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Impact of Chromosomal Rearrangements on the Interpretation of Lupin Karyotype Evolution

机译:染色体重排对羽扇豆核型进化的解释

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摘要

Plant genome evolution can be very complex and challenging to describe, even within a genus. Mechanisms that underlie genome variation are complex and can include whole-genome duplications, gene duplication and/or loss, and, importantly, multiple chromosomal rearrangements. Lupins (Lupinus) diverged from other legumes approximately 60 mya. In contrast to New World lupins, Old World lupins show high variability not only for chromosome numbers (2n = 32–52), but also for the basic chromosome number (x = 5–9, 13) and genome size. The evolutionary basis that underlies the karyotype evolution in lupins remains unknown, as it has so far been impossible to identify individual chromosomes. To shed light on chromosome changes and evolution, we used comparative chromosome mapping among 11 Old World lupins, with Lupinus angustifolius as the reference species. We applied set of L. angustifolius-derived bacterial artificial chromosome clones for fluorescence in situ hybridization. We demonstrate that chromosome variations in the species analyzed might have arisen from multiple changes in chromosome structure and number. We hypothesize about lupin karyotype evolution through polyploidy and subsequent aneuploidy. Additionally, we have established a cytogenomic map of L. angustifolius along with chromosome markers that can be used for related species to further improve comparative studies of crops and wild lupins.
机译:植物基因组的进化可能非常复杂且难以描述,即使在一个属中也是如此。基因组变异的基础机制很复杂,可能包括全基因组重复,基因重复和/或丢失,以及重要的是多个染色体重排。羽扇豆(羽扇豆)与其他豆科植物约有60八哥的分叉。与新世界羽扇豆相反,旧世界羽扇豆不仅对染色体数目(2n = 32–52),而且对基本染色体数目(x = 5–9,13)和基因组大小显示出高度的变异性。羽扇豆核型进化基础的进化基础仍是未知的,因为迄今为止无法鉴定单个染色体。为了阐明染色体的变化和进化,我们使用了11个旧世界羽扇豆中的比较染色体作图,其中羽扇豆为参考物种。我们应用了一组来自L. angustifolius的细菌人工染色体克隆进行荧光原位杂交。我们证明,所分析物种的染色体变异可能是由于染色体结构和数量的多重变化引起的。我们假设通过多倍体和随后的非整倍性,关于羽扇豆核型的进化。此外,我们已经建立了古氏乳杆菌的细胞基因组图谱以及可用于相关物种的染色体标记,以进一步改善农作物和野生羽扇豆的比较研究。

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