首页> 外文期刊>African Journal of Biotechnology >Assessment of karyotypical variation among 16 populations of Thymus daenensis Celak and Thymus kotschyanus Boiss. species in Iran
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Assessment of karyotypical variation among 16 populations of Thymus daenensis Celak and Thymus kotschyanus Boiss. species in Iran

机译:评估百里香百里香百里香和百里香百里香16种群的核型变异。伊朗的物种

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In order to study the cytological variation between Iranian native?Thymus, karyotypes of two taxa (16 populations) from different geographic origins were presented. The ploidy level was different in populations belonging to?T. kotschyanus?(2x and 4x), but the same level was found (2x) in?T. daenensis?populations. According to intrachromosomal asymmetry,?T. daenensis?(10534) had the most asymmetrical and evolutionary karyotype and?T. kotschyanus?(10513) had the most symmetrical karyotype in all of the populations.?While based on interchromosomal asymmetry, among diploid populations,?T. daenensis?(10535) and among tetraploid populations, only?T. kotschyanus?(10515) had the most asymmetrical karyotype.?In terms of the Stebbins’ system, the karyotype were of populations seizes 1A classes.?The results of analysis of variance revealed significant differences between the populations based on all karyotypic characteristics (P<%1).?The results of cluster analysis showed that populations of each species?T. daenensis?and?T. kotschyanus?have been grouped in separate cluster. The results seemed to provide enough genetic evidence to identify the species and useful data to clarify the interspecific relationships. Detailed karyotype analysis allows us to group the different populations and to specify their relationships.
机译:为了研究伊朗本地胸腺之间的细胞学差异,提出了来自不同地理起源的两个分类群(16个种群)的核型。在属于?T的人群中,倍性水平是不同的。 kotschyanus?(2x和4x),但在?T中发现了相同的水平(2x)。 daenensis?人口。根据染色体内不对称性,ΔT。 daenensis(10534)具有最不对称和进化的核型和T。 Kotschyanus(10513)在所有种群中具有最对称的核型。尽管基于染色体间不对称性,在二倍体种群中,T。 daenensis(10535)和四倍体种群中,只有T。 Kotschyanus(10515)的核型最不对称。就Stebbins系统而言,核型属于1A类种群。 %1)。?聚类分析的结果表明,每个物种的种群数量为T。 daenensis和T. kotschyanus?已分组在单独的群集中。结果似乎提供了足够的遗传证据来鉴定物种,并提供了有用的数据来阐明种间关系。详细的染色体核型分析使我们能够对不同的人群进行分组并指定它们之间的关系。

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