Nunes H, Maduro Dias C, Alvaro N, Borba A
Animals (Basel). 2024; 14(6).
PMID: 38540065
PMC: 10967268.
DOI: 10.3390/ani14060967.
Dzermeikaite K, Kristolaityte J, Antanaitis R
Animals (Basel). 2024; 14(6).
PMID: 38539927
PMC: 10967422.
DOI: 10.3390/ani14060829.
Cordell G
Nat Prod Bioprospect. 2024; 14(1):11.
PMID: 38270809
PMC: 10811317.
DOI: 10.1007/s13659-024-00431-5.
Aryee G, Luecke S, Dahlen C, Swanson K, Amat S
Microorganisms. 2023; 11(11).
PMID: 38004757
PMC: 10673468.
DOI: 10.3390/microorganisms11112746.
Shinkai T, Takizawa S, Fujimori M, Mitsumori M
Anim Biosci. 2023; 37(2):360-369.
PMID: 37946422
PMC: 10838666.
DOI: 10.5713/ab.23.0301.
Enteric methane research and mitigation strategies for pastoral-based beef cattle production systems.
Smith P, Kelly A, Kenny D, Waters S
Front Vet Sci. 2023; 9:958340.
PMID: 36619952
PMC: 9817038.
DOI: 10.3389/fvets.2022.958340.
GHG Emissions from Dairy Small Ruminants in Castilla-La Mancha (Spain), Using the ManleCO Simulation Model.
Salcedo G, Garcia O, Jimenez L, Gallego R, Gonzalez-Cano R, Arias R
Animals (Basel). 2022; 12(6).
PMID: 35327192
PMC: 8944496.
DOI: 10.3390/ani12060793.
Sodium nitrate has no detrimental effect on milk fatty acid profile and rumen bacterial population in water buffaloes.
Xie F, Tang Z, Liang X, Wen C, Li M, Guo Y
AMB Express. 2022; 12(1):11.
PMID: 35122537
PMC: 8818069.
DOI: 10.1186/s13568-022-01350-9.
Predicting metabolizable energy from digestible energy for growing and finishing beef cattle and relationships to the prediction of methane.
Hales K, Coppin C, Smith Z, McDaniel Z, Tedeschi L, Cole N
J Anim Sci. 2022; 100(3).
PMID: 35034122
PMC: 8892684.
DOI: 10.1093/jas/skac013.
Gentiana straminea supplementation improves feed intake, nitrogen and energy utilization, and methane emission of Simmental calves in northwest China.
Xie K, Wang Z, Guo Y, Zhang C, Zhu W, Hou F
Anim Biosci. 2021; 35(6):838-846.
PMID: 34727636
PMC: 9066040.
DOI: 10.5713/ab.21.0263.
Using genome comparisons of wild-type and resistant mutants of to help understand mechanisms of resistance to methane inhibitors.
Long F, Cheung C, Whitman W, Cook G, Ronimus R
Access Microbiol. 2021; 3(7):000244.
PMID: 34595395
PMC: 8479958.
DOI: 10.1099/acmi.0.000244.
In Vitro Screening of East Asian Plant Extracts for Potential Use in Reducing Ruminal Methane Production.
Bharanidharan R, Arokiyaraj S, Baik M, Ibidhi R, Lee S, Lee Y
Animals (Basel). 2021; 11(4).
PMID: 33916571
PMC: 8066825.
DOI: 10.3390/ani11041020.
Distinct Stage Changes in Early-Life Colonization and Acquisition of the Gut Microbiota and Its Correlations With Volatile Fatty Acids in Goat Kids.
Guo J, Li P, Zhang K, Zhang L, Wang X, Li L
Front Microbiol. 2020; 11:584742.
PMID: 33162961
PMC: 7581860.
DOI: 10.3389/fmicb.2020.584742.
Pasture intensification in beef cattle production can affect methane emission intensity.
Sakamoto L, Berndt A, Pedroso A, Lemes A, Azenha M, Alves T
J Anim Sci. 2020; 98(10).
PMID: 32930330
PMC: 7751173.
DOI: 10.1093/jas/skaa309.
Are Vaccines the Solution for Methane Emissions from Ruminants? A Systematic Review.
Baca-Gonzalez V, Asensio-Calavia P, Gonzalez-Acosta S, Perez de la Lastra J, Morales de la Nuez A
Vaccines (Basel). 2020; 8(3).
PMID: 32825375
PMC: 7565300.
DOI: 10.3390/vaccines8030460.
Characterization of the Rumen Microbiota and Volatile Fatty Acid Profiles of Weaned Goat Kids under Shrub-Grassland Grazing and Indoor Feeding.
Guo J, Li P, Liu S, Miao B, Zeng B, Jiang Y
Animals (Basel). 2020; 10(2).
PMID: 31972989
PMC: 7070841.
DOI: 10.3390/ani10020176.
Diverse hydrogen production and consumption pathways influence methane production in ruminants.
Greening C, Geier R, Wang C, Woods L, Morales S, McDonald M
ISME J. 2019; 13(10):2617-2632.
PMID: 31243332
PMC: 6776011.
DOI: 10.1038/s41396-019-0464-2.
Inhibition of Rumen Methanogens by a Novel Archaeal Lytic Enzyme Displayed on Tailored Bionanoparticles.
Altermann E, Schofield L, Ronimus R, Beatty A, Reilly K
Front Microbiol. 2018; 9:2378.
PMID: 30356700
PMC: 6189367.
DOI: 10.3389/fmicb.2018.02378.
Development of Multiwell-Plate Methods Using Pure Cultures of Methanogens To Identify New Inhibitors for Suppressing Ruminant Methane Emissions.
Weimar M, Cheung J, Dey D, McSweeney C, Morrison M, Kobayashi Y
Appl Environ Microbiol. 2017; 83(15).
PMID: 28526787
PMC: 5514671.
DOI: 10.1128/AEM.00396-17.
The Type of Forage Substrate Preparation Included as Substrate in a RUSITEC System Affects the Ruminal Microbiota and Fermentation Characteristics.
Duarte A, Holman D, Alexander T, Durmic Z, Vercoe P, Chaves A
Front Microbiol. 2017; 8:704.
PMID: 28473826
PMC: 5397515.
DOI: 10.3389/fmicb.2017.00704.