Found 399 results
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Journal Article
C. E. Finn, Yorgey, B., Strik, B. C., and Martin, R., `Metolius’ trailing blackberry, HortScience, vol. 40, pp. 2189-2191, 2005.
C. Bishop, Satterwhite, S., Xu, L., Hennebold, J. D., and Stouffer, R. L., Microarray analysis of the primate luteal transcriptome during chorionic gonadotrophin administration simulating early pregnancy, MHR: Basic science of reproductive medicine, vol. 1811121571171391492215014957811419012332311601160491157694150151568382859911351229611217, no. 4, pp. 216 - 227, 2011.
H. - J. Kim, Park, S. - H., Lee, T. - H., Nahm, B. - H., Kim, Y. - R., and Kim, H. - Y., Microarray detection of food-borne pathogens using specific probes prepared by comparative genomics., Biosens Bioelectron, vol. 24, no. 2, pp. 238-46, 2008.
D. D. Tanaree, Duringer, J. M., Bohnert, D. W., and Craig, A. M., Microarray evaluation of bovine hepatic gene response to fescue toxicosis, World Mycotoxin Journal, vol. 67384531273358443, no. 4, pp. 419 - 426, 2013.
M. Kleber, Jian-Ping, H., and Stahr, K., Microbial biomass C- and N-dynamics in grassland soils amended with liquid manure, Zeitschrift für Pflanzenernährung und Bodenkunde, vol. 16, no. 1, pp. 87 - 92, 1998.
M. N. ögberg, ögberg, P., and Myrold, D. D., Is microbial community composition in boreal forest soils determined by pH, C-to-N ratio, the trees, or all three?, Oecologia, vol. 15, no. 4, pp. 590 - 601, 2006.
J. B. Brant, Sulzman, E. W., and Myrold, D. D., Microbial community utilization of added carbon substrates in response to long-term carbon input manipulation, Soil Biology and Biochemistry, vol. 38, no. 8, pp. 2219 - 2232, 2006.
S. Hong Park, Kim, S. Ae, Rubinelli, P. M., Roto, S. M., and Ricke, S. C., Microbial compositional changes in broiler chicken cecal contents from birds challenged with different Salmonella vaccine candidate strains., Vaccine, vol. 35, no. 24, pp. 3204-3208, 2017.
J. Hanzel, Myrold, D. D., Sessitsch, A., Smalla, K., Tebbe, C. C., and Totsche, K. Uwe, Microbial ecology of biogeochemical interfaces - diversity, structure, and function of microhabitats in soil, FEMS Microbiology Ecology, vol. 86, no. 1, pp. 1 - 2, 2013.
K. K. Donegan, Schaller, D. L., Stone, J. K., Ganio, L. M., Reed, G., Hamm, P. B., and Seidler, R. J., Microbial populations, fungal species diversity and plant pathogen levels in field plots of potato plants expressing theBacillus thuringiensis var.tenebrionis endotoxin, Transgenic Research, vol. 53, no. 1, pp. 25 - 35, 1996.
S. Hong Park, Lee, S. In, and Ricke, S. C., Microbial Populations in Naked Neck Chicken Ceca Raised on Pasture Flock Fed with Commercial Yeast Cell Wall Prebiotics via an Illumina MiSeq Platform., PLoS One, vol. 11, no. 3, p. e0151944, 2016.
M. A. Daeschel and Udompijitkul, P., Microbial safety concerns of berry fruit, FOOD SCIENCE AND TECHNOLOGY-NEW YORK-MARCEL DEKKER-, vol. 168, p. 229, 2007.
S. - J. Ahn, Donahue, K. M., Koh, Y., Martin, R., and Choi, M. - Y., Microbial-based dsRNA production to develop cost-effective RNAi application for insect pest management, International Journal of Insect Science, vol. 11, pp. 1-8, 2019.
J. B. Dinkins, Smith, K. T., Beck, J. L., Kirol, C. P., Pratt, A. C., and Conover, M. R., Microhabitat Conditions in Wyoming's Sage-Grouse Core Areas: Effects on Nest Site Selection and Success., PLoS One, vol. 11, no. 3, p. e0150798, 2016.
G. M Buamscha, Altland, J. E., Sullivan, D. M., and Horneck, D. A., Micronutrient availability in fresh and aged Douglas fir bark, HortScience, 2007.
B. M. Reed, Denoma, J., Wada, S., and Postman, J., Micropropagation of pear (Pyrus sp.)., Methods Mol Biol, vol. 11013, pp. 3-18, 2013.
N. H, microRNA gene regulation cascades during early stages of plant development, Plant and Cell Physiology , vol. 51, pp. 1840-1846, 2010.
M. RC, P-P, L., NA, G., and H, N., microRNA, seeds and Darwin? - Diverse function of miRNA in seed biology and plant responses to stress, Journal of Experimental Botany, vol. 61, pp. 2229-2234, 2010.
M. RC, M, A., P-P, L., ,, JL, C., WE, P., GW, B., NA, G., TT, N., C, M. - A., MBA, K., P, P., and H, N., The microRNA156 and microRNA172 gene regulation cascades at post-germinative stages in Arabidopsis, Seed Science Research, vol. 20, pp. 79-87, 2010.
T. L. Tal, Franzosa, J. A., Tilton, S. C., Philbrick, K. A., Iwaniec, U. T., Turner, R. T., Waters, K. M., and Tanguay, R. L., MicroRNAs control neurobehavioral development and function in zebrafish, The FASEB Journal, vol. 26, no. 4, pp. 1452 - 1461, 2012.
T. L. Tal, Franzosa, J. A., Tilton, S. C., Philbrick, K. A., Iwaniec, U. T., Turner, R. T., Waters, K. M., and Tanguay, R. L., MicroRNAs control neurobehavioral development and function in zebrafish., FASEB J, vol. 26, no. 4, pp. 1452-61, 2012.
C. Hollatz, Flach, L., C. Baker, S., and Santos, ícioR., Microsatellite data reveal fine genetic structure in male Guiana dolphins (Sotalia guianesis) in two geographically close embayments at south-eastern coast of Brazil, Marine Biology, vol. 158, no. 4, pp. 927 - 933, 2011.
íaJosé érez-Alvarez, ía, C., Moraga, R., C. Baker, S., Hamner, R. M., and Poulin, E., Microsatellite Markers Reveal Strong Genetic Structure in the Endemic Chilean Dolphin, PLOS ONE, vol. 10, no. 4, p. e0123956, 2015.
K. W. Davies, Bates, J. D., and James, J. J., Microsite and herbaceous vegetation heterogeneity after burning Artemisia tridentata steppe, Oecologia, vol. 159122139585177129615969604869940702647618237768174621355143324415112677562527080593550, no. 3, pp. 597 - 606, 2009.
N. Weisbrod, Niemet, M. R., Rockhold, M. L., McGinnis, T., and Selker, J., Migration of saline solutions in variably saturated porous media, Journal of contaminant hydrology, vol. 72, pp. 109–133, 2004.

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