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Abbott, C. (1992).
Characterization of mouse-hamster somatic cell hybrids by PCR: A panel of mouse-specific primers for each chromosome. Mammalian Genome 2: 106-109.
See also MGI.

Adolph, S., and Klein, J. (1981).
Robertsonian variation in Mus musculus from Central Europe, Spain, and Scotland. J. Hered. 72: 139-142.
See also MGI.

Agulnik, A. I., Agulnik, S. I., and Ruvinsky, A. O. (1991).
Two doses of the paternal Tme gene do not compensate the lethality of the Thp deletion. J. Hered. 82: 351-353.
See also MEDLINE.

Aitman, T. J., Hearne, C. M., McAleer, M. A., and Todd, J. A. (1991).
Mononucleotide repeats are an abundant source of length variants in mouse genomic DNA. Mammal. Genome 1: 206-210.
See also MGI.

Altman, P. L., and Katz, D., eds. (1979).
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An extraterrestrial impact. Scientific American, p. 78-84.

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The Neolithic Transition and the Genetics of Populations in Europe. (Princeton University Press, Princeton, NJ USA).

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Biology and application of human minisatellite loci. Curr. Opin. Genet. Devel. 2: 850-856.
See also MEDLINE.

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Arnheim, N., Li, H., and Cui, X. (1990).
Review: PCR analysis of DNA sequences in single cells: Single sperm gene mapping and genetic disease diagnosis. Genomics 8: 415-419.
See also MEDLINE.

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Ovarian teratocarcinomas in LT/Sv mice carrying t-mutations. Dev Genet 8: 1-9.
See also MGI.

Asada, Y., Varnum, D. S., Frankel, W. N., and Nadeau, J. H. (1994).
A mutation in the Ter gene causing increased susceptibility to testicular teratomas maps to mouse chromosome 18. Nature Genetics 6: 363-368.
See also MGI.

Atchley, W. R., and Fitch, W. M. (1991).
Gene trees and the origins of inbred strains of mice. Science 254: 554-558.
See also MGI.

Auffray, J.-C., Marshall, J. T., Thaler, L., and Bonhomme, F. (1991).
Focus on the nomenclature of european species of mus. Mouse Genome 88: 7-8.

Auffray, J.-C., Vanlerberghe, F., and Britton-Davidian, J. (1990).
The house mouse progression in Eurasia: a palaeontological and archaeozoological approach. Biol. J. Linnean Soc. 41: 13-25.

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Genetics: Sweet mice, sugar daddies. Nature 351: 519-520.
See also MEDLINE.

Avner, P., Amar, L., Dandolo, L., and Guénet, J. L. (1988).
Genetic analysis of the mouse using interspecific crosses. Trends Genet. 4: 18-23.
See also MGI.

Bahary, N., Pachter, J. E., Felman, R., Leibel, R. L., Albright, K., Cram, S., and Friedman, J. M. (1992).
Molecular mapping of mouse chromosomes 4 and 6: use of a flow-sorted Robertsonian chromosome. Genomics 13: 761-769.
See also MGI.

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Recombinant-inbred strains. An aid to finding identity, linkage and funcion of histocompatibility and other genes. Transplantation 11: 325-327.
See also MGI.

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Sources of subline divergence and their relative importance for sublines of six major inbred strains of mice. In Origins of Inbred Mice, Morse, H. C., ed. (Academic Press, New York), pp. 423-438.

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Recombinant inbred strains and bilineal congenic strains. In The Mouse in Biomedical Research Vol. 1, Foster, H. L., Small, J. D., and Fox, J. G., eds. (Academic Press, New York), pp. 223-239.

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Genetic disease detection and DNA amplification using cloned thermostable ligase. Proc. Nat. Acad. Sci. USA 88: 189-193.
See also MEDLINE.

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Restriction sites containing CpG show a higher frequency of polymorphism in human DNA. Cell 36: 131-138.
See also MEDLINE.

Barlow, D., and Lehrach, H. (1990).
Partial Not I digests generated by low enzyme concentration or by the presence of ethidium bromide can be used to extend the range of physical mapping. Technique 2: 79-87.
See also MGI.

Barlow, D. P., and Leharch, H. (1987).
Genetics by gel electrophoresis: the impact of pulsed field gel electrophoresis on mammalian genetics. Trend. Genet. 3: 167-171.

Barlow, D. P., Stoger, R., Herrmann, B. G., Saito, K., and Schweifer, N. (1991).
The mouse insulin-like growth factor type-2 receptor is imprinted and closely linked to the Tme locus. Nature 349: 84-87.
See also MGI.

