A YAC-based physical map of the mouse genome

被引:57
|
作者
Nusbaum, C
Slonim, DK
Harris, KL
Birren, BW
Steen, RG
Stein, LD
Miller, J
Dietrich, WF
Nahf, R
Wang, V
Merport, O
Castle, AB
Husain, Z
Farino, G
Gray, D
Anderson, MO
Devine, R
Horton, LT
Ye, WJ
Wu, XY
Kouyoumjian, V
Zemsteva, IS
Wu, Y
Collymore, AJ
Courtney, DF
Tam, J
Cadman, M
Haynes, AR
Heuston, C
Marsland, T
Southwell, A
Trickett, P
Strivens, MA
Ross, MT
Makalowski, W
Xu, YX
Boguski, MS
Carter, NP
Denny, P
Brown, SDM
Hudson, TJ
Lander, ES
机构
[1] Whitehead Inst Biomed Res, Cambridge, MA 02142 USA
[2] MRC, UK Mouse Genome Ctr, Harwell OX11 0RD, Berks, England
[3] MRC, Mammalian Genet Unit, Harwell OX11 0RD, Berks, England
[4] Sanger Ctr Wellcome Trust Genome Campus, Cambridge CB10 1SA, England
[5] NIH, Natl Ctr Biotechnol Informat, Natl Lib Med, Bethesda, MD 20894 USA
[6] Johns Hopkins Univ, Sch Med, Dept Biochem & Mol Biol, Baltimore, MD 21205 USA
[7] McGill Univ, Montreal Gen Hosp, Res Inst, Montreal, PQ H3G 1A4, Canada
[8] MIT, Dept Biol, Cambridge, MA 02139 USA
基金
英国惠康基金;
关键词
D O I
10.1038/11967
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
A physical map of the mouse genome is an essential tool for both positional cloning and genomic sequencing in this key model system for biomedical research, Indeed, the construction of a mouse physical map with markers spaced at an average interval of 300 kb is one of the stated goals of the Human Genome Project(1). Here we report the results of a project at the Whitehead Institute/MIT Center for Genome Research to construct such a physical map of the mouse. We built the map by screening sequenced-tagged sites (STSs) against a large-insert yeast artificial chromosome (YAC) library and then integrating the STS-content information with a dense genetic map. The integrated map shows the location of 9,787 loci, providing landmarks with an average spacing of approximately 300 kb and affording YAC coverage of approximately 92% of the mouse genome. We also report the results of a project at the MRC UK Mouse Genome Centre targeted at chromosome X. The project produced a YAC-based map containing 619 loci (with 121 loci in common with the Whitehead map and 498 additional loci), providing especially dense coverage of this sex chromosome. The YAC-based physical map directly facilitates positional cloning of mouse mutations by providing ready access to most of the genome. More generally, use of this map in addition to a newly constructed radiation hybrid (RH) map(2) provides a comprehensive framework for mouse genomic studies.
引用
收藏
页码:388 / 393
页数:6
相关论文
共 50 条
  • [21] A TEST CASE FOR PHYSICAL MAPPING OF HUMAN GENOME BY REPETITIVE SEQUENCE FINGERPRINTS - CONSTRUCTION OF A PHYSICAL MAP OF A 420 KB YAC SUBCLONED INTO COSMIDS
    BELLANNECHANTELOT, C
    BARILLOT, E
    LACROIX, B
    LEPASLIER, D
    COHEN, D
    NUCLEIC ACIDS RESEARCH, 1991, 19 (03) : 505 - 510
  • [22] A 2-Mb YAC contig and physical map of the natural killer gene complex on mouse chromosome 6
    Brown, MG
    Fulmek, S
    Matsumoto, K
    Cho, R
    Lyons, PA
    Levy, ER
    Scalzo, AA
    Yokoyama, WM
    GENOMICS, 1997, 42 (01) : 16 - 25
  • [23] A BAC-based physical map of the apple genome
    Han, Yuepeng
    Gasic, Ksenija
    Marron, Brandy
    Beever, Jonathan E.
    Korban, Schuyler S.
