Whole-genome analysis of Alu repeat elements reveals complex evolutionary history

被引:148
作者
Price, AL [1 ]
Eskin, E [1 ]
Pevzner, PA [1 ]
机构
[1] Univ Calif San Diego, Dept Comp Sci & Engn, La Jolla, CA 92093 USA
关键词
D O I
10.1101/gr.2693004
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Alu repeats are the most abundant family of repeats in the human genome, with over I million copies comprising 10% of the genome. They have been implicated in human genetic disease and in the enrichment of gene-rich segmental duplications in the human genome, and they form a rich fossil record of primate and human history. Alu repeat elements are believed to have arisen from the replication of a small number of source elements, whose evolution over time gives rise to the 31 Alu subfamilies currently reported in Repbase Update. We apply a novel method to identify and statistically validate 213 Alu subfamilies. We build an evolutionary tree of these subfamilies and conclude that the history of Alu evolution is more complex than previous studies had indicated.
引用
收藏
页码:2245 / 2252
页数:8
相关论文
共 43 条
[21]  
KURTZ S, 2000, P 8 INT C INT SYST M, P269
[22]   SEQUENCE CONSERVATION IN ALU EVOLUTION [J].
LABUDA, D ;
STRIKER, G .
NUCLEIC ACIDS RESEARCH, 1989, 17 (07) :2477-2491
[23]   Initial sequencing and analysis of the human genome [J].
Lander, ES ;
Int Human Genome Sequencing Consortium ;
Linton, LM ;
Birren, B ;
Nusbaum, C ;
Zody, MC ;
Baldwin, J ;
Devon, K ;
Dewar, K ;
Doyle, M ;
FitzHugh, W ;
Funke, R ;
Gage, D ;
Harris, K ;
Heaford, A ;
Howland, J ;
Kann, L ;
Lehoczky, J ;
LeVine, R ;
McEwan, P ;
McKernan, K ;
Meldrim, J ;
Mesirov, JP ;
Miranda, C ;
Morris, W ;
Naylor, J ;
Raymond, C ;
Rosetti, M ;
Santos, R ;
Sheridan, A ;
Sougnez, C ;
Stange-Thomann, N ;
Stojanovic, N ;
Subramanian, A ;
Wyman, D ;
Rogers, J ;
Sulston, J ;
Ainscough, R ;
Beck, S ;
Bentley, D ;
Burton, J ;
Clee, C ;
Carter, N ;
Coulson, A ;
Deadman, R ;
Deloukas, P ;
Dunham, A ;
Dunham, I ;
Durbin, R ;
French, L .
NATURE, 2001, 409 (6822) :860-921
[24]  
LEEFLANG EP, 1993, J MOL EVOL, V37, P559
[25]   PHYLOGENETIC EVIDENCE FOR MULTIPLE ALU SOURCE GENES [J].
LEEFLANG, EP ;
LIU, WM ;
HASHIMOTO, C ;
CHOUDARY, PV ;
SCHMID, CW .
JOURNAL OF MOLECULAR EVOLUTION, 1992, 35 (01) :7-16
[26]  
LLOYD SP, 1982, IEEE T INFORM THEORY, V28, P129, DOI 10.1109/TIT.1982.1056489
[27]   A TRANSPOSITIONALLY AND TRANSCIPTIONALLY COMPETENT ALU SUBFAMILY [J].
MATERA, AG ;
HELLMANN, U ;
SCHMID, CW .
MOLECULAR AND CELLULAR BIOLOGY, 1990, 10 (10) :5424-5432
[28]   RECENTLY TRANSPOSED ALU REPEATS RESULT FROM MULTIPLE SOURCE GENES [J].
MATERA, AG ;
HELLMANN, U ;
HINTZ, MF ;
SCHMID, CW .
NUCLEIC ACIDS RESEARCH, 1990, 18 (20) :6019-6023
[29]   REVERSE-TRANSCRIPTASE ENCODED BY A HUMAN TRANSPOSABLE ELEMENT [J].
MATHIAS, SL ;
SCOTT, AF ;
KAZAZIAN, HH ;
BOEKE, JD ;
GABRIEL, A .
SCIENCE, 1991, 254 (5039) :1808-1810
[30]  
Milosavjljevic A., 1989, Proceedings of the Second Annual Workshop on Computational Learning Theory, P102