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Jw, Thomas Jw, Touchman Rw, Blakesley Gg, Bouffard Sm, Beckstrom-Sternberg Eh, Margulies M, Blanchette Ac, Siepel Pj, Thomas Jc, Mcdowell
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Published in
Nature
The systematic comparison of genomic sequences from different organisms represents a central focus of contemporary genome analysis. Comparative analyses of vertebrate sequences can identify coding and conserved non-coding regions, including regulatory elements, and provide insight into the forces that have rendered modern-day genomes. As a compleme...
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Eh, Margulies Gm, Cooper G, Asimenos Dj, Thomas Cn, Dewey A, Siepel E, Birney D, Keefe As, Schwartz M, Hou
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Published in
Genome Research
A key component of the ongoing ENCODE project involves rigorous comparative sequence analyses for the initially targeted 1% of the human genome. Here, we present orthologous sequence generation, alignment, and evolutionary constraint analyses of 23 mammalian species for all ENCODE targets. Alignments were generated using four different methods; com...
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M, Blanchette Ed Green W, Miller David Haussler
Published in
Genome Research
It is believed that most modern mammalian lineages arose from a series of rapid speciation events near the Cretaceous-Tertiary boundary. It is shown that such a phylogeny makes the common ancestral genome sequence an ideal target for reconstruction. Simulations suggest that with methods currently available, we can expect to get 98% of the bases cor...
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H, Huang Nr, Zhang I, Holmes Jc, Mullikin A, Ureta-Vidal B, Paten M, Seringhaus D, Church K, Rosenbloom Wj, Kent
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Published in
Nature
We report the generation and analysis of functional data from multiple, diverse experiments performed on a targeted 1% of the human genome as part of the pilot phase of the ENCODE Project. These data have been further integrated and augmented by a number of evolutionary and computational analyses. Together, our results advance the collective knowle...
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P, Carninci S, Cawley F, Chiaromonte At, Chinwalla Dm, Church M, Clamp C, Clee Fs, Collins Ll, Cook Rr, Copley
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Published in
Nature
The sequence of the mouse genome is a key informational tool for understanding the contents of the human genome and a key experimental tool for biomedical research. Here, we report the results of an international collaboration to produce a high-quality draft sequence of the mouse genome. We also present an initial comparative analysis of the mouse ...
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M, Blanchette Ab, Diallo Ed Green W, Miller David Haussler
Published in
Methods in Molecular Biology
This chapter introduces the problem of ancestral sequence reconstruction: given a set of extant orthologous DNA genomic sequences (or even whole-genomes), together with a phylogenetic tree relating these sequences, predict the DNA sequence of all ancestral species in the tree. Blanchette et al. (1) have shown that for certain sets of species (in pa...
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Team, Mgc Project G, Temple Ds, Gerhard R, Rasooly Ea, Feingold Pj, Good C, Robinson A, Mandich Jg, Derge J, Lewis
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Published in
Genome Research
Since its start, the Mammalian Gene Collection (MGC) has sought to provide at least one full-protein-coding sequence cDNA clone for every human and mouse gene with a RefSeq transcript, and at least 6200 rat genes. The MGC cloning effort initially relied on random expressed sequence tag screening of cDNA libraries. Here, we summarize our recent prog...
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Ds, Gerhard L, Wagner Ea, Feingold Cm, Shenmen Lh, Grouse G, Schuler Sl, Klein S, Old R, Rasooly P, Good
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Published in
Genome Research
The National Institutes of Health s Mammalian Gene Collection (MGC) project was designed to generate and sequence a publicly accessible cDNA resource containing a complete open reading frame (ORF) for every human and mouse gene. The project initially used a random strategy to select clones from a large number of cDNA libraries from diverse tissues....
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Eh, Margulies M, Blanchette Program, Nisc Comparative Sequencing David Haussler Ed Green
Published in
Genome Research
Comparative sequence analysis has become an essential component of studies aiming to elucidate genome function. The increasing availability of genomic sequences from multiple vertebrates is creating the need for computational methods that can detect highly conserved regions in a robust fashion. Towards that end, we are developing approaches for ide...
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K, Lindblad-Toh M, Garber O, Zuk Mf, Lin Bj, Parker S, Washietl P, Kheradpour J, Ernst G, Jordan E, Mauceli
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Published in
Nature
The comparison of related genomes has emerged as a powerful lens for genome interpretation. Here we report the sequencing and comparative analysis of 29 eutherian genomes. We confirm that at least 5.5% of the human genome has undergone purifying selection, and locate constrained elements covering ∼4.2% of the genome. We use evolutionary signatures ...
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M, Blanchette Wj, Kent C, Riemer L, Elnitski Af, Smit Km, Roskin R, Baertsch K, Rosenbloom H, Clawson Ed Green
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Published in
Genome Research
We define a "threaded blockset," which is a novel generalization of the classic notion of a multiple alignment. A new computer program called TBA (for "threaded blockset aligner") builds a threaded blockset under the assumption that all matching segments occur in the same order and orientation in the given sequences; inversions and duplications are...