Enteric methane mitigation interventions

Author:

Fouts Julia Q1,Honan Mallory C1,Roque Breanna M12,Tricarico Juan M3,Kebreab Ermias1ORCID

Affiliation:

1. Department of Animal Science, University of California, Davis, Davis, CA 95616, USA

2. FutureFeed Pty Ltd Townsville, QLD 4810, Australia

3. Innovation Center for US Dairy, Rosemont, IL 60018, USA

Abstract

Abstract Mitigation of enteric methane (CH4) presents a feasible approach to curbing agriculture’s contribution to climate change. One intervention for reduction is dietary reformulation, which manipulates the composition of feedstuffs in ruminant diets to redirect fermentation processes toward low CH4 emissions. Examples include reducing the relative proportion of forages to concentrates, determining the rate of digestibility and passage rate from the rumen, and dietary lipid inclusion. Feed additives present another intervention for CH4 abatement and are classified based on their mode of action. Through inhibition of key enzymes, 3-nitrooxypropanol (3-NOP) and halogenated compounds directly target the methanogenesis pathway. Rumen environment modifiers, including nitrates, essential oils, and tannins, act on the conditions that affect methanogens and remove the accessibility of fermentation products needed for CH4 formation. Low CH4-emitting animals can also be directly or indirectly selected through breeding interventions, and genome-wide association studies are expected to provide efficient selection decisions. Overall, dietary reformulation and feed additive inclusion provide immediate and reversible effects, while selective breeding produces lasting, cumulative CH4 emission reductions.

Funder

University of California, Davis

USDA National Institute of Food and Agriculture Multistate Research

Innovation Center for US Dairy

Publisher

Oxford University Press (OUP)

Subject

General Veterinary,Animal Science and Zoology

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