COMPARATIVE GENOME MAP OF HUMAN AND CATTLE

被引:265
作者
SOLINASTOLDO, S
LENGAUER, C
FRIES, R
机构
[1] ETH ZENTRUM,DEPT ANIM SCI,ZURICH,SWITZERLAND
[2] RES INST MOLEC PATHOL,A-1030 VIENNA,AUSTRIA
关键词
D O I
10.1006/geno.1995.1081
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Chromosomal homologies between individual human chromosomes and the bovine karyotype have been established by using a new approach termed Zoo-FISH. Labeled DNA libraries from flow-sorted human chromosomes were used as probes for fluorescence in situ hybridization on cattle chromosomes. Ah human DNA libraries, except the Y chromosome library, hybridized to one or more cattle chromosomes, identifying and delineating 50 segments of homology, most of them corresponding to the regions of homology as identified by the previous mapping of individual conserved loci. However, Zoo-FISH refines the comparative maps constructed by molecular gene mapping of individual loci by providing information on the boundaries of conserved regions in the absence of obvious cytogenetic homologies of human and bovine chromosomes. It allows study of karyotypic evolution and opens new avenues for genomic analysis by facilitating the extrapolation of results from the human genome initiative. (C) 1995 Academic Press, Inc.
引用
收藏
页码:489 / 496
页数:8
相关论文
共 51 条
  • [1] Barendse W., Armitage S.M., Kossarek L.M., Shalom A., Kirkpatrick B.W., Ryan A.M., Clayton D., Li L., Neibergs H.L., Zhang N., Grosse W.M., Weiss J., Creighton P., McCarthy F., Ron M., Teal A.J., Fries R., McGraw R.A., Moore S.S., Georges M., Soller M., Womack J.E., Hetzel D.J.S., A genetic map of the bovine genome, Nature Genet, 6, pp. 227-235, (1994)
  • [2] Barendse W., Armitage S.M., Ryan A.M., Moore S.S., Clayton D., Georges M., Womack J.E., Hetzel J., A genetic map of DNA markers on bovine chromosome 1, Genomics, 18, pp. 602-608, (1993)
  • [3] Bishop M.D., Kappes S.A., Keele J.W., Stone R.T., Sunden S.L.F., Hawkins G.A., Solinas Toldo S., Fries R., Grosz M.D., Yoo J., Beattie C.W., A genetic linkage map for cattle, Genetics, 136, pp. 619-639, (1994)
  • [4] Buitkamp J., Schwaiger F.-W., Solinas Toldo S., Fries R., Eppeln J.T., The bovine interleukin-4 gene: Genomic organization, localization and evolution, Mamm. Genome, (1994)
  • [5] Chowdhary B.P., Hassanane M.S., Gustavsson I., Regional localization of the bovine interleukin-2 (IL2) gene to chromosome 17q22-q23 by in situ hybridization, Cytogenet. Cell Genet, 65, pp. 166-168, (1994)
  • [6] Collins C., Kuo W.-L., Segraves R., Fuscoe J., Pinkel D., Gray J.W., Construction and characterization of plasmid libraries enriched in sequences from single human chromosomes, Genomics, 11, pp. 997-1006, (1991)
  • [7] Copeland N.G., Jenkins N.A., Gilbert D.J., Eppig J.T., Maltais L.J., Miller J.C., Dietrich W.F., Weaver A., Lincoln S.E., Steen R.G., Stein L.D., Nadeau J.H., Lander E.S., A genetic linkage map of the mouse: Current applications and future prospects, Science, 262, pp. 57-66, (1993)
  • [8] Craig J.M., Bickmore W.A., The distribution of Cp G islands in mammalian chromosomes, Nature Genet, 7, pp. 376-382, (1994)
  • [9] Echard G., Broad T.E., Hill D., Pearce P., Present status of the ovine gene map (Ovis aries)-Comparison with the bovine map (Bos taurus), Mamm. Genome, 5, pp. 324-332, (1994)
  • [10] Eggen A., Fries R., An integrated cytogenetic and meiotic map of the bovine genome, Animal Genet, (1995)