Genetic and bioinformatic analysis of 41C and the 2R heterochromatin of Drosophila melanogaster:: A window on the heterochromatin-euchromatin junction

被引:23
作者
Myster, SH
Wang, F
Cavallo, R
Christian, W
Bhotika, S
Anderson, CT
Peifer, M
机构
[1] Univ N Carolina, Dept Biol, Chapel Hill, NC 27599 USA
[2] Univ N Carolina, Curriculum Genet & Mol Biol, Chapel Hill, NC 27599 USA
[3] Univ N Carolina, Lineberger Comprehens Canc Ctr, Chapel Hill, NC 27599 USA
关键词
D O I
10.1534/genetics.166.2.807
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Genomic sequences provide powerful new tools in genetic analysis, making it possible to combine classical genetics with genomics to characterize the genes in a particular chromosome region. These approaches have been applied successfully to the euchromatin, but analysis of the heterochromatin has lagged somewhat behind. We describe a combined genetic and bioinformatics approach to the base of the right arm of the Drosophila melanogaster second chromosome, at the boundary between pericentric heterochromatin and euchromatin. We used resources provided by the genome project to derive a physical map of the region, examine gene density, and estimate the number of potential genes. We also carried out a large-scale generic screen for lethal mutations in the region. We identified new alleles of the known essential genes and also identified mutations in 21 novel loci. Fourteen complementation groups map proximal to the assembled sequence. We used PCR to map the endpoints of several deficiencies and used the same set of deficiencies to order the essential genes, correlating the genetic and physical map. This allowed us to assign two of the complementation groups to particular "computed/curated genes" (CGs), one of which is Nipped-A, which our evidence suggests encodes Drosopbila Tra1/TRRAP.
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收藏
页码:807 / 822
页数:16
相关论文
共 43 条
[1]   The genome sequence of Drosophila melanogaster [J].
Adams, MD ;
Celniker, SE ;
Holt, RA ;
Evans, CA ;
Gocayne, JD ;
Amanatides, PG ;
Scherer, SE ;
Li, PW ;
Hoskins, RA ;
Galle, RF ;
George, RA ;
Lewis, SE ;
Richards, S ;
Ashburner, M ;
Henderson, SN ;
Sutton, GG ;
Wortman, JR ;
Yandell, MD ;
Zhang, Q ;
Chen, LX ;
Brandon, RC ;
Rogers, YHC ;
Blazej, RG ;
Champe, M ;
Pfeiffer, BD ;
Wan, KH ;
Doyle, C ;
Baxter, EG ;
Helt, G ;
Nelson, CR ;
Miklos, GLG ;
Abril, JF ;
Agbayani, A ;
An, HJ ;
Andrews-Pfannkoch, C ;
Baldwin, D ;
Ballew, RM ;
Basu, A ;
Baxendale, J ;
Bayraktaroglu, L ;
Beasley, EM ;
Beeson, KY ;
Benos, PV ;
Berman, BP ;
Bhandari, D ;
Bolshakov, S ;
Borkova, D ;
Botchan, MR ;
Bouck, J ;
Brokstein, P .
SCIENCE, 2000, 287 (5461) :2185-2195
[2]  
Anastasiadis PZ, 2000, J CELL SCI, V113, P1319
[3]  
Ashburner M, 1999, GENETICS, V153, P179
[4]  
Casso D, 2000, MECH DEVELOP, V91, P449
[5]  
CELNIKER SE, 2002, GENOME BIOL, V0003
[6]   Centromeres and kinetochores: From epigenetics to mitotic checkpoint signaling [J].
Cleveland, DW ;
Mao, YH ;
Sullivan, KF .
CELL, 2003, 112 (04) :407-421
[7]   FISH analysis of Drosophila melanogaster heterochromatin using BACs and P elements [J].
Corradini, N ;
Rossi, F ;
Vernì, F ;
Dimitri, P .
CHROMOSOMA, 2003, 112 (01) :26-37
[8]  
DIMITRI P, 1991, GENETICS, V127, P553
[9]   High genetic instability of heterochromatin after transposition of the LINE-like I factor in Drosophila melanogaster [J].
Dimitri, P ;
Arca, B ;
Berghella, L ;
Mei, E .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1997, 94 (15) :8052-8057
[10]   Revising the selfish DNA hypothesis - new evidence on accumulation of transposable elements in heterochromatin [J].
Dimitri, P ;
Junakovic, N .
TRENDS IN GENETICS, 1999, 15 (04) :123-124