Found 1473 results
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B. K. Kerns, Hemstrom, M. A., Conklin, D., Yospin, G. I., Johnson, B., Bachelet, D., and Bridgham, S., Approaches to incorporating climate change effects in state and transition simulation models of vegetation, 2012.
C. E E, Goyer, A., Naponelli, V., Krassovskaya, I., Gregory, III, J. F., Hanson, A. D., and Shachar-Hill, Y., Arabidopsis 10-formyl tetrahydrofolate deformylases are essential for photorespiration, Plant Cell, vol. 20, 2008.
, JL, C., K, H., P-P, L., TM, H., J, S., RC, M., and H, N., An Arabidopsis thaliana embryo arrest mutant exhibiting germination potential, Seed Science Research , vol. 18, pp. 55-65, 2008.
C. W. Higgins, Katul, G. G., Froidevaux, M., Simeonov, V., and Parlange, M. B., Are atmospheric surface layer flows ergodic?, Geophysical Research Letters, vol. 40, pp. 3342–3346, 2013.
E. G. Kelly, Are Barred Owls Replacing Spotted Owls?, The Condor, vol. 105, 2002.
S. R. Dewey, Kennedy, P. L., and Stephens, R. M., Are dawn vocalization surveys effective for monitoring gashawk nest-area occupancy?, J. Wildl. Manage, vol. 67, no. 2, pp. 390-397, 2003.
M. Keiluweit, Nico, P. S., Kleber, M., and Fendorf, S., Are oxygen limitations under recognized regulators of organic carbon turnover in upland soils?, Biogeochemistry, vol. 12, no. 2-3, pp. 157 - 171, 2016.
M. Keiluweit, Nico, P. S., Kleber, M., and Fendorf, S., Are oxygen limitations under recognized regulators of organic carbon turnover in upland soils?, Biogeochemistry, vol. 12, no. 2-3, pp. 157 - 171, 2016.
K. Klesk and Qian, M., Aroma extract dilution analysis of Cv. Marion (Rubus spp. hyb) and Cv. Evergreen (R. laciniatus L.) blackberries., J Agric Food Chem, vol. 51, no. 11, pp. 3436-41, 2003.
K. Klesk, Qian, M. C., and Martin, R. R., Aroma extract dilution analysis of cv. Meeker (Rubus idaeus L.) red raspberries from Oregon and Washington., J Agric Food Chem, vol. 52, no. 16, pp. 5155-61, 2004.
D. B. Wiedemeier, Abiven, S., Hockaday, W. C., Keiluweit, M., Kleber, M., Masiello, C. A., McBeath, A. V., Nico, P. S., Pyle, L. A., Schneider, M. P. W., Smernik, R. J., Wiesenberg, G. L. B., and Schmidt, M. W. I., Aromaticity and degree of aromatic condensation of char, Organic Geochemistry, vol. 78, pp. 135 - 143, 2015.
D. B. Wiedemeier, Abiven, S., Hockaday, W. C., Keiluweit, M., Kleber, M., Masiello, C. A., McBeath, A. V., Nico, P. S., Pyle, L. A., Schneider, M. P. W., Smernik, R. J., Wiesenberg, G. L. B., and Schmidt, M. W. I., Aromaticity and degree of aromatic condensation of char, Organic Geochemistry, vol. 78, pp. 135 - 143, 2015.
D. E. Gundersen-Rindal, Adrianos, S. L., Allen, M. L., Becnel, J. J., Chen, Y. P., Choi, M. - Y., Estep, A., Evans, J. D., Garczynski, S. F., Geib, S. M., Ghosh, S. K. B., Handler, A. M., Hasegawa, D. K., Heerman, M. C., .J.Hull, J., Hunter, W. B., Kaur, N., Li, J., Li, W., Ling, K. - S., Nayduch, D., Oppert, B. S., Perera, O. P., Perkin, L. C., Sanscrainte, N. D., Sim, S. B., Sparks, M. E., Temeyer, K. B., Meer, R. K. Vander, Wintermantel, W. M., James, R. R., Hackett16, K. J., and Coates, B. S., Arthropod genomics research in the United States Department of Agriculture Agricultural Research Service: Applications of RNA interference and CRISPR gene editing technologies in pest control, Trends in Entomology, vol. 13, pp. 109-137, 2017.
