首页> 美国卫生研究院文献>other >Preferential Homologous Chromosome Pairing in a Tetraploid Intergeneric Somatic Hybrid (Citrus reticulata + Poncirus trifoliata) Revealed by Molecular Marker Inheritance
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Preferential Homologous Chromosome Pairing in a Tetraploid Intergeneric Somatic Hybrid (Citrus reticulata + Poncirus trifoliata) Revealed by Molecular Marker Inheritance

机译:四倍体间属体细胞杂种(柑桔+三角果)中的优先同源染色体配对通过分子标记遗传揭示。

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摘要

The creation of intergeneric somatic hybrids between Citrus and Poncirus is an efficient approach for citrus rootstock breeding, offering the possibility of combining beneficial traits from both genera into novel rootstock lineages. These somatic hybrids are also used as parents for further tetraploid sexual breeding. In order to optimize these latter breeding schemes, it is essential to develop knowledge on the mode of inheritance in the intergeneric tetraploid hybrids. We assessed the meiotic behavior of an intergeneric tetraploid somatic hybrid resulting from symmetric protoplast fusion of diploid Citrus reticulata and diploid Poncirus trifoliata. The analysis was based on the segregation patterns of 16 SSR markers and 9 newly developed centromeric/pericentromeric SNP markers, representing all nine linkage groups of the Citrus genetic map. We found strong but incomplete preferential pairing between homologues of the same ancestral genome. The proportion of gametes that can be explained by random meiotic chromosome associations (τ) varied significantly between chromosomes, from 0.09 ± 0.02 to 0.47 ± 0.09, respectively, in chromosome 2 and 1. This intermediate inheritance between strict disomy and tetrasomy, with global preferential disomic tendency, resulted in a high level of intergeneric heterozygosity of the diploid gametes. Although limited, intergeneric recombinations occurred, whose observed rates, ranging from 0.09 to 0.29, respectively, in chromosome 2 and 1, were significantly correlated with τ. Such inheritance is of particular interest for rootstock breeding because a large part of the multi-trait value selected at the teraploid parent level is transmitted to the progeny, while the potential for some intergeneric recombination offers opportunities for generating plants with novel allelic combinations that can be targeted by selection.
机译:在柑橘和庞氏类之间建立属间体细胞杂种是柑桔砧木育种的有效方法,提供了将两个属的有益性状组合到新的砧木谱系中的可能性。这些体细胞杂种还用作进一步四倍体性育种的亲本。为了优化这些后代的育种方案,必不可少的是要了解种间四倍体杂种的遗传模式。我们评估了由二倍体网状柑橘和二倍体三叶草的对称原生质体融合产生的属间四倍体体细胞杂种的减数分裂行为。该分析基于16个SSR标记和9个新开发的着丝粒/周生大肠SNP标记的分离模式,代表了柑橘遗传图谱的所有9个连锁群。我们发现相同祖先基因组的同源物之间存在强而不完全的优先配对。可通过随机减数分裂染色体关联(τ)解释的配子比例在两个染色体之间的染色体之间显着变化,分别在2号和1号染色体中从0.09±0.02到0.47±0.09。这种严格的二体性和四体性之间的中间遗传具有全局优先性二体配子的趋势,导致高水平的二倍体配子的属间杂合性。尽管有限,但发生了种间重组,在2号和1号染色体中观察到的发生率分别为0.09至0.29,与τ显着相关。这种遗传对于砧木育种特别重要,因为在四倍体亲本水平上选择的大部分多性状值会传递给后代,而某些种间重组的潜力为生成具有新等位基因组合的植物提供了机会。以选择为目标。

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