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Microstructure of a Brassica rapa genome segment homoeologous to the resistance gene cluster on Arabidopsis chromosome 4.

机译:与拟南芥第4号染色体抗性基因簇同源的甘蓝型油菜基因组片段的微结构。

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Genome evolution is a continuous process and genomic rearrangement occurs both within and between species. With the sequencing of the Arabidopsis thaliana genome, comparative genetics and genomics offer new insights into plant biology. The genus Brassica offers excellent opportunities with which to compare genomic synteny so as to reveal genome evolution. During a previous genetic analysis of clubroot resistance in Brassica rapa, we identified a genetic region that is highly collinear with Arabidopsis chromosome 4. This region corresponds to a disease resistance gene cluster in the A. thaliana genome. Relying on synteny with Arabidopsis, we fine-mapped the region and found that the location and order of the markers showed good correspondence with those in Arabidopsis. Microsynteny on a physical map indicated an almost parallel correspondence, with a few rearrangements such as inversions and insertions. The results show that this genomic region of Brassica is conserved extensively with that of Arabidopsis and has potential as a disease resistance gene cluster, although the genera diverged 20 million years ago.
机译:基因组进化是一个连续的过程,基因组重排发生在物种内部和物种之间。通过拟南芥基因组测序,比较遗传学和基因组学为植物生物学提供了新见识。芸苔属提供了比较基因组同义性以揭示基因组进化的绝佳机会。在之前对甘蓝型油菜根肿病抗性的遗传分析中,我们确定了一个与拟南芥第4号染色体高度共线的遗传区域。该区域对应于拟南芥基因组中的抗病基因簇。依靠与拟南芥的同构,我们对该区域进行了精细映射,发现标记的位置和顺序与拟南芥中的标记具有良好的对应性。物理图谱上的微同调表示几乎平行的对应关系,但有一些重新排列,例如反转和插入。结果表明,尽管芸苔属的这个基因组已经分化了两千万年前,但它的基因组区域与拟南芥属的基因组区域相比具有广泛的保守性,并具有作为抗病基因簇的潜力。

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