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Genetic Changes Following Hybridization and Genome Doubling in Synthetic Brassica napus

机译:甘蓝型油菜杂交后的遗传变化和基因组加倍

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Genetic changes were investigated in two sets of independently synthesized Brasscia napus allopolyploids by the AFLP approach in the present study. We found that 1.17 % of the loci showed genetic changes following both hybridization and genome doubling in the synthesized B. napus F04J2 relative to its diploid progenitors, B. rapa (AA genome) and B. oleracea (CC genome). No significant difference between the proportion of A-genome-specific genetic changes and that of C-genome-specific genetic changes was detected in B. napus F04J2. Approximately 0.6 % of the loci displayed genetic changes following somatic genome doubling in the amphidiploid B. napus DCE11 relative to the amphihaploid in the dimorphic plants. This study showed that rapid genetic changes occurred after hybridization and/or genome doubling in synthesized B. napus allopolyploids and indicated that both hybridization and genome doubling could affect the genomic architecture in newly formed allopolyploids.
机译:在本研究中,通过AFLP方法研究了两组独立合成的甘蓝型油菜异源多倍体的遗传变化。我们发现相对于其二倍体祖先B. rapa(AA基因组)和B. oleracea(CC基因组),在合成的甘蓝型油菜F04J2中,杂交和基因组加倍后,有1.17%的基因座显示出遗传变化。在甘蓝型油菜F04J2中,检测到A基因组特异性遗传变化的比例与C基因组特异性遗传变化的比例之间没有显着差异。相对于双态植物中的两亲生物,在双倍体油菜DCE11中体细胞基因组加倍后,约有0.6%的基因座显示出遗传变化。这项研究表明,在合成的甘蓝型油菜异源多倍体中杂交和/或基因组加倍后发生了快速的遗传变化,并且表明杂交和基因组倍增都可能影响新形成的异源多倍体的基因组结构。

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