Literature DB >> 9367672

High-resolution physical map of the immunoglobulin lambda variant gene cluster assembled by quantitative DNA fiber mapping.

T Duell1, M Wang, J Wu, U J Kim, H U Weier.   

Abstract

Quantitative DNA fiber mapping (QDFM) allows rapid construction of near-kilobase-resolution physical maps by hybridizing specific probes to individual stretched DNA molecules. We evaluated the utility of QDFM for the large-scale physical mapping of a rather unstable, repeat-rich 850-kb region encompassing the immunoglobulin lambda variant (IGLV) gene segments. We mapped a minimal tiling path composed of 32 cosmid clones to three partially overlapping yeast artificial chromosome (YAC) clones and determined the physical size of each clone, the extent of overlap between clones, and contig orientation, as well as the sizes of gaps between adjacent contigs. Regions of germline DNA for which we had no YAC coverage were characterized by cosmid to cosmid hybridizations. Compared to other methods commonly used for physical map assembly, QDFM is a rapid, versatile technique delivering unambiguous data necessary for map closure and preparation of sequence-ready minimal tiling paths. Copyright 1997 Academic Press.

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Year:  1997        PMID: 9367672     DOI: 10.1006/geno.1997.4954

Source DB:  PubMed          Journal:  Genomics        ISSN: 0888-7543            Impact factor:   5.736


  3 in total

1.  Rational design of landmark probes for quantitative DNA fiber mapping (QDFM).

Authors:  H B Hsieh; M Wang; R A Lersch; U J Kim; H U Weier
Journal:  Nucleic Acids Res       Date:  2000-04-15       Impact factor: 16.971

2.  Delineating Rearrangements in Single Yeast Artificial Chromosomes by Quantitative DNA Fiber Mapping.

Authors:  Heinz-Ulrich G Weier; Karin M Greulich-Bode; Jenny Wu; Thomas Duell
Journal:  Open Genomics J       Date:  2009-10-09

3.  Validation of DNA probes for molecular cytogenetics by mapping onto immobilized circular DNA.

Authors:  Karin M Greulich-Bode; Mei Wang; Andreas P Rhein; Jingly F Weier; Heinz-Ulli G Weier
Journal:  Mol Cytogenet       Date:  2008-12-23       Impact factor: 2.009

  3 in total

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