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Structural variants identified by Oxford Nanopore PromethION sequencing of the human genome.


ABSTRACT: We sequenced the genome of the Yoruban reference individual NA19240 on the long-read sequencing platform Oxford Nanopore PromethION for evaluation and benchmarking of recently published aligners and germline structural variant calling tools, as well as a comparison with the performance of structural variant calling from short-read sequencing data. The structural variant caller Sniffles after NGMLR or minimap2 alignment provides the most accurate results, but additional confidence or sensitivity can be obtained by a combination of multiple variant callers. Sensitive and fast results can be obtained by minimap2 for alignment and a combination of Sniffles and SVIM for variant identification. We describe a scalable workflow for identification, annotation, and characterization of tens of thousands of structural variants from long-read genome sequencing of an individual or population. By discussing the results of this well-characterized reference individual, we provide an approximation of what can be expected in future long-read sequencing studies aiming for structural variant identification.

SUBMITTER: De Coster W 

PROVIDER: S-EPMC6633254 | biostudies-literature | 2019 Jul

REPOSITORIES: biostudies-literature

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Structural variants identified by Oxford Nanopore PromethION sequencing of the human genome.

De Coster Wouter W   De Rijk Peter P   De Roeck Arne A   De Pooter Tim T   D'Hert Svenn S   Strazisar Mojca M   Sleegers Kristel K   Van Broeckhoven Christine C  

Genome research 20190611 7


We sequenced the genome of the Yoruban reference individual NA19240 on the long-read sequencing platform Oxford Nanopore PromethION for evaluation and benchmarking of recently published aligners and germline structural variant calling tools, as well as a comparison with the performance of structural variant calling from short-read sequencing data. The structural variant caller Sniffles after NGMLR or minimap2 alignment provides the most accurate results, but additional confidence or sensitivity  ...[more]

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