Biblio

Found 385 results
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A
C. C. Abnet, Tanguay, R. L., Hahn, M. E., Heideman, W., and Peterson, R. E., Two forms of aryl hydrocarbon receptor type 2 in rainbow trout (Oncorhynchus mykiss). Evidence for differential expression and enhancer specificity., J Biol Chem, vol. 274, no. 21, pp. 15159-66, 1999.
C. C. Abnet, Tanguay, R. L., Heideman, W., and Peterson, R. E., Transactivation activity of human, zebrafish, and rainbow trout aryl hydrocarbon receptors expressed in COS-7 cells: greater insight into species differences in toxic potency of polychlorinated dibenzo-p-dioxin, dibenzofuran, and biphenyl congeners., Toxicol Appl Pharmacol, vol. 159, no. 1, pp. 41-51, 1999.
S. - J. Ahn and Choi, M. - Y., Identification and characterization of capa and pyrokinin genes in the brown marmorated stink bug, Halyomorpha halys (Hemiptera): Gene structure, immunocytochemistry, and differential expression., Archives of Insect Biochemistry and Physiology, vol. 99, no. 3, p. e21500, 2018.
S. - J. Ahn, Oh, H. - W., Corcoran, J., Kim, J. - A., Park, K. - C., Park, C. Gyoo, and Choi, M. - Y., Sex-biased gene expression in antennae of Drosophila suzukii., Arch Insect Biochem Physiol, vol. 104, no. 1, p. e21660, 2020.
H. Akbar, Bionaz, M., Carlson, D. B., Rodriguez-Zas, S. L., Everts, R. E., Lewin, H. A., Drackley, J. K., and Loor, J. J., Feed restriction, but not l-carnitine infusion, alters the liver transcriptome by inhibiting sterol synthesis and mitochondrial oxidative phosphorylation and increasing gluconeogenesis in mid-lactation dairy cows., J Dairy Sci, vol. 96, no. 4, pp. 2201-13, 2013.
A. M. Al-aghbari and Menino, A. R., Survival of oocytes recovered from vitrified sheep ovarian tissues., Anim Reprod Sci, vol. 71, no. 1-2, pp. 101-10, 2002.
J. D. Albro, Weber, D. W., and Delcurto, T., Comparison of whole, raw soybeans, extruded soybeans, or soybean meal and barley on digestive characteristics and performance of weaned beef steers consuming mature grass hay., J Anim Sci, vol. 71, no. 1, pp. 26-32, 1993.
E. A. Andreasen, Mathew, L. K., and Tanguay, R. L., Regenerative growth is impacted by TCDD: gene expression analysis reveals extracellular matrix modulation., Toxicol Sci, vol. 92, no. 1, pp. 254-69, 2006.
E. A. Andreasen, Hahn, M. E., Heideman, W., Peterson, R. E., and Tanguay, R. L., The zebrafish (Danio rerio) aryl hydrocarbon receptor type 1 is a novel vertebrate receptor., Mol Pharmacol, vol. 62, no. 2, pp. 234-49, 2002.
E. A. Andreasen, Mathew, L. K., Löhr, C. V., Hasson, R., and Tanguay, R. L., Aryl hydrocarbon receptor activation impairs extracellular matrix remodeling during zebra fish fin regeneration., Toxicol Sci, vol. 95, no. 1, pp. 215-26, 2007.
E. A. Andreasen, Spitsbergen, J. M., Tanguay, R. L., Stegeman, J. J., Heideman, W., and Peterson, R. E., Tissue-specific expression of AHR2, ARNT2, and CYP1A in zebrafish embryos and larvae: effects of developmental stage and 2,3,7,8-tetrachlorodibenzo-p-dioxin exposure., Toxicol Sci, vol. 68, no. 2, pp. 403-19, 2002.
E. A. Andreasen, Tanguay, R. L., Peterson, R. E., and Heideman, W., Identification of a critical amino acid in the aryl hydrocarbon receptor., J Biol Chem, vol. 277, no. 15, pp. 13210-8, 2002.
E. A. Andreasen, Spitsbergen, J. M., Tanguay, R. L., Stegeman, J. J., Heideman, W., and Peterson, R. E., Tissue-specific expression of AHR2, ARNT2, and CYP1A in zebrafish embryos and larvae: effects of developmental stage and 2,3,7,8-tetrachlorodibenzo-p-dioxin exposure., Toxicol Sci, vol. 68, no. 2, pp. 403-19, 2002.
W. W. L. Au, Giorli, G., Chen, J., Copeland, A., Lammers, M., Richlen, M., Jarvis, S., Morrissey, R., Moretti, D., and Klinck, H., Nighttime foraging by deep diving echolocating odontocetes off the Hawaiian islands of Kauai and Ni'ihau as determined by passive acoustic monitors., J Acoust Soc Am, vol. 133, no. 5, pp. 3119-27, 2013.
B
M. Balik-Meisner, Truong, L., Scholl, E. H., Tanguay, R. L., and Reif, D. M., Population genetic diversity in zebrafish lines., Mamm Genome, vol. 29, no. 1-2, pp. 90-100, 2018.
C. L. Barton, Johnson, E. W., and Tanguay, R. L., Facility Design and Health Management Program at the Sinnhuber Aquatic Research Laboratory., Zebrafish, vol. 13 Suppl 1, pp. S39-43, 2016.
L. M. Beaver, Truong, L., Barton, C. L., Chase, T. T., Gonnerman, G. D., Wong, C. P., Tanguay, R. L., and Ho, E., Combinatorial effects of zinc deficiency and arsenic exposure on zebrafish (Danio rerio) development., PLoS One, vol. 12, no. 8, p. e0183831, 2017.
D. J. Benford and Good, S. P., Development of cytotoxicity tests for assessment of the toxicity of water samples taken from the environment., Mol Toxicol, vol. 1, no. 4, pp. 419-25, 1987.
A. J. Bergmann, Tanguay, R. L., and Anderson, K. A., Using passive sampling and zebrafish to identify developmental toxicants in complex mixtures., Environ Toxicol Chem, vol. 36, no. 9, pp. 2290-2298, 2017.
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., Gene networks driving bovine milk fat synthesis during the lactation cycle., BMC Genomics, vol. 9, p. 366, 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, Monaco, E., and Wheeler, M. B., Transcription Adaptation during In Vitro Adipogenesis and Osteogenesis of Porcine Mesenchymal Stem Cells: Dynamics of Pathways, Biological Processes, Up-Stream Regulators, and Gene Networks., PLoS One, vol. 10, no. 9, p. e0137644, 2015.
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, 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.