Biblio

Found 7997 results
[ Author(Asc)] Title Type Year
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W
S. Wada, Kennedy, J. A., and Reed, B. M., Seed-coat anatomy and proanthocyanidins contribute to the dormancy of Rubus seed, Scientia Horticulturae, vol. 130, no. 4, pp. 762 - 768, 2011.
S. Wada, Altland, J., Mallory-Smith, C., and Stang, J., Effect of dolomitic lime rate and application method on substrate pH and creeping woodsorrel establishment, Journal of Environmental Horticulture, vol. 24, pp. 185–191, 2006.
S. Wada, Mallory-Smith, C., Stang, J., and Holowina, G., Oxalis corniculata L. response to substrate pH, NC State Univ. Grower-Gram, pp. 7-10, 2004.
S. Wada, Reed, B. M., and , Seed coat morphology differentiates blackberry cultivars, Journal of American Pomological Society, vol. 64, p. 152, 2010.
S. Wada, Nursery container weeds response to modification of substrate pH, substrate particle size and applied nitrogen form, 2006.
S. Wada and Reed, B. M., Trends in culture medium nitrogen requirements for in vitro shoot growth of diverse pear germplasm, Acta Horticulturae, no. 1155, pp. 29 - 36, 2017.
S. Wada, Niedz, R. P., Denoma, J., and Reed, B. M., Mesos components (CaCl2, MgSO4, KH2PO4) are critical for improving pear micropropagation, In Vitro Cellular & Developmental Biology - Plant, vol. 494644635964548220187916797301548343112138474129, no. 3, pp. 356 - 365, 2013.
S. Wada and Altland, J. E., Oxalis corniculata L. response to substrate pH, Proc. Southern Nurs. Assoc. Res. Conf., vol. 49. pp. 401-403, 2004.
S. Wada, Evaluation of Rubus seed characteristics: seed coat morphology, anatomy, germination requirements and dormancy breaking. Oregon State University, 2009.
V
C. S., J., T., and J., J., Ecological Water Quality - Water Treatment and ReuseWater Quality in the Agronomic Context: Flood Irrigation Impacts on Summer In-Stream Temperature Extremes in the Interior Pacific Northwest (USA), in Water Quality in the Agronomic Context, K. Voudouris, Ed. InTech, 2012.
B. A. Vorderstrasse, Steppan, L. B., Silverstone, A. E., and Kerkvliet, N. I., Aryl Hydrocarbon Receptor-Deficient Mice Generate Normal Immune Responses to Model Antigens and Are Resistant to TCDD-Induced Immune Suppression, Toxicology and Applied Pharmacology, vol. 171, no. 3, pp. 157 - 164, 2001.
B. A. Vorderstrasse and Kerkvliet, N. I., 2,3,7,8-Tetrachlorodibenzo-p-dioxin Affects the Number and Function of Murine Splenic Dendritic Cells and Their Expression of Accessory Molecules, Toxicology and Applied Pharmacology, vol. 171, no. 2, pp. 117 - 125, 2001.
B. A. Vorderstrasse and Kerkvliet, N. I., Influence of 2,3,7,8-Tetrachlorodibenzo-p-dioxin on the Antigen-Presenting Activity of Dendritic Cells, Toxicological Sciences, vol. 72, no. 1, pp. 103 - 112, 2003.
A. M. Vondras, Gouthu, S., Schmidt, J. A., Petersen, A. - R., and Deluc, L. G., The contribution of flowering time and seed content to uneven ripening initiation among fruits within Vitis vinifera L. cv. Pinot noir clusters, Planta, vol. 243, no. 5, pp. 1191 - 1202, 2016.
A. M. Vondras, Commisso, M., Guzzo, F., and Deluc, L. G., Metabolite Profiling Reveals Developmental Inequalities in Pinot Noir Berry Tissues Late in Ripening, Frontiers in Plant Science, 2017.
C. von Neubeck, Shankaran, H., Karin, N. J., Kauer, P. M., Chrisler, W. B., Wang, X., R. Robinson, J., Waters, K. M., Tilton, S. C., and Sowa, M. B., Cell type-dependent gene transcription profile in a three-dimensional human skin tissue model exposed to low doses of ionizing radiation: Implications for medical exposures, Environmental and Molecular Mutagenesis, vol. 53, no. 4, pp. 247 - 259, 2012.
D. H. Volkmann, Kutzler, M. A., Wheeler, R., Krekeler, N., Klewitz, J., and Lamb, S. V., Failure of hCG to support luteal function in bitches after estrus induction using deslorelin implants, Theriogenology, vol. 66, no. 6-7, pp. 1502 - 1506, 2006.
D. H. Volkmann, Kutzler, M. A., Wheeler, R., and Krekeler, N., The use of deslorelin implants for the synchronization of estrous in diestrous bitches, Theriogenology, vol. 66, no. 6-7, pp. 1497 - 1501, 2006.
D. D. Voigt, Chevalier, F., Donaghy, J. A., Patterson, M. F., Qian, M. C., and Kelly, A. L., Effect of high-pressure treatment of milk for cheese manufacture on proteolysis, lipolysis, texture and functionality of Cheddar cheese during ripening, Innovative Food Science & Emerging Technologies, vol. 13, pp. 23–30, 2012.
D. D. Voigt, Chevalier, F., Qian, M. C., and Kelly, A. L., Effect of high-pressure treatment on microbiology, proteolysis, lipolysis and levels of flavour compounds in mature blue-veined cheese, Innovative food science & emerging technologies, vol. 11, pp. 68–77, 2010.
W. Visessanguan, Menino, A. R., Kim, S. M., and An, H., Cathepsin L: a predominant heat-activated proteinase in arrowtooth flounder muscle., J Agric Food Chem, vol. 49, no. 5, pp. 2633-40, 2001.
W. J. Violette, Harou, A. P., Upton, J. B., Bell, S. D., Barrett, C. B., Gómez, M. I., and Lentz, E. C., Recipients’ satisfaction with locally procured food aid rations: Comparative evidence from a three country matched survey, World Development, vol. 49, pp. 30–43, 2013.
L. R. Vinueza, Menge, B. A., Ruiz, D., and Palacios, D. M., Oceanographic and climatic variation drive top-down/bottom-up coupling in the Galápagos intertidal meta-ecosystem, Ecological Monographs, vol. 84, no. 3, pp. 411 - 434, 2014.
K. J. Vining and Davis, T., Isolation of a Ve homolog, mVe1, and its relationship to verticillium wilt resistance in Mentha longifolia (L.) Huds, Molecular Genetics and Genomics, vol. 28, no. 29, pp. 173 - 184, 2009.
K. J. Vining, Romanel, E., Jones, R. C., Klocko, A., Alves-Ferreira, M., Hefer, C. A., Amarasinghe, V., Dharmawardhana, P., Naithani, S., Ranik, M., Wesley-Smith, J., Solomon, L., Jaiswal, P., Myburg, A. A., and Strauss, S. H., The floral transcriptome of Eucalyptus grandis., The New phytologist, 2014.