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首页> 外文期刊>Cytogenetic and genome research >Chromosomes of tuatara, Sphenodon, chromosome heteromorphism and an archaic reptilian karyotype
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Chromosomes of tuatara, Sphenodon, chromosome heteromorphism and an archaic reptilian karyotype

机译:tuatara,Sphenodon,染色体异质性和古爬行动物核型的染色体

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摘要

We examined karyotypes of the endemic New Zealand reptile genus Sphenodon (tuatara) from five populations, finding a karyotype unchanged for at least one million years. Animals karyotyped were from five geographically distinct populations, representing three groups, namely S. guntheri, S. punctatus (Cook Strait group), and S. punctatus (northeastern North Island group). All five populations have a diploid chromosome number of 2n = 36, consisting of 14 pairs of macrochromosomes and four pairs of microchromosomes. Chromosomal differences were not found between the five populations nor between female and male animals, except for one animal with a structural heteromorphism. Similarity between Sphenodon and Testudine karyotypes suggests an ancestral karyotype with a macrochromosome complement of 14 pairs and the ability to accumulate variable numbers of microchromosome pairs. Our research supports molecular phylogenies of the Reptilia.
机译:我们检查了来自五个种群的新西兰特有爬行动物类Sphenodon(tuatara)的核型,发现其核型至少在一百万年没有变化。核型动物来自五个地理上不同的种群,代表三个群,即古氏链球菌,马尾草(库克海峡群)和马尾草(北岛北岛群)。所有五个种群的二倍体染色体数均为2n = 36,由14对大染色体和4对微染色体组成。在五个种群之间以及在雌性和雄性动物之间都没有发现染色体差异,除了一只具有结构异质性的动物。 Sphenodon和Testudine核型之间的相似性表明,祖先核型具有14对大染色体互补体,并且能够累积可变数目的微染色体对。我们的研究支持Reptilia的分子系统发育。

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