Uploaded November 2023 | Updated September 2026, 2 days ago
PacBio CoLab #2 part 2 at ASHG 2023
Expanding NGS truth sets with long-reads: more comprehensive variant detection in a multi-generational pedigree.
Accurate long-read sequencing characterizes the full spectrum of genetic variation across the genome, but variant calling software is still catching up to the sequencing technologies. We have generated deep Pacific Biosciences (PacBio) high-fidelity (HiFi), ultra-long Oxford Nanopore Technologies (ONT), Strand-seq, and Illumina whole-genome sequencing data to construct near-T2T, phased genome assemblies from primary material obtained from a 4-generation, 28-member CEPH pedigree (1463). We are constructing a more comprehensive and validated catalog of greater than 8 million single-nucleotide variants, indels, short tandem repeats, and structural variants, including a detailed assessment of inversion polymorphisms that associate with disease risk. The use of multiple orthogonal technologies, near-T2T phased-genome assemblies, and a multi-generation family allow us to assess inheritance patterns and to create a “truth set” for all classes of human genetic variation upon which to test and benchmark new technologies.
Learn more about PacBio at pacb.com
Legal & Trademarks: Visit pacb.com/legal-and-trademarks
PacBio CoLab #2 part 2 at ASHG 2023
Expanding NGS truth sets with long-reads: more comprehensive variant detection in a multi-generational pedigree.
Accurate long-read sequencing characterizes the full spectrum of genetic variation across the genome, but variant calling software is still catching up to the sequencing technologies. We have generated deep Pacific Biosciences (PacBio) high-fidelity (HiFi), ultra-long Oxford Nanopore Technologies (ONT), Strand-seq, and Illumina whole-genome sequencing data to construct near-T2T, phased genome assemblies from primary material obtained from a 4-generation, 28-member CEPH pedigree (1463). We are constructing a more comprehensive and validated catalog of greater than 8 million single-nucleotide variants, indels, short tandem repeats, and structural variants, including a detailed assessment of inversion polymorphisms that associate with disease risk. The use of multiple orthogonal technologies, near-T2T phased-genome assemblies, and a multi-generation family allow us to assess inheritance patterns and to create a “truth set” for all classes of human genetic variation upon which to test and benchmark new technologies.
Learn more about PacBio at pacb.com
Legal & Trademarks: Visit pacb.com/legal-and-trademarks










