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February 24, 2026Genetics Selection Evolution0 citationsOpen Access

A modified indirect method for computing inbreeding coefficients

CHChe Hsuan HuangSHSeijiro HiramaTBToshimi Baba

Key Points

  • The research aims to improve methods for computing inbreeding coefficients by addressing limitations of existing techniques.
  • Developed a modified indirect method for computing inbreeding coefficients.
  • Tested on extensive pedigree data of Japanese Holsteins and assessed performance improvements.
  • Utilized parallel processing to enhance computation speed.
  • Compared efficiency with previous indirect methodologies.
  • Reduced computation time from over 103 seconds to just 7 seconds.
  • Achieved computation in only 1.1 seconds when using 32 parallel threads.
  • Demonstrated improved efficiency irrespective of pedigree depth and family size.

Abstract

Abstract The performance of existing methods for computing inbreeding coefficients—including tabular-based methods, Cholesky decomposition-based methods, and indirect methods—has been limited by either memory usage, pedigree depth, or average half-sib family size. In this note, we present a modified indirect method that efficiently identifies, computes, and stores the necessary elements for computing inbreeding coefficients. The algorithm was tested on pedigrees of 8.6 million Japanese Holsteins born from 1901 to 2023, with an average longest ancestral path number of 17 and 42,120 sires with progenies. Compared to a previous indirect method, the modifications reduced computation time from 103.4 to 7.2 s. When parallelized using 32 threads, the computation completed in 1.1 s. Simulation results suggested that the proposed method is less affected by pedigree depth or family size, making it practical for most livestock populations reproduced via artificial insemination.

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Cite This Study

Huang et al. (2026) studied this question.

synapsesocial.com/papers/699d3fd9de8e28729cf64962https://doi.org/10.1186/s12711-026-01035-y
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