LOW-RESOLUTION MAPPING AROUND THE FLAVIVIRUS RESISTANCE LOCUS (FLV) ON MOUSE CHROMOSOME-5

被引:25
作者
UROSEVIC, N
MANSFIELD, JP
MACKENZIE, JS
SHELLAM, GR
机构
[1] Department of Microbiology, Queen Elizabeth II Medical Centre, University of Western Australia, Nedlands, 6009, Western Australia
关键词
D O I
10.1007/BF00360653
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Although the phenomenon of innate resistance to flaviviruses in mice was recognized many years ago, it was only recently that the genetic locus (Fiv) controlling this resistance was mapped to mouse Chromosome (Chr) 5. Here we report the fine mapping of the Flv locus, using 12 microsatellite markers which have recently been developed for mouse Chr 5. The new markers were genotyped in 325 backcross mice of both (C3H/HeJ x C3H/RV)F-1 x C3H/HeJ and (BALB/c x C3H/RV)F-1 x BALB/c backgrounds, relative to Fly. The composite genetic map that has been constructed identifies three novel microsatellite loci, D5Mit68, D5Mit159, and D5Mit242, tightly linked to the Fly locus. One of those loci, D5Mit159, showed no recombinations with Fly in any of the backcross mice analyzed, indicating tight linkage (43.3 cM). The other two, D5Mit68 and D5Mit242, exhibited two and one recombinations with Fly (0.6 and 0.3 cM) respectively, defining the proximal and distal boundaries of a 0.9-cM segment around this locus. The proximal flanking marker, D5Mit68, maps to a segment on mouse Chr 5 homologous to human Chr 4. This, together with the previous data produced by our group, locates Fly to a region on mouse Chr 5 carrying segments that are conserved on either human Chr 4, 12, or 7, but present knowledge does not allow precise identification of the syntenic element.
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页码:454 / 458
页数:5
相关论文
共 27 条
[1]  
BLANK RD, 1988, GENETICS, V120, P1073
[2]   A GENETIC-LINKAGE MAP OF THE MOUSE - CURRENT APPLICATIONS AND FUTURE-PROSPECTS [J].
COPELAND, NG ;
JENKINS, NA ;
GILBERT, DJ ;
EPPIG, JT ;
MALTAIS, LJ ;
MILLER, JC ;
DIETRICH, WF ;
WEAVER, A ;
LINCOLN, SE ;
STEEN, RG ;
STEIN, LD ;
NADEAU, JH ;
LANDER, ES .
SCIENCE, 1993, 262 (5130) :57-66
[3]  
COPELAND NG, 1993, SCIENCE, V262, P67
[4]   GENETICALLY DETERMINED RESISTANCE TO INFECTION WITH GROUP-B ARBOVIRUSES .1. DISTRIBUTION OF RESISTANCE GENE AMONG VARIOUS MOUSE POPULATIONS AND CHARACTERISTICS OF GENE-EXPRESSION IN-VIVO [J].
DARNELL, MB ;
KOPROWSKI, H ;
LAGERSPETZ, K .
JOURNAL OF INFECTIOUS DISEASES, 1974, 129 (03) :240-247
[5]  
DIETRICH W, 1992, GENETICS, V131, P423
[6]   A GENETIC-MAP OF THE MOUSE WITH 4,006 SIMPLE SEQUENCE LENGTH POLYMORPHISMS [J].
DIETRICH, WF ;
MILLER, JC ;
STEEN, RG ;
MERCHANT, M ;
DAMRON, D ;
NAHF, R ;
GROSS, A ;
JOYCE, DC ;
WESSEL, M ;
DREDGE, RD ;
MARQUIS, A ;
STEIN, LD ;
GOODMAN, N ;
PAGE, DC ;
LANDER, ES .
NATURE GENETICS, 1994, 7 (02) :220-245
[7]   STUDY OF MECHANISM OF INNATE RESISTANCE TO VIRUS INFECTION [J].
GOODMAN, GT ;
KOPROWSKI, H .
JOURNAL OF CELLULAR AND COMPARATIVE PHYSIOLOGY, 1962, 59 (03) :333-+
[8]  
GREEN MC, 1981, MOUSE BIOMEDICAL RES, V1, P105
[9]  
GREEN MC, 1989, MOUSE BIOMEDICAL RES, P12
[10]  
Green MC., 1989, GENETIC VARIANTS STR, P12