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荧光原位杂交揭示的蝙蝠染色体进化:对蝙蝠祖先核型的持续探索。

Chromosome evolution in bats as revealed by FISH: the ongoing search for the ancestral chiropteran karyotype.

作者信息

Volleth M, Eick G

机构信息

Department of Human Genetics, Otto-von-Guericke-University, Magdeburg, Germany.

出版信息

Cytogenet Genome Res. 2012;137(2-4):165-73. doi: 10.1159/000338929. Epub 2012 Jun 2.

Abstract

Chiroptera, the second largest order of mammals, comprises more than 1,000 species in 18 highly morphologically diverse families. Chromosome painting with human probes has been applied to 10 bat species from 8 families. Except for the combination 10/12pq/22q, all syntenic segmental associations proposed for the mammalian ancestor have been found in Chiroptera. Bat-specific painting probes, established from 4 species of 3 families, have been used in whole chromosome painting experiments in 29 species from 8 families. The results show that the prevailing mode of chromosomal evolution in bats is Robertsonian translocation with a large number of convergent events. Given our present knowledge of chiropteran karyotypes, only a few elements of the ancestral chiropteran karyotype can be reconstructed with confidence.

摘要

翼手目是哺乳动物的第二大目,由18个形态高度多样的科中的1000多种物种组成。用人源探针进行染色体涂染已应用于来自8个科的10种蝙蝠。除了10/12pq/22q组合外,所有为哺乳动物祖先提出的同线节段关联在翼手目中都已被发现。从3个科的4个物种中建立的蝙蝠特异性涂染探针,已用于来自8个科的29个物种的全染色体涂染实验。结果表明,蝙蝠染色体进化的主要模式是罗伯逊易位,且有大量趋同事件。鉴于我们目前对翼手目核型的了解,只有少数祖先翼手目核型的元件能够被可靠地重建。

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