MPI-GWAS: a supercomputing-aided permutation approach for genome-wide association studies

Citations

SCOPUS

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초록

Permutation testing is a robust and popular approach for significance testing in genomic research that has the advantage of reducing inflated type 1 error rates; however, its computational cost is notorious in genome-wide association studies (GWAS). Here, we developed a supercomputing-aided approach to accelerate the permutation testing for GWAS, based on the message-passing interface (MPI) on parallel computing architecture. Our ap-plication, called MPI-GWAS, conducts MPI-based permutation testing using a parallel computing approach with our supercomputing system, Nurion (8,305 compute nodes, and 563,740 central processing units [CPUs]). For 107 permutations of one locus in MPI-GWAS, it was calculated in 600 s using 2,720 CPU cores. For 107 permutations of ~30,000–50,000 loci in over 7,000 subjects, the total elapsed time was ~4 days in the Nurion supercomput-er. Thus, MPI-GWAS enables us to feasibly compute the permutation-based GWAS within a reason-able time by harnessing the power of parallel computing resources. © 2022 Korea Genome Organization.

키워드

genome-wide association studymessage-passing interfaceparallel computingsupercomputing
제목
MPI-GWAS: a supercomputing-aided permutation approach for genome-wide association studies
저자
Paik, HyojungCho, YongseongCho, Seong BeomKwon, Oh-Kyoung
DOI
10.5808/gi.22001
발행일
2022-03
유형
Note
저널명
Genomics & Informatics
20
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