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Nat Commun ; 15(1): 7164, 2024 Sep 02.
Artigo em Inglês | MEDLINE | ID: mdl-39223156

RESUMO

High-throughput sequencing technologies have increasingly led to discovery of disease-causing genetic variants, primarily in postnatal multi-cell DNA samples. However, applying these technologies to preimplantation genetic testing (PGT) in nuclear or mitochondrial DNA from single or few-cells biopsied from in vitro fertilised (IVF) embryos is challenging. PGT aims to select IVF embryos without genetic abnormalities. Although genotyping-by-sequencing (GBS)-based haplotyping methods enabled PGT for monogenic disorders (PGT-M), structural rearrangements (PGT-SR), and aneuploidies (PGT-A), they are labour intensive, only partially cover the genome and are troublesome for difficult loci and consanguineous couples. Here, we devise a simple, scalable and universal whole genome sequencing haplarithmisis-based approach enabling all forms of PGT in a single assay. In a comparison to state-of-the-art GBS-based PGT for nuclear DNA, shallow sequencing-based PGT, and PCR-based PGT for mitochondrial DNA, our approach alleviates technical limitations by decreasing whole genome amplification artifacts by 68.4%, increasing breadth of coverage by at least 4-fold, and reducing wet-lab turn-around-time by ~2.5-fold. Importantly, this method enables trio-based PGT-A for aneuploidy origin, an approach we coin PGT-AO, detects translocation breakpoints, and nuclear and mitochondrial single nucleotide variants and indels in base-resolution.


Assuntos
Diagnóstico Pré-Implantação , Sequenciamento Completo do Genoma , Humanos , Diagnóstico Pré-Implantação/métodos , Sequenciamento Completo do Genoma/métodos , Feminino , Fertilização in vitro/métodos , Testes Genéticos/métodos , Aneuploidia , Gravidez , DNA Mitocondrial/genética , Sequenciamento de Nucleotídeos em Larga Escala/métodos , Genoma Humano/genética
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