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首页> 外文期刊>Genome >Genome doubling and chromosome elimination with fragment recombination leading to the formation of Brassica rapa-type plants with genomic alterations in crosses with Orychophragmus violaceus
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Genome doubling and chromosome elimination with fragment recombination leading to the formation of Brassica rapa-type plants with genomic alterations in crosses with Orychophragmus violaceus

机译:基因组加倍和染色体消除与片段重组导致形成与基因组成发生突变的甘蓝型油菜类型的植物,与杂交稻(Orychophragmus violaceus)杂交

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摘要

In distant hybridization of plants, nonclassical hybrids with unexpected chromosome complements, chromosome elimination, and genetic introgression have been well documented. We obtained intergeneric hybrids between Brassica rapa, B. rapa var. chinensis, and another cruciferous species, Orychophragmus violaceus, following embryo rescue. Hybrids mainly displayed phenotypes of B. rapa, although certain O. violaceus or novel characteristics also appeared. Variable numbers of chromosomes were observed in somatic cells in the roots of plantlets on medium and in ovaries and pollen mother cells (PMCs). However, higher numbers were recorded in the roots. GISH revealed that the majority of ovary cells and PMCs contained 20 chromosomes of B. rapa with or without individual O. violaceus chromosomes or fragments added or introgressed. AFLP analysis showed that fragments deleted from the B. rapa genome were much more frequent than novel and O. violaceus fragments. The mechanisms involved genome doubling and successive elimination of O. violaceus chromosomes accompanied by fragment recombination and introgression, producing B. rapa-type plants with modified genetic constitutions and phenotypes.
机译:在植物的远距离杂交中,具有非预期的染色体补体,染色体消除和基因渗入的非经典杂种已得到充分证明。我们获得了甘蓝型油菜,B。rapa var之间的属间杂种。胚胎抢救后,又发现了一种中国十字花科植物和另一种十字花科物种Orychophragmus violaceus。杂种主要表现出B. rapa的表型,尽管也出现了某些O. violaceus或新特征。在培养基中的小植株根部的卵巢,花粉母细胞(PMC)中的体细胞中观察到了可变数量的染色体。但是,在根中记录到更高的数量。 GISH揭示,大多数卵巢细胞和PMC含有20个B. rapa染色体,有或没有个别的O. violaceus染色体或添加或渗入的片段。 AFLP分析表明,从新芽孢杆菌基因组中缺失的片段比新片段和紫罗兰片段更为频繁。该机制涉及基因组加倍和连续灭绝紫罗兰色染色体,伴随片段重组和基因渗入,产生具有改良的遗传组成和表型的B. rapa型植物。

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