Vidal S M, Epstein D J, Malo D, Weith A, Vekemans M, Gros P
Department of Biochemistry, McGill University, Montreal, Canada.
Genomics. 1992 Sep;14(1):32-7. doi: 10.1016/s0888-7543(05)80279-4.
Six independent DNA probes, lambda Mm1C-150, lambda Mm1C-153, lambda Mm1C-156, lambda Mm1C-162, lambda Mm1C-163, and lambda Mm1C-165, have been isolated from a library of microdissected fragments from mouse chromosome 1, spanning cytogenetic bands C2 to C5. These DNA probes have been mapped by restriction fragment length polymorphism analysis with respect to 12 marker loci previously assigned to this portion of mouse chromosome 1, in a panel of 251 segregating Mus spretus x C57BL/6J interspecific backcross mice. The gene order and intergene distances were determined by segregation analysis to be centromere- lambda Mm1C-162-11.1 cM-Col3a1-8.8 cM-Len-2-2.6 cM-lambda Mm1C-163-1.6 cM-Fn-1-1.6 cM-Tp-1-0.8 cM-lambda Mm1C-165/Vil-0.4 cM-Inha-2.8 cM-lambda Mm1C-153-2.4 cM-lambda Mm1C-156-1.2 cM-Pax-3-5.6 cM-Akp-3-0.8 cM-Acrg-2.0 cM-Sag-0.5 cM-Col6a3-1.8 cM-lambda Mm1C-150-15.4 cM-Ren1,2. Four of these probes map within a chromosome 1 segment that is homologous to human chromosome 2q. Southern blotting analyses indicate that one of these anonymous probes, lambda Mm1C-165, detects DNA fragments highly conserved across species. These novel polymorphic probes should prove useful for linkage and physical mapping of this chromosomal region.
已从鼠1号染色体显微切割片段文库中分离出6个独立的DNA探针,即λMm1C - 150、λMm1C - 153、λMm1C - 156、λMm1C - 162、λMm1C - 163和λMm1C - 165,该文库覆盖细胞遗传学带C2至C5。在一组251只分离的小家鼠×C57BL/6J种间回交小鼠中,通过限制性片段长度多态性分析,将这些DNA探针相对于先前定位到鼠1号染色体这一部分的12个标记基因座进行了定位。通过分离分析确定基因顺序和基因间距离为:着丝粒 - λMm1C - 162 - 11.1厘摩 - Col3a1 - 8.8厘摩 - Len - 2 - 2.6厘摩 - λMm1C - 163 - 1.6厘摩 - Fn - 1 - 1.6厘摩 - Tp - 1 - 0.8厘摩 - λMm1C - 165/Vil - 0.4厘摩 - Inha - 2.8厘摩 - λMm1C - 153 - 2.4厘摩 - λMm1C - 156 - 1.2厘摩 - Pax - 3 - 5.6厘摩 - Akp - 3 - 0.8厘摩 - Acrg - 2.0厘摩 - Sag - 0.5厘摩 - Col6a3 - 1.8厘摩 - λMm1C - 150 - 15.4厘摩 - Ren1,2。其中4个探针定位于1号染色体上与人类2号染色体q臂同源的一个区段内。Southern印迹分析表明,这些匿名探针之一λMm1C - 165能检测到跨物种高度保守的DNA片段。这些新的多态性探针对于该染色体区域的连锁和物理图谱构建应是有用的。