AutoMap is a high performance homozygosity mapping tool using next-generation sequencing data

Author:

Quinodoz Mathieu,Peter Virginie G.ORCID,Bedoni Nicola,Royer Bertrand Béryl,Cisarova Katarina,Salmaninejad ArashORCID,Sepahi Neda,Rodrigues Raquel,Piran Mehran,Mojarrad Majid,Pasdar AlirezaORCID,Ghanbari Asad AliORCID,Sousa Ana Berta,Coutinho Santos LuisaORCID,Superti-Furga AndreaORCID,Rivolta CarloORCID

Abstract

AbstractHomozygosity mapping is a powerful method for identifying mutations in patients with recessive conditions, especially in consanguineous families or isolated populations. Historically, it has been used in conjunction with genotypes from highly polymorphic markers, such as DNA microsatellites or common SNPs. Traditional software performs rather poorly with data from Whole Exome Sequencing (WES) and Whole Genome Sequencing (WGS), which are now extensively used in medical genetics. We develop AutoMap, a tool that is both web-based or downloadable, to allow performing homozygosity mapping directly on VCF (Variant Call Format) calls from WES or WGS projects. Following a training step on WES data from 26 consanguineous families and a validation procedure on a matched cohort, our method shows higher overall performances when compared with eight existing tools. Most importantly, when tested on real cases with negative molecular diagnosis from an internal set, AutoMap detects three gene-disease and multiple variant-disease associations that were previously unrecognized, projecting clear benefits for both molecular diagnosis and research activities in medical genetics.

Funder

Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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