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Analysis of Malus S-RNase gene diversity based on a comparative study of old and modern apple cultivars and European wild apple

机译:基于古老和现代苹果品种与欧洲野苹果的比较研究海棠S-RNase基因多样性

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摘要

Malus S-RNase genetic diversity was analyzed in Malus × domestica cultivars and compared to European wild apple (Malus sylvestris). Using PCR-based approaches, the S-RNase genotype of 140 M. × domestica cultivars, 196 M. sylvestris trees and 27 M. sylvestris—M. × domestica hybrids was determined. S-RNase allelic richness in M. sylvestris was much higher than in M. × domestica, indicating the negative influence of domestication on S-RNase diversity. Heterogeneity of the S-RNase allelic distribution is much higher in cultivated apple than in wild apple, which shows that breeding leads to strong departure from the expected homogeneity of genes under negative frequency-dependent selection. The majority of the M. × domestica S-alleles has been found in M. sylvestris as well, which points to strong conservation of the S-locus gene structure. Based on the sequence of all different SCAR-fragments, which comprise both the hypervariable PS1 region and the single intron, S-RNase genetic diversity was further explored. It provided some clues to the occurrence of new S-alleles among the multitude of novel S-RNase sequences that have been identified, which were mostly unique for the group of M. sylvestris individuals. The determination of the S-RNase genotypes of old cultivars and M. sylvestris will enable their introduction into new breeding strategies. As M. sylvestris has become an endangered species in Belgium, the knowledge gathered in this study will be an important tool for selecting useful genotypes for a core collection.
机译:分析了苹果属(Malus)×家蝇(Northus)品种中的苹果属(Malus)S-RNase遗传多样性,并与欧洲野苹果(Malus sylvestris)进行了比较。使用基于PCR的方法,S-RNase基因型为140 M.×家蝇,196 M.樟子松树和27 M.樟子松-M。 ×确定了杂种。樟子松中S-RNase等位基因丰富度远高于家蝇(M.×domestica),表明驯化对S-RNase多样性的负面影响。在栽培苹果中,S-RNase等位基因分布的异质性要比野生苹果高得多,这表明在负频率依赖性选择下,繁殖导致与预期基因同质性的强烈偏离。在樟子松中也发现了大多数××家蝇S-等位基因,这表明S-基因座基因结构的强保守性。基于包含高变PS1区和单个内含子的所有不同SCAR片段的序列,进一步探索了S-RNase遗传多样性。它为已经鉴定出的许多新的S-RNase序列中新的S-等位基因的出现提供了一些线索,这对于樟脑分支杆菌个体群来说是唯一的。确定老品种和樟子松的S-RNase基因型将使其引入新的育种策略。由于樟子松(M. sylvestris)已成为比利时的濒危物种,因此这项研究中收集到的知识将成为选择有用的基因型进行核心收藏的重要工具。

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  • 来源
    《Molecular Breeding》 |2010年第4期|p.693-709|共17页
  • 作者单位

    Laboratory for Fruit Breeding and Biotechnology, KULeuven, Division of Crop Biotechnics, Willem de Croylaan 42, box 2427, 3001, Heverlee, Belgium;

    Department of Plant Systems Biology, Flemish Institute of Biotechnology, Technologiepark 927, 9052, Ghent, Belgium;

    Laboratory for Fruit Breeding and Biotechnology, KULeuven, Division of Crop Biotechnics, Willem de Croylaan 42, box 2427, 3001, Heverlee, Belgium;

    Laboratory for Fruit Breeding and Biotechnology, KULeuven, Division of Crop Biotechnics, Willem de Croylaan 42, box 2427, 3001, Heverlee, Belgium;

    Plant Genetic Resources Unit, USDA-ARS, North Street, Geneva, NY, 14456, USA;

    Institute for Agricultural and Fisheries Research, Unit PLANT, Growth and Development, Caritasstraat 21, 9090, Melle, Belgium;

    Laboratory for Fruit Breeding and Biotechnology, KULeuven, Division of Crop Biotechnics, Willem de Croylaan 42, box 2427, 3001, Heverlee, Be;

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

    Malus × domestica; Malus sylvestris; Gametophytic self-incompatibility; Hypervariable region; SCAR; S-allele-specific PCR;

    机译:海棠×家蝇;樟子松;配子体自交不亲和;高变区;SCAR;S-等位基因特异性PCR;

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