Bartolomei, M. S., Zemel, S., and Tilghman, S. (1991).
Parental imprinting of the mouse H19 gene. Nature 351: 153-155.
See also MGI.

Barton, N. H., and Hewitt, G. M. (1989).
Adaptation, speciation and hybrid zones. Nature 341: 497-502.
See also MEDLINE.

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Single-strand conformation polymorphism (SSCP) analysis as a tool for genetic mapping. Mammal. Genome 4: 627-631.
See also MEDLINE.

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Mapping genes in the mouse using single-strand conformation polymorphism analysis of recombinant inbred strains and interspecific crosses. Proc. Nat. Acad. Sci. USA 89: 9102-9106.
See also MGI.

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Spermatogenic cells of the prepuberal mouse. Isolation and morphological characterization. J. Cell Biol. 74: 68-85.
See also MEDLINE.

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Berry, R. J., and Corti, M., eds. (1990).
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Berry, R. J., Jakobson, M. E., and Peters, J. (1987).
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Macquarie Island house mice: a genetical isolate on a sub-Antarctic island. J. Zool. 176: 375-389.

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See also MEDLINE.

Bird, A., Lavia, P., MacLeod, D., Lindsay, S., Taggart, M., and Brown, W. (1987).
Mammalian genes and islands of non-methylated CpG-rich DNA. In Human Genetics, Vogel, F. and Sperling, K., eds. (Springer-Verlag, Berlin), pp. 182-186.

Bird, A. P. (1986).
CpG-rich islands and the function of DNA methylation. Nature 321: 209-213.
See also MGI.

Bird, A. P. (1987).
CpG islands as gene markers in the vertebrate nucleus. Trend. Genet. 3: 342-347.

Bishop, C. E. (1992).
Mouse Y chromosome. Mammal. Genome 3: S289-S293.
See also MGI.

Bishop, C. E., Boursot, P., Baron, B., Bonhomme, F., and Hatat, D. (1985).
Most classical Mus musculus domesticus laboratory mouse strains carry a Mus musculus musculus Y chromosome. Nature 325: 70-72.
See also MGI.

Blanchetot, A., Price, M., and Jeffreys, A. J. (1986).
The mouse myoglobin gene. Eur. J. Biochem. 159: 469-474.
See also MGI.

Bode, V. C. (1984).
Ethylnitrosourea mutagenesis and the isolation of mutant alleles for specific genes located in the t-region of mouse chromosome 17. Genetics 108: 457-470.
See also MGI.

Boer, P. H., Adra, C. N., Lau, Y.-F., and McBurney, M. W. (1987).
The testis-specific phosphoglycerate kinase gene pgk-2 is a recruited retroposon. Mol. Cell. Biol. 7: 3107-3112.
See also MGI.

Bohlander, S. K., Espinosa, R., LeBeau, M. M., Rowley, J. D., and Diaz, M. O. (1992).
A method for the rapid sequence-independent amplification of microdissected chromosomal material. Genomics 13: 1322-1324.
See also MEDLINE.

Bonhomme, F. (1986).
Evolutionary relationships in the genus Mus. Curr. Topics Micro. Immunol. 127: 19-34.
See also MEDLINE.

Bonhomme, F., Benmehdi, F., Britton-Davidian, J., and Martin, S. (1979).
Analyse génétique de croisements interspécifiques Mus musculus L. X Mus spretus Lataste: liaison de Adh-1 avec Amy-1 sur le chromosome 3 et de Es-14 avec Mod-1 sur le chromosome 9. C. R. Acad. Sci. Paris 289: 545-548.
See also MGI.

Bonhomme, F., Britton-Davidian, J., Thaler, L., and Triantaphyllidis, C. (1978).
Sur l'existence en Europe de quatre groupes de souris (genre Mus L.) du rang espèce et semi-espèce, démontrée par la génétique biochimique. C.R. Acad. Sci. Paris 287: 631-633.
See also MEDLINE.

Bonhomme, F., Catalan, J., Britton-Davidian, J., V.M., C., Moriwaki, K., Nevo, E., and Thaler, L. (1984).
Biochemical diversity and evolution in the genus Mus. Biochem. Genet. 22: 275-303.
See also MGI.

Bonhomme, F., Catalan, J., Gerasimov, S., Orsini, P., and Thaler, L. (1983).
Le complexe d'espèces du genre Mus en Europe centrale et orientale. I. Génétique. Z. Säugetierkunde 48: 78-85.

