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人类13号染色体物理图谱与遗传连锁图谱的整合

Integration of the physical and genetic linkage map for human chromosome 13.

作者信息

Hawthorn L, Cowell J K

机构信息

ICRF Oncology Group, Institute of Child Health, London, United Kingdom.

出版信息

Genomics. 1995 Jun 10;27(3):399-404. doi: 10.1006/geno.1995.1069.

Abstract

We have used a panel of somatic cell hybrids containing different rearrangements of human chromosome 13 to integrate genetic and physical maps of this chromosome. The positions of 17 translocation/deletion breakpoints on human chromosome 13 have been determined relative to the microsatellite markers on the genetic linkage map compiled by Généthon. Because markers on maps from several other Consortium groups have also been analyzed using many of the same hybrids, it was possible to relate these with the Généthon map. The position of all of the chromosome breakpoints have been placed, wherever possible, between two adjacent markers on the genetic linkage maps using PCR analysis for the presence/absence of the markers in the somatic cell hybrids. The positions of the breakpoints have already been determined cytogenetically, and some of these breakpoints are located at landmark positions on the chromosome. The relative density of markers along the chromosome differs between independently derived maps, and, based on the known locations of certain breakpoints in the physical map, inconsistencies in the genetic maps have been identified.

摘要

我们使用了一组包含人类13号染色体不同重排的体细胞杂种,以整合该染色体的遗传图谱和物理图谱。已确定了人类13号染色体上17个易位/缺失断点相对于由Généthon编制的遗传连锁图谱上微卫星标记的位置。由于其他几个联盟小组图谱上的标记也使用了许多相同的杂种进行了分析,因此有可能将它们与Généthon图谱关联起来。使用PCR分析体细胞杂种中标记的存在与否,尽可能将所有染色体断点的位置置于遗传连锁图谱上两个相邻标记之间。断点的位置已经通过细胞遗传学方法确定,其中一些断点位于染色体上的标志性位置。沿着染色体的标记相对密度在独立推导的图谱之间有所不同,并且基于物理图谱中某些断点的已知位置,已识别出遗传图谱中的不一致之处。

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