E. F. O'Donnell, Jang, H. Sang, Pearce, M. C., Kerkvliet, N. I., and Kolluri, S., The aryl hydrocarbon receptor is required for induction of p21cip1/waf1 expression and growth inhibition by SU5416 in hepatoma cells., Oncotarget, vol. 8, no. 15, pp. 25211-25225, 2017.
E. F. O'Donnell, Jang, H. Sang, Pearce, M. C., Kerkvliet, N. I., and Kolluri, S., The aryl hydrocarbon receptor is required for induction of p21cip1/waf1 expression and growth inhibition by SU5416 in hepatoma cells., Oncotarget, vol. 8, no. 15, pp. 25211-25225, 2017.
E. F. ’ Donnell, Kopparapu, P. Rao, Koch, D. C., Jang, H. Sang, Phillips, J. Lynne, Tanguay, R. L., Kerkvliet, N. I., and Kolluri, S., The Aryl Hydrocarbon Receptor Mediates Leflunomide-Induced Growth Inhibition of Melanoma Cells, PLoS ONE, vol. 7, no. 7, p. e40926, 2012.
E. F. ’ Donnell, Kopparapu, P. Rao, Koch, D. C., Jang, H. Sang, Phillips, J. Lynne, Tanguay, R. L., Kerkvliet, N. I., and Kolluri, S., The Aryl Hydrocarbon Receptor Mediates Leflunomide-Induced Growth Inhibition of Melanoma Cells, PLoS ONE, vol. 7, no. 7, p. e40926, 2012.
E. F. ’ Donnell, Kopparapu, P. Rao, Koch, D. C., Jang, H. Sang, Phillips, J. Lynne, Tanguay, R. L., Kerkvliet, N. I., and Kolluri, S., The Aryl Hydrocarbon Receptor Mediates Leflunomide-Induced Growth Inhibition of Melanoma Cells, PLoS ONE, vol. 7, no. 7, p. e40926, 2012.
E. F. ’ Donnell, Kopparapu, P. Rao, Koch, D. C., Jang, H. Sang, Phillips, J. Lynne, Tanguay, R. L., Kerkvliet, N. I., and Kolluri, S., The Aryl Hydrocarbon Receptor Mediates Leflunomide-Induced Growth Inhibition of Melanoma Cells, PLoS ONE, vol. 7, no. 7, p. e40926, 2012.
E. F. O'Donnell, Kopparapu, P. Rao, Koch, D. C., Jang, H. Sang, Phillips, J. Lynne, Tanguay, R. L., Kerkvliet, N. I., and Kolluri, S. Kumar, The aryl hydrocarbon receptor mediates leflunomide-induced growth inhibition of melanoma cells., PLoS One, vol. 7, no. 7, p. e40926, 2012.
E. F. O'Donnell, Kopparapu, P. Rao, Koch, D. C., Jang, H. Sang, Phillips, J. Lynne, Tanguay, R. L., Kerkvliet, N. I., and Kolluri, S. Kumar, The aryl hydrocarbon receptor mediates leflunomide-induced growth inhibition of melanoma cells., PLoS One, vol. 7, no. 7, p. e40926, 2012.
E. F. O'Donnell, Kopparapu, P. Rao, Koch, D. C., Jang, H. Sang, Phillips, J. Lynne, Tanguay, R. L., Kerkvliet, N. I., and Kolluri, S. Kumar, The aryl hydrocarbon receptor mediates leflunomide-induced growth inhibition of melanoma cells., PLoS One, vol. 7, no. 7, p. e40926, 2012.
E. F. O'Donnell, Kopparapu, P. Rao, Koch, D. C., Jang, H. Sang, Phillips, J. Lynne, Tanguay, R. L., Kerkvliet, N. I., and Kolluri, S. Kumar, The aryl hydrocarbon receptor mediates leflunomide-induced growth inhibition of melanoma cells., PLoS One, vol. 7, no. 7, p. e40926, 2012.
E. F. O'Donnell, Koch, D. C., Bisson, W. H., Jang, H. S., and Kolluri, S., The aryl hydrocarbon receptor mediates raloxifene-induced apoptosis in estrogen receptor-negative hepatoma and breast cancer cells, Cell death & disease, vol. 5, p. e1038, 2014.
E. F. O'Donnell, Koch, D. C., Bisson, W. H., Jang, H. S., and Kolluri, S., The aryl hydrocarbon receptor mediates raloxifene-induced apoptosis in estrogen receptor-negative hepatoma and breast cancer cells, Cell death & disease, vol. 5, p. e1038, 2014.

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