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Updated: Apr 22, 2026

FISH for Pre-implantation Genetic Diagnosis
Published on: February 23, 2011
Precise detection of chromosomal translocation or inversion breakpoints by whole-genome sequencing
Toshifumi Suzuki1, Yoshinori Tsurusaki2, Mitsuko Nakashima2
11] Department of Human Genetics, Yokohama City University Graduate School of Medicine, Yokohama, Japan [2] Department of Obstetrics and Gynecology, Juntendo University Faculty of Medicine, Tokyo, Japan.
Abstract:
Structural variations (SVs), including translocations, inversions, deletions and duplications, are potentially associated with Mendelian diseases and contiguous gene syndromes. Determination of SV-related breakpoints at the nucleotide level is important to reveal the genetic causes for diseases. Whole-genome sequencing (WGS) by next-generation sequencers is expected to determine structural abnormalities more directly and efficiently than conventional methods. In this study, 14 SVs (9 balanced translocations, 1 inversion and 4 microdeletions) in 9 patients were analyzed by WGS with a shallow (5 × ) to moderate read coverage (20 × ). Among 28 breakpoints (as each SV has two breakpoints), 19 SV breakpoints had been determined previously at the nucleotide level by any other methods and 9 were uncharacterized. BreakDancer and Integrative Genomics Viewer determined 20 breakpoints (16 translocation, 2 inversion and 2 deletion breakpoints), but did not detect 8 breakpoints (2 translocation and 6 deletion breakpoints). These data indicate the efficacy of WGS for the precise determination of translocation and inversion breakpoints.
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