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利用经典和分子细胞遗传学技术鉴别土耳其2n = 60的白齿竹鼠细胞型(竹鼠科,啮齿目)

Discrimination of 2n = 60 Spalax leucodon cytotypes (Spalacidae, Rodentia) in Turkey by means of classical and molecular cytogenetic techniques.

作者信息

Ivanitskaya E, Sozen M, Rashkovetsky L, Matur F, Nevo E

机构信息

Institute of Evolution, University of Haifa, Haifa, Israel.

出版信息

Cytogenet Genome Res. 2008;122(2):139-49. doi: 10.1159/000163091. Epub 2008 Dec 18.

Abstract

Comparative studies among seven populations of 2n = 60 S. leucodon employing classic cytogenetics (G- bands, C-bands, AgNOR-staining), fluorochrome staining, and fluorescence in situ hybridization of telomeric and rDNA probes are reported here for the first time. The studied specimens were assigned to two cytotypes: 2n = 60W and 2n = 60R. The basic karyotype of both cytotypes consisted of eight pairs of subtelocentric and 21 pairs of acrocentric autosomes, subtelocentric X and acrocentric Y chromosomes. Both cytotypes had variable numbers of B-chromosomes (1-3) and variable numbers of autosomal arms (NFa = 74-76) caused by amplification (deletion) of heterochromatin short arms in the second pair. The short arms of subtelocentric chromosomes were comprised of heterochromatin in both cytotypes. Nucleolar organizer regions (NORs) and rDNA clusters were detected at telomeric sites of the short arms in pairs Nos. 3, 5, 6, 9, and 13 in cytotype W, and in the short arms of pair No. 6, 8, 12, 13, and 16 in cytotype R. Different locations of rDNA clusters allowed unambiguous discrimination between two S. leucodon cytotypes possessing the same 2n = 60 and similar NFa (74-76) variability. Our findings suggest a high level of chromosomal divergence, which means that it is possible to consider these cytotypes as a well-differentiated, chromosomal lineage within the leucodon group.

摘要

本文首次报道了运用经典细胞遗传学(G带、C带、AgNOR染色)、荧光染料染色以及端粒和rDNA探针的荧光原位杂交技术,对2n = 60的七种白齿鼩鼱种群进行的比较研究。所研究的标本被分为两种细胞型:2n = 60W和2n = 60R。两种细胞型的基本核型均由八对亚端着丝粒染色体和21对近端着丝粒常染色体、亚端着丝粒X染色体和近端着丝粒Y染色体组成。两种细胞型都有可变数量的B染色体(1 - 3条),并且由于第二对染色体异染色质短臂的扩增(缺失),常染色体臂数也可变(NFa = 74 - 76)。两种细胞型中亚端着丝粒染色体的短臂均由异染色质组成。在细胞型W的第3、5、6、9和13对染色体短臂的端粒位点检测到核仁组织区(NORs)和rDNA簇,在细胞型R的第6、8、12、13和16对染色体短臂检测到。rDNA簇的不同位置使得具有相同2n = 60和相似NFa(74 - 76)变异的两种白齿鼩鼱细胞型能够被明确区分。我们的研究结果表明存在高度的染色体分化,这意味着有可能将这些细胞型视为白齿鼩鼱组内一个分化良好的染色体谱系。

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