Biblio

Found 1888 results
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X. Dou, Liu, S., Ahn, S. - J., Choi, M. - Y., and Jurenka, R., Transcriptional comparison between pheromone gland-ovipositor and tarsi in the corn earworm moth Helicoverpa zea., Comp Biochem Physiol Part D Genomics Proteomics, vol. 31, p. 100604, 2019.
S. Dou, Liu, S., Ahn, S. - J., Choi, M. - Y., and Jurenka, R., Transcriptional comparison between pheromone gland-ovipositor and tarsi in the corn earworm moth Helicoverpa zea, Comparative Biochemistry and Physiology - Part D: Genomics and Proteomics , 2019.
S. Dou, Lui, S., Ahn, S. - J., Choi, M. - Y., and Jurenka, R., Transcriptional comparison between pheromone gland-ovipositor and tarsi in the corn earworm moth Helicoverpa zea. 2019.
X. Dou, Liu, S., Ahn, S. - J., Choi, M. - Y., and Jurenka, R., Transcriptional comparison between pheromone gland-ovipositor and tarsi in the corn earworm moth Helicoverpa zea, Comparative Biochemistry and Physiology - Part D: Genomics and Proteomics (in press), 2019.
L. G. Deluc, Bogs, J., Walker, A. R., and Ferrier, T., The Transcription Factor VvMYB5b Contributes to the Regulation of Anthocyanin and Proanthocyanidin Biosynthesis in Developing Grape Berries, PLANT PHYSIOLOGY, vol. 147, no. 4, pp. 2041 - 2053, 2008.
E. A. R. Tattersall, Grimplet, érôme, Deluc, L. G., Wheatley, M. D., Vincent, D., Osborne, C., Ergül, A., Lomen, E., Blank, R. R., Schlauch, K. A., Cushman, J. C., and Cramer, G. R., Transcript abundance profiles reveal larger and more complex responses of grapevine to chilling compared to osmotic and salinity stress, Functional & Integrative Genomics, no. 4, pp. 317 - 333, 2007.
H. Huang, Huang, C., Wang, L., Ye, X., Bai, C., Simonich, S. L. Massey, Tanguay, R. L., and Dong, Q., Toxicity, uptake kinetics and behavior assessment in zebrafish embryos following exposure to perfluorooctanesulphonicacid (PFOS)., Aquat Toxicol, vol. 98, no. 2, pp. 139-47, 2010.
H. Huang, Huang, C., Wang, L., Ye, X., Bai, C., Simonich, M. T., Tanguay, R. L., and Dong, Q., Toxicity, uptake kinetics and behavior assessment in zebrafish embryos following exposure to perfluorooctanesulphonicacid (PFOS), Aquatic Toxicology, vol. 98, no. 2, pp. 139 - 147, 2010.
J. Fang, Diebold, M., Higgins, C. W., and Parlange, M. B., Towards oscillation-free implementation of the immersed boundary method with spectral-like methods, Journal of Computational Physics, vol. 230, pp. 8179–8191, 2011.
J. M. Bushakra, Bradish, C. M., Weber, C. A., Dossett, M., Fernandez, G., Weiland, J., Peterson, M., Scheerens, J. C., Robbins, L., çe, S., Finn, C. E., and Bassil, N. V., Toward understanding genotype × environment interactions in black raspberry ( Rubus occidentalis L.), Acta Horticulturae, no. 1117, pp. 25 - 30, 2016.
K. Wollstein, Creutzburg, M. K., Dunn, C., Johnson, D. D., O'Connor, C., and Boyd, C. S., Toward Integrated Fire Management to Promote Ecosystem Resilience, Rangelands, vol. 44, no. 3, pp. 227 - 234, 2022.
W. Jaeger, Plantinga, A. J., Chang, H., Dello, K., Grant, G., Hulse, D., McDonnell, J. J., Lancaster, S., Moradkhani, H., Morzillo, A. T., Mote, P., Nolin, A., Santelmann, M., and Wu, J. J., Toward a formal definition of water scarcity in natural-human systems, Water Resources Research, vol. 49, no. 7, pp. 4506 - 4517, 2013.
