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首页> 外文期刊>Comparative Cytogenetics >Patterns of chromosomal variation in Mexican species of Aeschynomene (Fabaceae, Papilionoideae) and their evolutionary and taxonomic implications
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Patterns of chromosomal variation in Mexican species of Aeschynomene (Fabaceae, Papilionoideae) and their evolutionary and taxonomic implications

机译:墨西哥葡萄糖物种(Fabaceae,Papilioneae)及其进化分类和分类症状的染色体变异模式及其进化

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A cytogenetic analysis of sixteen taxa of the genus Aeschynomene Linnaeus, 1753, which includes species belonging to both subgenera Aeschynomene (Léonard, 1954) and Ochopodium (Vogel, 1838) J. Léonard, 1954, was performed. All studied species had the same chromosome number (2n = 20) but exhibited karyotype diversity originating in different combinations of metacentric, submetacentric and subtelocentric chromosomes, chromosome size and number of SAT chromosomes. The plasticity of the genomes included the observation in a taxon belonging to the subgenus Aeschynomene of an isolated spherical structure similar in appearance to the extra chromosomal circular DNA observed in other plant genera. By superimposing the karyotypes in a recent phylogenetic tree, a correspondence between morphology, phylogeny and cytogenetic characteristics of the taxa included in the subgenus Aeschynomene is observed. Unlike subgenus Aeschynomene, the species of Ochopodium exhibit notable karyotype heterogeneity. However the limited cytogenetic information recorded prevents us from supporting the proposal of their taxonomic separation and raise it to the genus category. It is shown that karyotype information is useful in the taxonomic delimitation of Aeschynomene and that the diversity in the diploid level preceded the hybridization/polyploidization demonstrated in the genus. The systematic implications of our results and their value can be extended to other Dalbergieae genera as knowledge about the chromosomal structure and its evolution increases.
机译:在AESchynomene Linnaeus,1753年的十六个分类群的细胞遗传学分析包括属于属于亚因子Aeschynomene(Léonard,1954)和Ochopodium(Vogel,1838)J.Léonard,1954年的物种。所有研究的物种具有相同的染色体数(2N = 20),但始于核素型多样性,源自联位,潜艇和细胞传递染色体,染色体大小和饱和染色体的染色体大小和数量。基因组的可塑性包括在属于孤立的球形结构的子宫eeschynomene的分类蛋白的观察,其在其他植物属中观察到的额外染色体圆形DNA。通过在最近的系统发育树中叠加核型,观察到包括在亚昔突中包含的类别的形态,系统发育和细胞遗传学特性之间的对应关系。与子公司Aeschynomene不同,Ochopodium的种类表现出显着的核型异质性。然而,记录的有限的细胞遗传学信息可防止我们支持其分类分类的提议并将其提高到属类别中。结果表明,核型信息可用于Aeschynomene的分类学界定,并且二倍体水平的多样性在本体中证明的杂交/多倍体化之前。我们的结果和其价值的系统含义可以扩展到其他达伯格伊世代作为关于染色体结构的知识及其进化增加。

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