Wide Association Studies (GWAS) on several European genebank collections. FruitBreedomics also developed pre-breeding plant materials in which multiple sources of resistance were pyramided and software that can support breeders in their selection activities. Through FruitBreedomics, significant progresses were made in the field of apple and peach breeding, genetics, genomics and bioinformatics of which advantage will be made by breeders, germplasm curators and scientists. A major part of the data collected during the project has been stored in the FruitBreedomics database and has been made available to the public. This review covers the scientific discoveries made in this major endeavour, and perspective in the apple and peach breeding and genomics in Europe and beyond.
机译:尽管可以获得苹果和桃子的全基因组序列,但是基因组学和育种之间仍然存在相当大的差距。为了弥合差距,欧盟资助了FruitBreedomics项目(2011年3月至2015年8月),该项目涉及28个研究机构和私人公司。采取了三种互补的方法:(i)工具和软件开发,(ii)考虑等位基因多样性,解密主要园艺性状的遗传控制,以及(iii)为育种者开发植物材料,工具和方法。决定性的突破包括为标记辅助育种提供现成的DNA诊断测试,苹果和桃子中新的致密SNP阵列的开发,某些复杂性状的新表型方法,育种基因/ QTL发现软件种质通过基于谱系的分析(PBA)。这导致通过PBA以及通过基因组广泛关联研究(GWAS)在多个欧洲种质库中发现了具有高度园艺意义的园艺分子标记。 FruitBreedomics还开发了预育的植物材料,其中融合了多种抗性来源,并且可以为育种者的选择活动提供支持。通过FruitBreedomics,苹果和桃子的育种,遗传学,基因组学和生物信息学领域取得了重大进展,育种者,种质管理者和科学家将利用这些优势。项目期间收集的大部分数据已存储在FruitBreedomics数据库中,并已向公众公开。这篇综述涵盖了这项重大努力中的科学发现,以及欧洲及其他地区苹果和桃子的育种和基因组学的前景。

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