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Updated: Oct 29, 2025

The Use of an Automated System GreenFeed to Monitor Enteric Methane and Carbon Dioxide Emissions from Ruminant Animals
Published on: September 7, 2015
Selective breeding as a mitigation tool for methane emissions from dairy cattle.
Y de Haas1, R F Veerkamp1, G de Jong2
1Animal Breeding and Genomics, Wageningen University & Research, 6700 AH Wageningen, the Netherlands.
Animal breeding can reduce methane intensity in livestock. Including methane production in breeding goals, with economic value, can decrease methane intensity by 24% by 2050. Reliable genomic prediction requires extensive phenotyping and genotyping data.
Area of Science:
- Animal Science
- Agricultural Science
- Environmental Science
Background:
- Global livestock, especially ruminants, significantly contribute to anthropogenic greenhouse gas emissions.
- Reducing enteric methane (CH4) emissions is crucial for environmental sustainability.
- Animal breeding offers a cost-effective, permanent, and cumulative strategy for methane mitigation.
Purpose of the Study:
- To quantify the impact of incorporating methane production into the Dutch breeding goal.
- To evaluate the effectiveness of selective breeding for reducing methane intensity in livestock.
- To determine data requirements for reliable genomic prediction of methane production.
Main Methods:
- Utilized selection index theory to integrate methane production into the existing Dutch breeding goal.
- Incorporated heritability and genetic correlations for methane production with other traits from existing literature.
- Performed power calculations to assess data needs for genomic prediction reliability.
Main Results:
- Including methane production with zero economic value in the breeding goal led to a 13% increase in average daily methane production by 2050.
- However, methane intensity decreased by 13% under the same scenario.
- Assigning economic value to methane production in breeding goals could reduce methane intensity by 24% by 2050.
Conclusions:
- Selective breeding is a valuable tool for mitigating methane emissions in livestock, complementing other strategies.
- Achieving desired breeding impacts requires sufficient reliability in genomic predictions.
- Recording methane data on approximately 100 farms with 150 cows each for two years is necessary for reliable genomic prediction.
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