Adapting to climate change on desert rangelands: A multi-site comparison of grazing behavior plasticity of heritage and improved beef cattle
暂无分享,去创建一个
M. Duniway | A. Cibils | R. Estell | S. Utsumi | S. Spiegal | S. Nyamuryekung’e | M. McIntosh | L. Blanco | F. Rodríguez Almeida | Oscar A. Herrera Conegliano | A. González | Danielle Duni | Octavio Roacho Estrada | S. Nyamuryekung'e | Danielle M. Duni
[1] M. G. Cendoya,et al. Foraging behavior of Argentine Criollo and Angus cows grazing semi-desert rangelands in the Arid Gran Chaco region of Argentina , 2022, Journal of Arid Environments.
[2] A. Cibils,et al. Genetic and productive background of Criollo cattle in Argentina, Mexico, Uruguay and the United States , 2022, Journal of Arid Environments.
[3] A. Cibils,et al. Movement, activity, and landscape use patterns of heritage and commercial beef cows grazing Chihuahuan Desert rangeland , 2022, Journal of Arid Environments.
[4] A. Cibils,et al. A phenotypic characterization of Rarámuri Criollo cattle introduced into the Southwestern United States , 2021, Archivos Latinoamericanos de Producción Animal.
[5] A. Cibils,et al. Can cattle geolocation data yield behavior-based criteria to inform precision grazing systems on rangeland? , 2021, Livestock Science.
[6] Martha C. Anderson,et al. Foraging behavior and body temperature of heritage vs. commercial beef cows in relation to desert ambient heat , 2021 .
[7] R. Estell. The genesis of the Jornada criollo cattle program , 2021 .
[8] A. Cibils,et al. Weight gain, grazing behavior and carcass quality of desert grass-fed Rarámuri Criollo vs. crossbred steers , 2021, Livestock Science.
[9] D. Briske,et al. Future Climate Variability will Challenge Rangeland Beef Cattle Production in the Great Plains , 2021, Rangelands.
[10] R. Nielson,et al. Cattle Grazing Distribution Patterns Related to Topography across Diverse Rangeland Ecosystems of North America☆ , 2021, Rangeland Ecology and Management.
[11] D. VanLeeuwen,et al. Foraging Behavior of Heritage Versus Desert-Adapted Commercial Rangeland Beef Cows in Relation to Dam-Offspring Contact Patterns☆ , 2020, Rangeland Ecology and Management.
[12] J. Steiner,et al. Snapshot of Rancher Perspectives on Creative Cattle Management Options , 2020, Rangelands.
[13] C. Rotz,et al. Beef Production in the Southwestern United States: Strategies Toward Sustainability , 2020, Frontiers in Sustainable Food Systems.
[14] L. Guan,et al. Strategies to improve the efficiency of beef cattle production , 2020, Canadian Journal of Animal Science.
[15] J. Holechek,et al. Climate Change, Rangelands, and Sustainability of Ranching in the Western United States , 2020 .
[16] D. VanLeeuwen,et al. Do Young Calves Influence Movement Patterns of Nursing Raramuri Criollo Cows on Rangeland?☆ , 2020, Rangeland Ecology and Management.
[17] J. Holechek,et al. Long-Term Declining Trends in Chihuahuan Desert Forage Production in Relation to Precipitation and Ambient Temperature☆ , 2019, Rangeland Ecology and Management.
[18] B. Bestelmeyer,et al. Seasonal Divergence of Landscape Use by Heritage and Conventional Cattle on Desert Rangeland , 2019, Rangeland Ecology & Management.
[19] J. Derner,et al. Elevated CO2 induces substantial and persistent declines in forage quality irrespective of warming in mixedgrass prairie. , 2018, Ecological applications : a publication of the Ecological Society of America.
[20] Leah H. Samberg,et al. Increasing importance of precipitation variability on global livestock grazing lands , 2018, Nature Climate Change.
[21] Travis M. Williams,et al. Managing climate risks on the ranch with limited drought information , 2018 .
[22] K. Havstad,et al. Vulnerabilities of Southwestern U.S. Rangeland-based animal agriculture to climate change , 2018, Climatic Change.
[23] A. Cibils,et al. Temperament Affects Rangeland Use Patterns and Reproductive Performance of Beef Cows , 2016, Rangelands.
[24] A. Cibils,et al. Criollo Cattle: Heritage Genetics for Arid Landscapes , 2015 .
[25] R. Reid,et al. Dynamics and Resilience of Rangelands and Pastoral Peoples Around the Globe , 2014 .
[26] K. Havstad,et al. Increasing Shrub Use by Livestock in a World with Less Grass , 2012 .
[27] E. Fredrickson,et al. An assessment of behavioural syndromes in rangeland-raised beef cattle , 2012 .
[28] D. Peters,et al. Foraging behavior of heritage versus recently introduced herbivores on desert landscapes of the American Southwest. , 2011 .
[29] Denis Réale,et al. Behavioural reaction norms: animal personality meets individual plasticity. , 2010, Trends in ecology & evolution.
[30] R. Behnke,et al. Transhumance and pastoralist resilience in the Western United States 10 , 2010 .
[31] A. Dolev,et al. Grazing behavior and energy costs of activity: a comparison between two types of cattle. , 2009, Journal of animal science.
[32] Debra P. C. Peters,et al. The Western United States Rangelands: A Major Resource , 2009 .
[33] Daniel T. Blumstein,et al. Fitness consequences of personality: a meta-analysis , 2008 .
[34] N. Dingemanse,et al. Integrating animal temperament within ecology and evolution , 2007, Biological reviews of the Cambridge Philosophical Society.
[35] N. Dingemanse,et al. Natural selection and animal personality , 2005 .
[36] Andrew Sih,et al. Behavioral syndromes: an ecological and evolutionary overview. , 2004, Trends in ecology & evolution.
[37] A. Knapp,et al. Variation among biomes in temporal dynamics of aboveground primary production. , 2001, Science.
[38] S. D. de Boer,et al. Coping styles in animals: current status in behavior and stress-physiology , 1999, Neuroscience & Biobehavioral Reviews.
[39] Jerry M. Hawkes,et al. Desert and prairie ranching profitability. , 1993 .