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Comparatively Barcoded Chromosomes of Brachypodium Perennials Tell the Story of Their Karyotype Structure and Evolution

机译:相对比条形码的短命黑麦草多年生植物的染色体核型结构和进化的故事。

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摘要

The genus is an informative model system for studying grass karyotype organization. Previous studies of a limited number of species and reference chromosomes have not provided a comprehensive picture of the enigmatic phylogenetic relationships in the genus. Comparative chromosome barcoding, which enables the reconstruction of the evolutionary history of individual chromosomes and their segments, allowed us to infer the relationships between putative ancestral karyotypes of extinct species and extant karyotypes of current species. We used over 80 chromosome-specific BAC (bacterial artificial chromosome) clones derived from five reference chromosomes of as probes against the karyotypes of twelve accessions representing five diploid and polyploid perennials. The results showed that descending dysploidy is common in and occurs primarily via nested chromosome fusions. was rejected as a putative ancestor for allotetraploid perennials and for We propose two alternative models of perennial polyploid evolution involving either the incorporation of a putative = 5 ancestral karyotype with different descending dysploidy patterns compared to chromosomes or hybridization of two = 9 ancestors followed by genome doubling and descending dysploidy. Details of the karyotype structure and evolution in several perennials are revealed for the first time.
机译:该属是用于研究草核型组织的信息模型系统。先前对数量有限的物种和参考染色体的研究尚未提供该属中神秘的系统发育关系的全面描述。比较染色体条形码可以重建单个染色体及其片段的进化历史,从而使我们能够推断出已灭绝物种的假定祖先核型与当前物种的现存核型之间的关系。我们使用了来自80个染色体的BAC(细菌人工染色体)克隆,该克隆来自5个参考染色体,作为针对代表5个二倍体和多倍体多年生植物的12个种质的核型的探针。结果表明,二倍体下降是常见的,主要通过嵌套染色体融合发生。 被拒绝作为异源四倍体多年生植物的推定祖先,对于我们,我们提出了两种多年生多倍体进化的替代模型,其中包括与染色体相比,推定= 5个祖先染色体核型具有不同的递减二倍体模式,或杂交两个= 9个祖先,然后进行基因组加倍和下降的二倍体。首次揭示了几个多年生植物核型结构和进化的细节。

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