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通过经典和DNA复制带型分析的伊比利亚帝国鹰(Aquila adalberti)的核型。

The karyotype of the Iberian imperial eagle (Aquila adalberti) analyzed by classical and DNA replication banding.

作者信息

Padilla J A, Martinez-Trancón M, Rabasco A, Fernández-García J L

机构信息

Genética y Mejora Animal, Facultad de Veterinaria, Universidad de Extremadura, Cáceres, Spain.

出版信息

Cytogenet Cell Genet. 1999;84(1-2):61-6. doi: 10.1159/000015216.

Abstract

We report here for the first time the karyotype of the Iberian imperial eagle (Aquila adalberti). All eagles examined had a diploid number of 82 chromosomes and a greater number of microchromosomes (12 pairs) than has been found in all other species of the Accipitridae family. This karyotypic evidence corroborates the recent separation of A. adalberti from A. heliaca on the basis of molecular data. RB-FPG banding induced a specific banding pattern that allowed us to identify homologous chromosome pairs and revealed features about late and early replicating regions. Several chromosome banding techniques (C-, CMA3-, and restriction endonuclease banding and silver staining) were used to characterize the karyotype more accurately. Two GC-rich, late-replicating heterochromatin regions were found in the W chromosome. These regions are AluI resistant and can be used for sex determination in this species. All microchromosomes were heterochromatic, GC rich, and late replicating. Silver staining revealed active nucleolus organizing regions on a pair of microchromosomes that were entirely heterochromatic and stained intensely after CMA3-banding. Different chromosome rearrangements are discussed in order to establish the phylogenetic relationship between A. adalberti and its most closely related species, A. heliaca.

摘要

我们首次在此报告伊比利亚帝国鹰(Aquila adalberti)的核型。所有检测的鹰类二倍体染色体数均为82条,且微染色体数量(12对)比鹰科其他所有物种都多。这种核型证据证实了基于分子数据,A. adalberti最近已从A. heliaca中分离出来。RB - FPG显带诱导出一种特定的带型模式,使我们能够识别同源染色体对,并揭示了关于晚期和早期复制区域的特征。使用了几种染色体显带技术(C显带、CMA3显带、限制性内切酶显带和银染)来更准确地表征核型。在W染色体上发现了两个富含GC、晚期复制的异染色质区域。这些区域对AluI具有抗性,可用于该物种的性别鉴定。所有微染色体均为异染色质,富含GC且晚期复制。银染显示一对微染色体上有活跃的核仁组织区,这些微染色体完全是异染色质,在CMA3显带后染色强烈。讨论了不同的染色体重排,以确定A. adalberti与其关系最密切的物种A. heliaca之间的系统发育关系。

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