Effects of bovine cytochrome P450 single-nucleotide polymorphism, forage type and body condition on production traits in cattle.
暂无分享,去创建一个
M. Looper | A. H. Brown | M. Brown | M. Sales | K. Coffey | C. Rosenkrans | S. Reiter | M. Larson
[1] D. Hallford,et al. Effects of body condition on measures of intramuscular and rump fat, endocrine factors, and calving rate of beef cows grazing common bermudagrass or endophyte-infected tall fescue. , 2010, Journal of animal science.
[2] Z. Johnson,et al. Effects of Heat Shock Protein-70 Gene and Forage System on Milk Yield and Composition of Beef Cattle1 , 2010 .
[3] M. Looper,et al. Calving traits of crossbred Brahman cows are associated with Heat Shock Protein 70 genetic polymorphisms. , 2010, Animal reproduction science.
[4] M. Looper,et al. Identification of Polymorphisms in the Enhancer Region of the Bovine Prolactin Gene and Association with Profitability Traits of Beef Cattle1 , 2010 .
[5] D. Spiers,et al. Effects of short-term heat stress on endophytic ergot alkaloid-induced alterations in rat hepatic gene expression. , 2009, Journal of animal science.
[6] L. Baumgard,et al. Effects of heat stress and plane of nutrition on lactating Holstein cows: I. Production, metabolism, and aspects of circulating somatotropin. , 2009, Journal of dairy science.
[7] D. Hallford,et al. Endocrine factors and ovarian follicles are influenced by body condition and somatotropin in postpartum beef cows. , 2008, Journal of animal science.
[8] D. Spiers,et al. Interaction Between Thermal Stress and Fescue Toxicosis: Animal Models and New Perspectives , 2008 .
[9] E. Grasso,et al. Cytochrome P450 expression and catalytic activity in coronary arteries and liver of cattle. , 2005, Biochimica et biophysica acta.
[10] F. Gonzalez,et al. Role of cytochromes P450 in chemical toxicity and oxidative stress: studies with CYP2E1. , 2005, Mutation research.
[11] B. Gibbs,et al. Regulation of Cytochrome P450 by Posttranslational Modification , 2005, Drug metabolism reviews.
[12] A. Daly,et al. Pharmacogenetics of the cytochromes P450. , 2004, Current topics in medicinal chemistry.
[13] C. West,et al. Growth rate and physiology of steers grazing tall fescue inoculated with novel endophytes. , 2004, Journal of animal science.
[14] C. Park,et al. The mammary gland and lactation. , 2004 .
[15] M. Diskin,et al. Effects of nutrition and metabolic status on circulating hormones and ovarian follicle development in cattle. , 2003, Animal reproduction science.
[16] F Peter Guengerich,et al. Cytochromes P450, drugs, and diseases. , 2003, Molecular interventions.
[17] S. C. Armstrong,et al. Concise Guide to Drug Interaction Principles for Medical Practice: Cytochrome P450s, Ugts, P-Glycoproteins , 2003 .
[18] E. Price,et al. Fenceline contact of beef calves with their dams at weaning reduces the negative effects of separation on behavior and growth rate. , 2003, Journal of animal science.
[19] D. Spiers,et al. Interaction of Endophyte-Infected Fescue and Heat Stress on Ovarian Function in the Beef Heifer1 , 2001, Biology of reproduction.
[20] C. Rosenkrans,et al. Hepatic metabolism of ergot alkaloids in beef cattle by cytochrome P450. , 2000, Biochemical and biophysical research communications.
[21] A. H. Brown,et al. Genotype x environment interactions in Angus, Brahman, and reciprocal-cross cows and their calves grazing common bermudagrass, endophyte-infected tall fescue pastures, or both forages. , 2000, Journal of animal science.
[22] A. H. Brown,et al. Genotype × environment interactions in Angus, Brahman, and reciprocal-cross cows and their calves grazing common bermudagrass, endophyte-infected tall fescue pastures, or both forages1,2 , 2000 .
[23] I. Bossis,et al. Nutritionally induced anovulation in beef heifers: ovarian and endocrine function preceding cessation of ovulation. , 1999, Journal of animal science.
[24] T. A. Hall,et al. BIOEDIT: A USER-FRIENDLY BIOLOGICAL SEQUENCE ALIGNMENT EDITOR AND ANALYSIS PROGRAM FOR WINDOWS 95/98/ NT , 1999 .
[25] Geoff Simm,et al. Genetic Improvement of Cattle and Sheep , 1998 .
[26] A. H. Brown,et al. Genotype x environment interactions in Angus, Brahman, and reciprocal cross cows and their calves grazing common bermudagrass and endophyte-infected tall fescue pastures. , 1997, Journal of animal science.
[27] E. M. de Groene,et al. Isolation of a bovine full length cytochrome P450 (CYP3A) cDNA sequence and its functional expression in V79 cells. , 1997, Environmental toxicology and pharmacology.
[28] Charles W. Bacon,et al. Molecular phylogeny of Acremonium and its taxonomic implications. , 1996 .
[29] B. Larson,et al. The effects of fescue toxicosis on beef cattle productivity. , 1995, Journal of animal science.
[30] J. Oliver,et al. Fescue toxicosis and its impact on animal agriculture. , 1993, Veterinary and human toxicology.
[31] J. Porter,et al. Effects of fescue toxicosis on reproduction in livestock. , 1992, Journal of animal science.
[32] J. Oltjen,et al. Carcass composition in mature Hereford cows: estimation and effect on daily metabolizable energy requirement during winter. , 1988, Journal of animal science.
[33] C. Bacon,et al. Occurrence of peptide and clavine ergot alkaloids in tall fescue grass. , 1986, Science.
[34] R. Bourdon,et al. Calving date versus calving interval as a reproductive measure in beef cattle. , 1983, Journal of animal science.