L. Hoagland, Colley, M., Dawson, J., Davis, J., Egel, D., Gu, S., Mengiste, T., Myers, J. R., and Zystro, J., Tomato Organic Management and Improvement Project (TOMI): An interdisciplinary approach to managing foliar diseases in tomato., Acta Hort., 2016.
L. Hoagland, Colley, M., Dawson, J., Davis, J., Egel, D., Gu, S., Mengiste, T., Myers, J. R., and Zystro, J., Tomato Organic Management and Improvement Project (TOMI): An interdisciplinary approach to managing foliar diseases in tomato., Acta Hort., 2016.
L. Hoagland, Colley, M., Dawson, J., Davis, J., Egel1, D., Gu, S., Mengiste, T., Myers, J. R., and Zystro, J., Tomato Organic Management and Improvement Project (TOMI): An interdisciplinary approach to managing foliar diseases in tomato, Acta Hort., 2016.
L. Hoagland, Colley, M., Dawson, J., Davis, J., Egel1, D., Gu, S., Mengiste, T., Myers, J. R., and Zystro, J., Tomato Organic Management and Improvement Project (TOMI): An interdisciplinary approach to managing foliar diseases in tomato, Acta Hort., 2016.
L. Hoagland, Colley, M., Dawson, J., Davis, J., Egel, D., Gu, S., Mengiste, T., Myers, J. R., and Zystro, J., Tomato organic management and improvement project (TOMI): an interdisciplinary approach to managing foliar diseases in tomato, Acta Horticulturae, no. 1207, pp. 203 - 210, 2018.
L. Hoagland, Colley, M., Dawson, J., Davis, J., Egel, D., Gu, S., Mengiste, T., Myers, J. R., and Zystro, J., Tomato organic management and improvement project (TOMI): an interdisciplinary approach to managing foliar diseases in tomato, Acta Horticulturae, no. 1207, pp. 203 - 210, 2018.
K. W. Davies, To Burn or Not to Burn: Comparing Reintroducing Fire with Cutting an Encroaching Conifer for Conservation of an Imperiled Shrub‐Steppe, Ecology and Evolution, vol. 9, no. 16, pp. 9137-9148, 2019.
J. Grimplet, Deluc, L. G., Tillett, R. L., Wheatley, M. D., Schlauch, K. A., Cramer, G. R., and Cushman, J. C., Tissue-specific mRNA Expression Profiling in Grape Berry tissues, BioMed Central Genomics, vol. 21, no. 8, p. 187, 2007.
J. Grimplet, Deluc, L. G., Tillett, R. L., and Wheatley, M. D., Tissue-specific mRNA expression profiling in grape berry tissues, BMC Genomics, vol. 8, no. 1, p. 187, 2007.
J. Felix, Ivany, J., Kegode, G. O., and Doohan, D., Timing Potato Cultivation Using The Weedcast Model, Weed Science, vol. 57, no. 01, pp. 87 - 93, 2009.
S. Gouthu and Deluc, L. G., Timing of ripening initiation in grape berries and its relationship to seed content and pericarp auxin levels, BMC Plant Biology, vol. 15, no. 1, p. 46, 2015.
N. Ochiai, Dragila, M., and Parke, J., Three-Dimensional Tracking of Colloids at the Pore Scale Using Epifluorescence Microscopy, Vadose Zone Journal, vol. 9, no. 3, p. 576, 2010.
K. E. Doherty, Boyd, C. S., Kerby, J. D., Sitz, A. L., Foster, L. J., Cahill, M. C., Johnson, D. D., and Sparklin, B. D., Threat‐Based State and Transition Models Predict Sage‐Grouse Occurrence while Promoting Landscape Conservation, Wildlife Society Bulletin, vol. 45, no. 3, pp. 473-487, 2021.