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May 18, 2026JDS Communications1 citationsOpen Access

Validation of a national genetic evaluation for methane emission in Holstein cattle

SNSaranya G. NarayanaFMF. MalchiodiAFAllison Fleming

Key Points

  • This research aims to validate a newly launched genomic evaluation for methane emissions in Holstein cattle using various methane records.
  • Validation involved genotyped cows with CH4MIR and CH4GF records.
  • Relative breeding values (RBV) were categorized into quintiles and tertiles for analysis.
  • Linear regression analyses assessed the relationship between RBV and methane emissions.
  • Mean CH4MIR decreased across RBV quintiles, with significant differences among quintiles (p<0.01).
  • CH4GF emissions also declined across RBV tertiles, showing significant differences between the lowest and highest tertiles (p<0.01).
  • Linear regression confirmed a negative relationship between RBV and methane emissions, supporting the evaluation's predictive ability.

Abstract

Lactanet Canada launched a genomic evaluation for Methane Efficiency for Holsteins in April 2023, utilizing milk mid-infrared predicted methane emissions (CH 4MIR ) as a proxy.This study validated the Methane Efficiency genomic evaluation using genotyped cows with CH 4MIR and methane (CH 4 ) records from GreenFeed systems (CH 4GF ), along with relative breeding values (RBV) for Methane Production and Methane Efficiency from the April 2023 evaluation.In Lactanet's Methane Efficiency evaluation, a higher RBV indicates more desirable, lower-emitting animals.For the validation, RBVs were categorized into quintiles for the CH 4MIR data set and tertiles for the CH 4GF data set to evaluate trends across the RBV distribution.Mean CH 4MIR decreased progressively across RBV quintiles for both traits, with all pairwise comparisons among quintiles significantly different.Similarly, CH 4GF emissions declined across RBV tertiles, with significant differences observed between the lowest and highest tertiles.Additional analyses using RBV threshold categories confirmed that cows with the highest RBV consistently exhibited lower methane emissions.Linear regression analyses further demonstrated a negative relationship between RBV and methane emissions, supporting the predictive ability of the genomic evaluation.These findings confirm that Canada's genomic evaluation for Methane Efficiency effectively differentiates cows by methane emission potential, reinforcing its potential as a tool for genetic selection to reduce methane emissions in dairy cattle.

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Cite This Study

Narayana et al. (2026) studied this question.

synapsesocial.com/papers/6a0aac6d5ba8ef6d83b6fd2chttps://doi.org/10.3168/jdsc.2026-1010
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