Ruminosignatures associated with methane emissions and feed efficiency across geographies and cattle breeds
Springer Nature
2026
Vourlaki_et_al-ISME_journal-2026-Ruminosignatures_associated_with_methane_emissions.pdf - Publisher's version - 1.45 MB
How to cite: Ioanna-Theoni Vourlaki, Ori Furman, Ilma Tapio, Le Luo Guan, Sinéad M Waters, David Kenny, Paul Smith, Stuart F Kirwan, David Kelly, Ross Evans, Raquel Quintanilla, Miriam Piles, Antonio Reverter, Pâmela A Alexandre, Fuyong Li, Philip C Garnsworthy, Paolo Bani, Phillip B Pope, Diego P Morgavi, Itzhak Mizrahi, Yuliaxis Ramayo-Caldas, Ruminosignatures associated with methane emissions and feed efficiency across geographies and cattle breeds, The ISME Journal, Volume 20, Issue 1, January 2026, wrag185, https://doi.org/10.1093/ismejo/wrag185
Pysyvä osoite
Tiivistelmä
The cattle rumen microbiota represents a complex and dynamic ecosystem whose organization and relationship to host phenotypes are important for food security and environmental sustainability. We analyzed rumen microbiota profiles from 2496 cattle representing five breeds and production systems across five countries, identifying microbial co-abundance groups termed Ruminosignatures. We detected 14 distinct Ruminosignatures, including 2 observed across all populations dominated by Prevotella and UBA2810. Additional Ruminosignatures showed breed- and diet-specific patterns and collectively explained 96%–99% of variance in rumen microbial composition. Integrative cross-country analysis confirmed 10 out of 14 Ruminosignatures identified in cohort-specific analyses. Several Ruminosignatures were associated with methane emissions and feed efficiency traits and were partially under host genetic control, with heritability estimates ranging from 0.09 to 0.58. Structural equation modeling revealed consistent negative genetic and phenotypic correlations between the UBA2810-dominated Ruminosignature (RS_UBA2) and methane emissions across cohorts (rg = −0.40 to −0.65), with structural coefficients concordant in sign across all populations, supporting the expected direction of phenotypic response to selection on RS_UBA2. Meta-analysis confirmed positive associations of RS_UBA2 with average daily gain and negative associations with methane-related traits and feed conversion ratio. Functional genome-based predictions suggested RS_UBA2 may reduce methanogenesis through alternative hydrogen utilization pathways competing with methanogenic archaea. Production system type influenced both Ruminosignature occurrence and relationships with host phenotypes, emphasizing the relevance of context-specific strategies for microbiome modulation. Our findings highlight the potential of the Ruminosignatures framework for microbiome-informed breeding programs aimed at improving feed efficiency while reducing the environmental impact of cattle production.
ISBN
OKM-julkaisutyyppi
A1 Alkuperäisartikkeli tieteellisessä aikakauslehdessä
Julkaisusarja
Isme journal
Volyymi
20
Numero
1
Sivut
Sivut
14 p.
ISSN
1751-7362
1751-7370
1751-7370
