Biltueva L S, Yang F, Vorobieva N V, Graphodatsky A S
Institute of Cytology and Genetics, Novosibirsk, Russia.
Mamm Genome. 2004 Oct;15(10):809-18. doi: 10.1007/s00335-004-2391-3.
Cross-species chromosome painting with probes derived from flow-sorted dog and human chromosomes was used to construct a high-resolution comparative map for the pig. In total 98 conserved autosomal segments between pig and dog were detected by probes specific for the 38 autosomes and X Chromosome of the dog. Further integration of our results with the published human--dog and cat--dog comparative maps, and with data from comparative gene mapping, increases the resolution of the current pig--human comparative map. It allows for the conserved syntenies detected in the pig, human, and cat to be aligned against the putative ancestral karyotype of eutherian mammals and for the history of karyotype evolution of the pig lineage to be reconstructed. Fifteen fusions, 17 fissions, and 23 inversions are required to convert the ancestral mammalian karyotype into the extant karyotype of the pig.
利用从流式分选的犬和人类染色体中获得的探针进行跨物种染色体描绘,构建了猪的高分辨率比较图谱。用犬38条常染色体和X染色体的特异性探针,共检测到猪和犬之间98个保守的常染色体片段。将我们的结果与已发表的人-犬和猫-犬比较图谱以及比较基因定位数据进一步整合,提高了当前猪-人比较图谱的分辨率。这使得在猪、人类和猫中检测到的保守同线性能够与真兽类哺乳动物的假定祖先核型进行比对,并重建猪谱系的核型进化历史。将祖先哺乳动物核型转化为猪的现存核型需要15次融合、17次裂变和23次倒位。