Bonhomme, F., and Guénet, J.-L. (1989).
The wild house mouse and its relatives. In Genetic Variants and Strains of the Laboratory Mouse., Lyon, M. F. and Searle, A. G., eds. (Oxford University Press, Oxford), pp. 649-662.
See also MGI.

Bonhomme, F., Guénet, J.-L., and Catalan, J. (1982).
Prèsence d'un facteur de stérilité mâle, Hst-2, segrégant dans les croisements interspécifiques M. musculus L. x M. Spretus Lastaste et lié à Mod-1 et Mpi-1 sur le chromosome 9. C.R. Acad. Sc. Paris 294 Ser. III: 691-693.
See also MGI.

Bonhomme, F., Guénet, J.-L., Dod, B., Moriwaki, K., and Bulfield, G. (1987).
The polyphyletic origin of laboratory inbred mice and their rate of evolution. J. Linnean Soc. 30: 51-58.

Bonhomme, F., Martin, S., and Thaler, L. (1978).
Hybridation en laboratoire de Mus musculus L. et Mus spretus Lataste. Experientia 34: 1140-1141.
See also MEDLINE.

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Construction of a genetic linkage map in man using restriction fragment length polymorphisms. Am. J. Hum. Genet. 32: 314-331.
See also MEDLINE.

Boursot, P., Auffray, J.-C., Britton-Davidian, J., and Bonhomme, F. (1993).
The evolution of house mice. Ann. Rev. Ecol. System. 24: 119-152.
See also MGI.

Boursot, P., Bonhomme, F., Britton-Davidian, J., Catalan, J., Yonekawa, H., Orsini, P., Guerasimov, S., and Thaler, L. (1984).
Introgression diffèrentielle des génomes nucléaires et mitochondriaux chez deux semi-espèces européennes de Souris. C.R. Acad. Sci. Paris, Série III 299: 365-370.

Boyle, A. L., Ballard, S. G., and Ward, D. C. (1990).
Differential distribution of long and short interspersed element sequences in the mouse genome: Chromosome karyotyping by fluorescence in situ hybridization. Proc. Nat. Acad. Sci. 87: 7757-7761.
See also MGI.

Boyse, E. A., Miyazawa, M., Aoki, T., and Old, L. J. (1968).
Ly-A and Ly-B: two systems of lymphocyte isoantigens in the mouse. Proc. Royal Soc. (London) B 170: 175-193.
See also MGI.

Britton, J., and Thaler, L. (1978).
Evidence for the presence of two sympatric species of mice (genus Mus) in southern France based on biochemical genetics. Biochem. Genet. 16: 213-225.
See also MEDLINE.

Broccoli, D., Miller, O. J., and Miller, D. A. (1992).
Isolation and characterization of a mouse subtelomeric-sequence. Chromosoma 101: 442-447.
See also MGI.

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The adaptability of the house mouse. Sci. Amer. 250: (3) 90-97.
See also MEDLINE.

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Brown, S. D. M., Avner, P., and Herman, G. (1992).
Mouse X chromosome. Mammal. Genome 3: S274-S288.
See also MEDLINE.

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An exteroreceptive block to pregnancy in the mouse. Nature 184: 105.

Bruce, H. M. (1968).
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See also MEDLINE.

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Bryda, E. C., DePari, J. A., SantAngelo, D. B., Murphy, D. B., and Passmore, H. C. (1992).
Multiple sites of crossing over within the Eb recombinational hotspot in the mouse. Mamm Genome 2: 123-9.
See also MGI.

Buckler, A. J., Chang, D. D., Graw, S. L., Brook, J. D., Haber, D. A., Sharp, P. A., and Housman, D. E. (1991).
Exon amplification: A strategy to isolate mammalian genes based on RNA splicing. Proc Natl Acad Sci USA 88: 4005-4009.
See also MEDLINE.

Burke, D. T., Carle, G. F., and Olson, M. V. (1987).
Cloning of large segments of exogenous DNA into yeast by means of artificial chromosome vectors. Science 236: 806-812.
See also MEDLINE.

Burke, D. T., Rossi, J. M., Koos, D. S., and Tilghman, S. M. (1991).
A mouse genomic library of yeast artificial chromosome clones. Mammal. Genome 1: 65.
See also MEDLINE.

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An improved method for G-banding chromosomes after in situ hybridization. Cytogenet Cell Genet 38: 308-309.

Capecchi, M. (1989).
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See also MEDLINE.

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Differential activity of maternally and paternally derived chromosome regions in mice. Nature 315: 469-498.
See also MGI.

