Found 110 results
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B
G. Bertoni, Trevisi, E., Han, X., and Bionaz, M., Effects of inflammatory conditions on liver activity in puerperium period and consequences for performance in dairy cows., J Dairy Sci, vol. 91, no. 9, pp. 3300-10, 2008.
M. Bionaz and Loor, J. J., ACSL1, AGPAT6, FABP3, LPIN1, and SLC27A6 are the most abundant isoforms in bovine mammary tissue and their expression is affected by stage of lactation., J Nutr, vol. 138, no. 6, pp. 1019-24, 2008.
M. Bionaz and Loor, J. J., Identification of reference genes for quantitative real-time PCR in the bovine mammary gland during the lactation cycle., Physiol Genomics, vol. 29, no. 3, pp. 312-9, 2007.
M. Bionaz, Osorio, J. S., and Loor, J. J., TRIENNIAL LACTATION SYMPOSIUM: Nutrigenomics in dairy cows: Nutrients, transcription factors, and techniques., J Anim Sci, vol. 93, no. 12, pp. 5531-53, 2015.
M. Bionaz, Periasamy, K., Rodriguez-Zas, S. L., Everts, R. E., Lewin, H. A., Hurley, W. L., and Loor, J. J., Old and new stories: revelations from functional analysis of the bovine mammary transcriptome during the lactation cycle., PLoS One, vol. 7, no. 3, p. e33268, 2012.
M. Bionaz, Trevisi, E., Calamari, L., Librandi, F., Ferrari, A., and Bertoni, G., Plasma paraoxonase, health, inflammatory conditions, and liver function in transition dairy cows., J Dairy Sci, vol. 90, no. 4, pp. 1740-50, 2007.
M. Bionaz, Periasamy, K., Rodriguez-Zas, S. L., Hurley, W. L., and Loor, J. J., A novel dynamic impact approach (DIA) for functional analysis of time-course omics studies: validation using the bovine mammary transcriptome., PLoS One, vol. 7, no. 3, p. e32455, 2012.
M. Bionaz and Loor, J. J., Gene networks driving bovine milk fat synthesis during the lactation cycle., BMC Genomics, vol. 9, p. 366, 2008.
C. Bishop and Stormshak, F., Non-genomic actions of progesterone and estrogens in regulating reproductive events in domestic animals., Vet J, vol. 176, no. 3, pp. 270-80, 2008.
D. W. Bohnert, Schauer, C. S., and Delcurto, T., Influence of rumen protein degradability and supplementation frequency on performance and nitrogen use in ruminants consuming low-quality forage: cow performance and efficiency of nitrogen use in wethers., Journal of Animal Science, vol. 80, no. 6, pp. 1629-37, 2002.
T. M. Brown, Cerruto-Noya, C. A., Schrader, K. K., Kleinholz, C. W., and DeWitt, C. A. Mireles, Evaluation of a modified pH-shift process to reduce 2-methylisoborneol and geosmin in spiked catfish and produce a consumer acceptable fried catfish nugget-like product., J Food Sci, vol. 77, no. 10, pp. S377-83, 2012.
S. M. Bugel, Bonventre, J. A., White, L. A., Tanguay, R. L., and Cooper, K. R., Chronic exposure of killifish to a highly polluted environment desensitizes estrogen-responsive reproductive and biomarker genes., Aquat Toxicol, vol. 152, pp. 222-31, 2014.
C
F. W. Chaplen, Fahl, W. E., and Cameron, D. C., Evidence of high levels of methylglyoxal in cultured Chinese hamster ovary cells., Proc Natl Acad Sci U S A, vol. 95, no. 10, pp. 5533-8, 1998.
J. Chen, Xiao, Y., Gai, Z., Li, R., Zhu, Z., Bai, C., Tanguay, R. L., Xu, X., Huang, C., and Dong, Q., Reproductive toxicity of low level bisphenol A exposures in a two-generation zebrafish assay: Evidence of male-specific effects., Aquat Toxicol, vol. 169, pp. 204-14, 2015.
J. Chen, Wang, X., Ge, X., Wang, D., Wang, T., Zhang, L., Tanguay, R. L., Simonich, M. T., Huang, C., and Dong, Q., Chronic perfluorooctanesulphonic acid (PFOS) exposure produces estrogenic effects in zebrafish., Environ Pollut, vol. 218, pp. 702-708, 2016.
J. Chen, Das, S. R., La Du, J., Corvi, M. M., Bai, C., Chen, Y., Liu, X., Zhu, G., Tanguay, R. L., Dong, Q., and Huang, C., Chronic PFOS exposures induce life stage-specific behavioral deficits in adult zebrafish and produce malformation and behavioral deficits in F1 offspring., Environ Toxicol Chem, vol. 32, no. 1, pp. 201-6, 2013.
J. Chen, Tanguay, R. L., Simonich, S. L. Massey, Nie, S., Zhao, Y., Li, L., Bai, C., Dong, Q., Huang, C., and Lin, K., TBBPA chronic exposure produces sex-specific neurobehavioral and social interaction changes in adult zebrafish., Neurotoxicol Teratol, vol. 56, pp. 9-15, 2016.
M. - Y. Choi, Tanaka, M., Kataoka, H., Boo, K. S., and Tatsuki, S., Isolation and identification of the cDNA encoding the pheromone biosynthesis activating neuropeptide and additional neuropeptides in the oriental tobacco budworm, Helicoverpa assulta (Lepidoptera: Noctuidae)., Insect Biochem Mol Biol, vol. 28, no. 10, pp. 759-66, 1998.
M. - Y. Choi, Han, K. Sik, Boo, K. Saeng, and Jurenka, R. A., Pheromone biosynthetic pathways in the moths Helicoverpa zea and Helicoverpa assulta., Insect Biochem Mol Biol, vol. 32, no. 11, pp. 1353-9, 2002.
J. - Y. Choi, Oughton, J. A., and Kerkvliet, N. I., Functional alterations in CD11b(+)Gr-1(+) cells in mice injected with allogeneic tumor cells and treated with 2,3,7,8-tetrachlorodibenzo-p-dioxin., Int Immunopharmacol, vol. 3, no. 4, pp. 553-70, 2003.
A. Irene Clark, Hughes, P. S., Grube, M., and Stewart, M. Elizabeth, Autistic traits and sensitivity to interference with flavour identification., Autism Res, vol. 6, no. 5, pp. 332-6, 2013.

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