    GENOMICS, 2007, 89 (05) : 630 - 637
  • [24] A BAC-based physical map of the chicken genome
    Ren, CW
    Lee, MK
    Yan, B
    Ding, KJ
    Cox, B
    Romanov, MN
    Price, JA
    Dodgson, JB
    Zhang, HB
    GENOME RESEARCH, 2003, 13 (12) : 2754 - 2758
  • [25] TOWARD A CYTOGENETICALLY BASED PHYSICAL MAP OF THE WHEAT GENOME
    WERNER, JE
    ENDO, TR
    GILL, BS
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1992, 89 (23) : 11307 - 11311
  • [26] Mouse genome map published
    Bentley, DR
    OUTLOOK ON AGRICULTURE, 2002, 31 (04) : 278 - 279
  • [27] YAC-BASED CONTIGS ACROSS 19-MB OF XQ24-]Q26.1
    NAGARAJA, R
    JAUCH, A
    FEATHERSTONE, T
    MACMILLAN, S
    PORTA, G
    PENGUE, G
    ZUCCHI, I
    CASAMASSIMI, A
    ROMANO, G
    DURSO, M
    CREMER, T
    SCHLESSINGER, D
    CYTOGENETICS AND CELL GENETICS, 1994, 67 (04): : 345 - 345
  • [28] A physical map of the bovine genome
    Warren M Snelling
    Readman Chiu
    Jacqueline E Schein
    Matthew Hobbs
    Colette A Abbey
    David L Adelson
    Jan Aerts
    Gary L Bennett
    Ian E Bosdet
    Mekki Boussaha
    Rudiger Brauning
    Alexandre R Caetano
    Marcos M Costa
    Allan M Crawford
    Brian P Dalrymple
    André Eggen
    Annelie Everts-van der Wind
    Sandrine Floriot
    Mathieu Gautier
    Clare A Gill
    Ronnie D Green
    Robert Holt
    Oliver Jann
    Steven JM Jones
    Steven M Kappes
    John W Keele
    Pieter J de Jong
    Denis M Larkin
    Harris A Lewin
    John C McEwan
    Stephanie McKay
    Marco A Marra
    Carrie A Mathewson
    Lakshmi K Matukumalli
    Stephen S Moore
    Brenda Murdoch
    Frank W Nicholas
    Kazutoyo Osoegawa
    Alice Roy
    Hanni Salih
    Laurent Schibler
    Robert D Schnabel
    Licia Silveri
    Loren C Skow
    Timothy PL Smith
    Tad S Sonstegard
    Jeremy F Taylor
    Ross Tellam
    Curtis P Van Tassell
    John L Williams
    Genome Biology, 8
  • [29] A physical map of the chicken genome
    John W. Wallis
    Jan Aerts
    Martien A. M. Groenen
    Richard P. M. A. Crooijmans
    Dan Layman
    Tina A. Graves
    Debra E. Scheer
    Colin Kremitzki
    Mary J. Fedele
    Nancy K. Mudd
    Marco Cardenas
    Jamey Higginbotham
    Jason Carter
    Rebecca McGrane
    Tony Gaige
    Kelly Mead
    Jason Walker
    Derek Albracht
    Jonathan Davito
    Shiaw-Pyng Yang
    Shin Leong
    Asif Chinwalla
    Mandeep Sekhon
    Kristine Wylie
    Jerry Dodgson
    Michael N. Romanov
    Hans Cheng
    Pieter J. de Jong
    Kazutoyo Osoegawa
    Mikhail Nefedov
    Hongbin Zhang
    John D. McPherson
    Martin Krzywinski
    Jacquie Schein
    LaDeana Hillier
    Elaine R. Mardis
    Richard K. Wilson
    Wesley C. Warren
    Nature, 2004, 432 : 761 - 764
  • [30] PHYSICAL MAP OF THE HUMAN GENOME
    HUDSON, TJ
    STEIN, L
    MA, J
    CASTLE, A
    SILVA, J
    WILSON, K
    WU, X
    GERETY, S
    HORTON, L
    ANDERSON, M
    COLLYMORE, A
    YE, W
    TAM, RJ
    ZEMTSEVA, I
    DEVINE, R
    ROSENBERG, C
    BAPTISTA, R
    NAHF, R
    GOODMAN, N
    ORLIN, J
    KORENBERG, J
    WEISSENBACH, J
    FOOTE, S
    PAGE, DC
    LANDER, ES
    AMERICAN JOURNAL OF HUMAN GENETICS, 1995, 57 (04) : 65 - 65