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Comprehensive structural variation genome map of individuals carrying complex chromosomal rearrangements.

Jesper Eisfeldt | Maria Pettersson | Francesco Vezzi | Josephine Wincent | Max Käller | Joel Gruselius | Daniel Nilsson | Elisabeth Syk Lundberg | Claudia M B Carvalho | Anna Lindstrand
PLoS genetics | 2019

Complex chromosomal rearrangements (CCRs) are rearrangements involving more than two chromosomes or more than two breakpoints. Whole genome sequencing (WGS) allows for outstanding high resolution characterization on the nucleotide level in unique sequences of such rearrangements, but problems remain for mapping breakpoints in repetitive regions of the genome, which are known to be prone to rearrangements. Hence, multiple complementary WGS experiments are sometimes needed to solve the structures of CCRs. We have studied three individuals with CCRs: Case 1 and Case 2 presented with de novo karyotypically balanced, complex interchromosomal rearrangements (46,XX,t(2;8;15)(q35;q24.1;q22) and 46,XY,t(1;10;5)(q32;p12;q31)), and Case 3 presented with a de novo, extremely complex intrachromosomal rearrangement on chromosome 1. Molecular cytogenetic investigation revealed cryptic deletions in the breakpoints of chromosome 2 and 8 in Case 1, and on chromosome 10 in Case 2, explaining their clinical symptoms. In Case 3, 26 breakpoints were identified using WGS, disrupting five known disease genes. All rearrangements were subsequently analyzed using optical maps, linked-read WGS, and short-read WGS. In conclusion, we present a case series of three unique de novo CCRs where we by combining the results from the different technologies fully solved the structure of each rearrangement. The power in combining short-read WGS with long-molecule sequencing or optical mapping in these unique de novo CCRs in a clinical setting is demonstrated.

Pubmed ID: 30735495

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Associated grants

  • Agency: NICHD NIH HHS, United States
    Id: R03 HD092569

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This is a list of tools and resources that we have found mentioned in this publication.


CNVnator (tool)

RRID:SCR_010821

An approach to discover, genotype, and characterize typical and atypical CNVs from family and population genome sequencing.

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BLAT (tool)

RRID:SCR_011919

Software designed to quickly find sequences of 95% and greater similarity of length 25 bases or more.

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Oxford Gene Technology (tool)

RRID:SCR_012551

Founded by Professor Ed Southern, Oxford Gene Technology (OGT) provides a range of high-quality genomics services, including next generation sequencing (whole exome, pre-designed panels, custom panels, RNA-Seq) and microarray processing (aCGH-CNV, miRNA, gene expression).

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