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Ermias Kebreab

Explore the profile of Ermias Kebreab including associated specialties, affiliations and a list of published articles. Areas
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Articles 66
Citations 607
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Recent Articles
1.
Souza V, Bougouin A, Archimede H, Adesogan A, Kebreab E
Transl Anim Sci . 2025 Mar; 9:txaf012. PMID: 40041719
The objective of this meta-regression was to evaluate the influence of ruminant species, sex, and climatic regions on the metabolizable energy () requirements for maintenance ( and weight gain ()...
2.
Lyu L, Qin X, Xiu H, Qu Y, Wang Y, Yang X, et al.
Theriogenology . 2025 Feb; 237:99-109. PMID: 39986219
Neddylation is a biological process that covalently links neuronal precursor cell-expressed developmentally downregulated protein 8 (NEDD8) to its substrate. Its main function is to activate the cullin ubiquitin junction complex,...
3.
Dijkstra J, Bannink A, Congio G, Ellis J, Eugene M, Garcia F, et al.
J Dairy Sci . 2024 Dec; 108(1):356-374. PMID: 39725502
Over the past decade, there has been considerable attention on mitigating enteric methane (CH) emissions from ruminants through the utilization of antimethanogenic feed additives (AMFA). Administered in small quantities, these...
4.
Lucas K, Kebreab E
Sci Total Environ . 2024 Dec; 959():178214. PMID: 39721526
The species-area relationship (SAR) is one of the oldest in ecology, linking the increase in species richness in sampling area. Later, new parameters were incorporated into its equation, such as...
5.
Pressman E, Kebreab E
Front Microbiol . 2024 Dec; 15:1488370. PMID: 39640851
The environmental impacts of livestock agriculture include the production of greenhouse gasses (GHG) such as methane (CH) through enteric fermentation. Recent advances in our understanding of methanogenesis have led to...
6.
Meo-Filho P, Ramirez-Agudelo J, Kebreab E
Proc Natl Acad Sci U S A . 2024 Dec; 121(50):e2410863121. PMID: 39621924
The ruminant livestock sector considerably contributes to global greenhouse gas emissions. This study investigates the effectiveness of pelleted bromoform-containing seaweed () (Brominata) as an enteric methane (CH) inhibitor in grazing...
7.
Beauchemin K, Kebreab E, Cain M, VandeHaar M
Annu Rev Anim Biosci . 2024 Nov; 13(1):325-341. PMID: 39546409
Achieving net-zero greenhouse gas (GHG) emissions in dairy production will require >50% reduction in enteric methane (CH) emissions together with elimination of emissions from feed production, additional carbon sequestration, reduction...
8.
de Ondarza M, de Souza V, Kebreab E, Tricarico J
J Dairy Sci . 2024 Jun; 107(10):8072-8083. PMID: 38825101
Supplemental dietary rumen available fats show promise as enteric methane (eCH) mitigators for lactating dairy cows. However, concerns include variability in eCH response and possible negative effects on dairy cow...
9.
Souza V, Congio G, Rodrigues J, Valadares Filho S, Silva F, Renno L, et al.
Transl Anim Sci . 2024 May; 8:txae072. PMID: 38745851
The objective of this meta-analysis was to develop and evaluate models for predicting nitrogen (N) excretion in feces, urine, and manure in beef cattle in South America. The study incorporated...
10.
Dang W, Ren Y, Chen Q, He M, Kebreab E, Wang D, et al.
Animals (Basel) . 2024 Apr; 14(7). PMID: 38612240
Ovarian follicular GCs are strongly implicated in the growth, development, and atresia of ovarian follicles. The Wnt/β-catenin and Notch signaling pathways participate in GC proliferation, differentiation, apoptosis, and steroid hormone...