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zadetkov: 125
1.
  • The structure, function and... The structure, function and evolution of a complete human chromosome 8
    Logsdon, Glennis A; Vollger, Mitchell R; Hsieh, PingHsun ... Nature (London), 05/2021, Letnik: 593, Številka: 7857
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    The complete assembly of each human chromosome is essential for understanding human biology and evolution . Here we use complementary long-read sequencing technologies to complete the linear assembly ...
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2.
  • Characterizing the Major St... Characterizing the Major Structural Variant Alleles of the Human Genome
    Audano, Peter A.; Sulovari, Arvis; Graves-Lindsay, Tina A. ... Cell, 01/2019, Letnik: 176, Številka: 3
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    In order to provide a comprehensive resource for human structural variants (SVs), we generated long-read sequence data and analyzed SVs for fifteen human genomes. We sequence resolved 99,604 ...
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3.
  • Discovery and genotyping of... Discovery and genotyping of structural variation from long-read haploid genome sequence data
    Huddleston, John; Chaisson, Mark J P; Steinberg, Karyn Meltz ... Genome research, 05/2017, Letnik: 27, Številka: 5
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    In an effort to more fully understand the full spectrum of human genetic variation, we generated deep single-molecule, real-time (SMRT) sequencing data from two haploid human genomes. By using an ...
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4.
  • Telomere-to-telomere assemb... Telomere-to-telomere assembly of a complete human X chromosome
    Miga, Karen H; Koren, Sergey; Rhie, Arang ... Nature (London), 09/2020, Letnik: 585, Številka: 7823
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    After two decades of improvements, the current human reference genome (GRCh38) is the most accurate and complete vertebrate genome ever produced. However, no single chromosome has been finished end ...
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5.
  • Reconstructing complex regi... Reconstructing complex regions of genomes using long-read sequencing technology
    Huddleston, John; Ranade, Swati; Malig, Maika ... Genome research, 04/2014, Letnik: 24, Številka: 4
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    Obtaining high-quality sequence continuity of complex regions of recent segmental duplication remains one of the major challenges of finishing genome assemblies. In the human and mouse genomes, this ...
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6.
  • Evolution of Human-Specific... Evolution of Human-Specific Neural SRGAP2 Genes by Incomplete Segmental Duplication
    Dennis, Megan Y.; Nuttle, Xander; Sudmant, Peter H. ... Cell, 05/2012, Letnik: 149, Številka: 4
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    Gene duplication is an important source of phenotypic change and adaptive evolution. We leverage a haploid hydatidiform mole to identify highly identical sequences missing from the reference genome, ...
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7.
  • Long-read sequence and assembly of segmental duplications
    Vollger, Mitchell R; Dishuck, Philip C; Sorensen, Melanie ... Nature methods, 01/2019, Letnik: 16, Številka: 1
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    We have developed a computational method based on polyploid phasing of long sequence reads to resolve collapsed regions of segmental duplications within genome assemblies. Segmental Duplication ...
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8.
  • Complete Haplotype Sequence... Complete Haplotype Sequence of the Human Immunoglobulin Heavy-Chain Variable, Diversity, and Joining Genes and Characterization of Allelic and Copy-Number Variation
    Watson, Corey T.; Steinberg, Karyn M.; Huddleston, John ... American journal of human genetics, 04/2013, Letnik: 92, Številka: 4
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    The immunoglobulin heavy-chain locus (IGH) encodes variable (IGHV), diversity (IGHD), joining (IGHJ), and constant (IGHC) genes and is responsible for antibody heavy-chain biosynthesis, which is ...
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9.
  • Single haplotype assembly o... Single haplotype assembly of the human genome from a hydatidiform mole
    Steinberg, Karyn Meltz; Schneider, Valerie A; Graves-Lindsay, Tina A ... Genome research, 12/2014, Letnik: 24, Številka: 12
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    A complete reference assembly is essential for accurately interpreting individual genomes and associating variation with phenotypes. While the current human reference genome sequence is of very high ...
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10.
  • Chimpanzee and human Y chro... Chimpanzee and human Y chromosomes are remarkably divergent in structure and gene content
    Page, David C; Hughes, Jennifer F; Skaletsky, Helen ... Nature (London), 01/2010, Letnik: 463, Številka: 7280
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    The human Y chromosome began to evolve from an autosome hundreds of millions of years ago, acquiring a sex-determining function and undergoing a series of inversions that suppressed crossing over ...
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zadetkov: 125

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