首页> 外文期刊>Tree Genetics & Genomes >High-density linkage maps constructed in sweet cherry (Prunus avium L.) using cross- and self-pollination populations reveal chromosomal homozygosity in inbred families and non-syntenic regions with the peach genome
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High-density linkage maps constructed in sweet cherry (Prunus avium L.) using cross- and self-pollination populations reveal chromosomal homozygosity in inbred families and non-syntenic regions with the peach genome

机译:利用交叉授粉和自花授粉种群在甜樱桃(Prunus avium L.)中构建的高密度连锁图谱揭示了桃子基因组的近交家族和非同系区域的染色体纯合性

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摘要

The landrace sweet cherry (Prunus avium L.) cultivar 'Cristobalina' is a useful resource for sweet cherry breeding due to several important traits, including low chilling requirement, early maturity date, and self-compatibility. In this work, three families (N = 325), derived from 'Cristobalina', were used to develop high-density genetic maps using the RosBREED 6K Illumina Infinium (R) cherry SNP array. Two of the families were derived from self-pollination, which allowed construction of the first F-2 genetic maps in the species. The other map developed was from an interspecific cross of cultivars 'Vic' x 'Cristobalina'. The maps developed include 511 to 816 mapped SNPs covering 622.4 to 726.0 cM. Mapped SNP marker order and position were compared to the sweet cherry and peach genome sequences, and a high degree of synteny was observed. However, inverted and small translocated regions between peach and sweet cherry genomes were observed with the most noticeable inversion at the top of LG5. The progeny resulting from self-pollination also revealed a high level of homozygosity, as large presumably homozygous regions as well as entire homozygous LGs were observed. These maps will be used for genetic analysis of relevant traits in sweet cherry breeding by QTL analysis, and self-pollination populations will be useful for investigating inbreeding depression in a naturally outbreeding species.
机译:地方品种甜樱桃(Prunus avium L.)品种'Cristobalina'是甜樱桃育种的有用资源,因为它具有以下几个重要特征,包括低温需求低,成熟期早和自溶性。在这项工作中,使用来自RosBREED 6K Illumina Infinium(R)樱桃SNP阵列的三个家族(N = 325)衍生自“ Cristobalina”,以开发高密度遗传图谱。其中两个家族来自自花授粉,这使得该物种可以构建第一个F-2遗传图谱。绘制的另一张地图来自品种'Vic'x'Cristobalina'的种间杂交。开发的地图包括511至816个SNP,覆盖622.4至726.0 cM。将映射的SNP标记顺序和位置与甜樱桃和桃子基因组序列进行比较,并观察到高度的同义度。然而,观察到桃子和甜樱桃基因组之间的倒置和小的易位区域,其中LG5的顶部倒置最明显。自花授粉产生的后代也显示出高水平的纯合性,因为观察到大的纯合区域以及整个纯合LG。这些图谱将用于通过QTL分析对甜樱桃育种的相关性状进行遗传分析,并且自花授粉种群将有助于调查自然近交物种的近交衰退。

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  • 来源
    《Tree Genetics & Genomes》 |2018年第3期|37.1-37.14|共14页
  • 作者单位

    Univ Zaragoza, Ctr Invest & Tecnol Agroalimentaria Aragon CITA, Inst Agroalimentario Aragon IA2, Unidad Hortofruticultura,CITA, Ave Montanana 930, Zaragoza 50059, Spain;

    Michigan State Univ, Dept Hort, 1066 Bogue St, E Lansing, MI 48824 USA;

    Michigan State Univ, Dept Hort, 1066 Bogue St, E Lansing, MI 48824 USA;

    Univ Zaragoza, Ctr Invest & Tecnol Agroalimentaria Aragon CITA, Inst Agroalimentario Aragon IA2, Unidad Hortofruticultura,CITA, Ave Montanana 930, Zaragoza 50059, Spain;

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

    Sweet cherry 6K SNP array; Geneticmap; 'Cristobalina'; Homozygosity; Self-compatibility;

    机译:甜樱桃6K SNP阵列;遗传图谱;'Cristobalina';纯合性;自相容性;

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