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  • lra: A long read aligner fo... lra: A long read aligner for sequences and contigs
    Ren, Jingwen; Chaisson, Mark J P PLoS computational biology, 06/2021, Volume: 17, Issue: 6
    Journal Article
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    It is computationally challenging to detect variation by aligning single-molecule sequencing (SMS) reads, or contigs from SMS assemblies. One approach to efficiently align SMS reads is sparse dynamic ...
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  • Genetic variation and the d... Genetic variation and the de novo assembly of human genomes
    Chaisson, Mark J P; Wilson, Richard K; Eichler, Evan E Nature reviews. Genetics, 11/2015, Volume: 16, Issue: 11
    Journal Article
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    The discovery of genetic variation and the assembly of genome sequences are both inextricably linked to advances in DNA-sequencing technology. Short-read massively parallel sequencing has ...
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  • Resolving the complexity of... Resolving the complexity of the human genome using single-molecule sequencing
    Chaisson, Mark J P; Huddleston, John; Dennis, Megan Y ... Nature (London), 01/2015, Volume: 517, Issue: 7536
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    The human genome is arguably the most complete mammalian reference assembly, yet more than 160 euchromatic gaps remain and aspects of its structural variation remain poorly understood ten years after ...
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  • vamos: variable-number tand... vamos: variable-number tandem repeats annotation using efficient motif sets
    Ren, Jingwen; Gu, Bida; Chaisson, Mark J P Genome Biology, 07/2023, Volume: 24, Issue: 1
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    Open access

    Roughly 3% of the human genome is composed of variable-number tandem repeats (VNTRs): arrays of motifs at least six bases. These loci are highly polymorphic, yet current approaches that define and ...
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  • The Human Pangenome Project... The Human Pangenome Project: a global resource to map genomic diversity
    Wang, Ting; Antonacci-Fulton, Lucinda; Howe, Kerstin ... Nature (London), 04/2022, Volume: 604, Issue: 7906
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    The human reference genome is the most widely used resource in human genetics and is due for a major update. Its current structure is a linear composite of merged haplotypes from more than 20 people, ...
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  • Fully phased human genome a... Fully phased human genome assembly without parental data using single-cell strand sequencing and long reads
    Porubsky, David; Ebert, Peter; Audano, Peter A ... Nature biotechnology, 03/2021, Volume: 39, Issue: 3
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    Human genomes are typically assembled as consensus sequences that lack information on parental haplotypes. Here we describe a reference-free workflow for diploid de novo genome assembly that combines ...
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  • Profiling variable-number t... Profiling variable-number tandem repeat variation across populations using repeat-pangenome graphs
    Lu, Tsung-Yu; Chaisson, Mark J P Nature communications, 07/2021, Volume: 12, Issue: 1
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    Variable number tandem repeats (VNTRs) are composed of consecutive repetitive DNA with hypervariable repeat count and composition. They include protein coding sequences and associations with clinical ...
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  • High-resolution comparative... High-resolution comparative analysis of great ape genomes
    Kronenberg, Zev N; Fiddes, Ian T; Gordon, David ... Science (American Association for the Advancement of Science), 06/2018, Volume: 360, Issue: 6393
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    Genetic studies of human evolution require high-quality contiguous ape genome assemblies that are not guided by the human reference. We coupled long-read sequence assembly and full-length ...
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  • Long-read sequence assembly... Long-read sequence assembly of the gorilla genome
    Gordon, David; Huddleston, John; Chaisson, Mark J. P. ... Science (American Association for the Advancement of Science), 04/2016, Volume: 352, Issue: 6281
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    Accurate sequence and assembly of genomes is a critical first step for studies of genetic variation. We generated a high-quality assembly of the gorilla genome using single-molecule, real-time ...
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  • TT-Mars: structural variant... TT-Mars: structural variants assessment based on haplotype-resolved assemblies
    Yang, Jianzhi; Chaisson, Mark J P Genome Biology, 05/2022, Volume: 23, Issue: 1
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    Variant benchmarking is often performed by comparing a test callset to a gold standard set of variants. In repetitive regions of the genome, it may be difficult to establish what is the truth for a ...
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