Ceci, J. D., Matsuda, Y., Grubber, J. M., Jenkins, N. A., Copeland, N. G., and Chapman, V. M. (1994).
Interspecific backcrosses provide an important tool for centromere mapping of mouse chromosomes. Genomics 19: 515-524.
See also MGI.

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Construction of a mouse yeast artificial chromosome library in a recombination-deficient strain of yeast. Nature Genetics 1: 132-136.
See also MGI.

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Molecular evidence that the spiny mouse (Acomys) is more closely related to gerbils (Gerbillinae) than to true mice (Murinae). Proc Natl Acad Sci USA 90: 3433-3436.
See also MGI.

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See also MGI.

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See also Chromosome Committee Reports at MGI.

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See also MEDLINE.

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Committee on standardized genetic nomenclature for mice (1989).
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See also Mouse Nomenclature Guidelines at MGI.

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See also MGI.

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See also MGI.

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A World List of Mammalian Species. 3rd edition (Oxford University Press, New York).

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The generation of a library of PCR-analyzed microsatellite variants for genetic mapping of the mouse genome. Genomics 10: 874-881.
See also MGI.

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Introduction of a rabbit beta-globin gene into the mouse germ line. Nature 294: 92-94.
See also MEDLINE.

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See also MEDLINE.

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Radiation hybrid mapping: a somatic cell genetic method for constructing high-resolution maps of mammalian chromosomes. Science 250: 245-250.

Cox, R. D., Copeland, N. G., Jenkins, N. A., and Lehrach, H. (1991).
Interspersed repetitive element polymerase chain reaction product mapping using a mouse interspecific backcross. Genomics 10: 375-384.
See also MGI.

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Genome mapping and cloning of mutations using yeast artificial chromosomes. In Guides to Techniques in Mouse Development Methods in Enzymology 225, Wassarman, P. M. and DePamphilis, M. L., eds. (Academic Press, San Diego), pp. 623-637.
See also MGI.

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Chromosome bands - flavours to savour. Bioessays 15: 349-354.
See also MEDLINE.

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See also MEDLINE.

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Gene-centromere linkage mapping by PCR analysis of individual oocytes. Genomics 13: 713-717.
See also MEDLINE.

D'Eustachio, P., and Clarke, V. (1993).
Localization of the twitcher (twi) mutation on mouse chromosome 12. Mammal. Genome 4: 684-686.
See also MGI.

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Analysis of the Escherichia coli genome: DNA sequence of the region from 84.5 to 86.5. Science 257: 771-777.

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See also MGI.

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The Jackson Laboratory Mouse Mutant Resource. Lab Animal 19: 23.

Davisson, M. T. (1993).
Personal communication.

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Recombination suppression by heterozygous Robertsonian chromosomes in the mouse. Genetics 133: 649-667.
See also MGI.

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Linkage map. In Genetic Variants and Strains of the Laboratory Mouse., Lyon, M. F. and Searle, A. G., eds. (Oxford University Press, Oxford), pp. 416-427.

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Recombination percentages and chromosomal assignments. In Genetic Variants and Strains of the Laboratory Mouse., Lyon, M. F. and Searle, A. G., eds. (Oxford University Press, Oxford), pp. 432-505.
See also MGI.

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Survey of new data and computer methods of analysis. In Atlas of Protein Sequence and Structure 5, supp. 3, Dayhoff, M. O., eds. (National Biomedical Research Foundation, Silver Springs, MD), pp. 2-8.

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Parental imprinting of the mouse Insulin-like growth factor II gene. Cell 64: 849-859.
See also MGI.

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Recombinant congenic strains - a new tool for analyzing genetic traits determined by more than one gene. Immunogenetics 24: 416-422.
See also MEDLINE.

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Pulsed-field gel electrophoresis. In Protocols in Human Molecular Genetics Methods in Molecular Biology 9, Mathew, C. G., eds. (Humana Press, Clifton, NJ), pp. 169-182.

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A genetic map of the mouse suitable for typing intraspecific crosses. Genetics 131: 423-447.
See also MGI.

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See also MGI.

Donehower, L. A., Harvey, M., Slagle, B. L., McArthur, M. J., Montgomery Jr., C. A., Butel, J. S., and Bradley, A. (1992).
Mice deficient for p53 are developmentally normal but susceptible to spontaneous tumours. Nature 356: 215-221.
See also MGI.

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See also MEDLINE.

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See also MEDLINE.

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The microsatellite found in the DNA sequence with the code name MMMYOGG1 (GenBank) does not correspond to the myogenin gene (Myog) but to myoglobin (Mb) and maps to mouse Chromosome 15. Mammal. Genome 4: 348.
See also MGI.

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