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B. M. Reed, Wada, S., Denoma, J., and Niedz, R. P., Mineral nutrition influences physiological responses of pear in vitro, In Vitro Cellular & Developmental Biology - Plant, vol. 4969984472403052018510863389967167116308815343289227203034492339497227, no. 6, pp. 699 - 709, 2013.
Z. H. Reed and Park, J. W., Quantification of Alaska pollock surimi in prepared crabstick by competitive ELISA using a myosin light chain 1 specific peptide, Food Chemistry, vol. 123, no. 1, pp. 196 - 201, 2010.
B. M. Reed, Wada, S., Denoma, J., and Niedz, R. P., Improving in vitro mineral nutrition for diverse pear germplasm, In Vitro Cellular & Developmental Biology - Plant, vol. 4946445964519167302552151013431121783830110503641, no. 318, pp. 343 - 355, 2013.
B. M. Reed, Castillo, N., Wada, S., and Bassil, N., Transitory Polymorphisms Are Observed in Cryopreserved Rubus Shoot Tips Using AFLP Markers., in IN VITRO CELLULAR & DEVELOPMENTAL BIOLOGY-ANIMAL, 2009.
B. M. Reed, Denoma, J., Wada, S., and Postman, J., Micropropagation of pear (Pyrus sp.)., Methods Mol Biol, vol. 11013, pp. 3-18, 2013.
Z. H. Reed and Park, J. W., Thermophysical characterization of tilapia myosin and its subfragments., J Food Sci, vol. 76, no. 7, pp. C1050-5, 2011.
B. M. Reed, Zee, F., Uchendu, E. E., and Wada, S., ALTERNATIVE STORAGE FOR GERMPLASM OF NATIVE HAWAIIAN 'OHELO BERRIES, Acta Horticulturae, no. 918, pp. 113 - 120, 2011.
Z. Harold Reed, Guilford, W., and Park, J. Won, Thermal denaturation of tilapia myosin and its subunits as affected by constantly increasing temperature., J Food Sci, vol. 76, no. 7, pp. C1018-24, 2011.
B. M. Reed, DeNoma, J., Wada, S., and Niedz, R., Determining optimum in vitro mineral nutrition for diverse pear germplasm using response surface methodology, Acta Horticulturae, no. 1113, pp. 79 - 84, 2016.
N. Redekar, Eberhart, J., and Parke, J., Characterization of oomycetes in irrigation water using high-throughput sequencing of nucleic acids.. 2017.
N. Redekar, Eberhart, J., and Parke, J., Analysis of Phytophthora communities in a western Oregon (USA) river with Illumina MiSeq. 2017.
N. Redekar, Eberhart, J. E., and Parke, J., Diversity of Phytophthora, Pythium, and Phytopythium species in recycled irrigation water in a container nursery, Phytobiomes Journal, 2019.
A. P. Reddy, Harttig, U., Barth, M. C., Baird, W. M., Schimerlik, M., Hendricks, J. D., and Bailey, G. S., Inhibition of dibenzo [a, l] pyrene-induced multi-organ carcinogenesis by dietary chlorophyllin in rainbow trout, Carcinogenesis, vol. 20, pp. 1919–1926, 1999.
P. N. Reardon, Chacon, S. S., Walter, E. D., Bowden, M. E., Washton, N. M., and Kleber, M., Abiotic Protein Fragmentation by Manganese Oxide: Implications for a Mechanism to Supply Soil Biota with Oligopeptides, Environmental Science & Technology, vol. 50, no. 7, pp. 3486 - 3493, 2016.
T. Read, Bour, O., Selker, J., Bense, V. F., Le Borgne, T., Hochreutener, R., and Lavenant, N., Active-distributed temperature sensing to continuously quantify vertical flow in boreholes, Water Resources Research, vol. 50, pp. 3706–3713, 2014.
T. O. Read, Bour, O., Selker, J., Le Borgne, T., Bense, V. F., Hochreutener, R., and Lavenant, N., Characterizing fractured rock aquifers using heated Distributed Fiber-Optic Temperature Sensing to determine borehole vertical flow, in AGU Fall Meeting Abstracts, 2013.
T. O. T. Read, Bense, V. F., Krause, S., Bour, O., Le Borgne, T., and Selker, J., Monitoring fluid velocity using Active-Distributed Temperature Sensing (A-DTS), in AGU Fall Meeting Abstracts, 2014.
T. Read, Bense, V. F., Bour, O., Le Borgne, T., Lavenant, N., Hochreutener, R., and Selker, J., Thermal-Plume fibre Optic Tracking (T-POT) test for flow velocity measurement in groundwater boreholes, Geoscientific Instrumentation, Methods and Data Systems, vol. 5, pp. 161–175, 2015.
M. RC, WE, P., and H, N., Seed germination, in Plant Developmental Biology - Biotechnological Perspectives, E. C. Pua and Davey, M. R., Eds. Heidelberg: Springer, 2010, pp. 383-404.
M. RC, C, M. - A., and H, N., Role of miRNA in seed development, in MicroRNAs in Plant Development and Stress Responses, R. Sunker, Ed. Heidelberg: Springer, 2012, pp. 109-121.
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 regulation of post-germinative transition from the cotyledon- to vegetative-leaf stages by microRNA-targeted SQUAMOSA PROMOTER-BINDING PROTEIN LIKE13 in Arabidopsis, Seed Science Research, vol. 20, pp. 89-96, 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.
M. RC, P-P, L., and H, N., Seed microRNA research, in Seed Biology, Development and Ecology, S. Adkins, Ashmore, S., and Navie, S., Eds. Wallingford: CAB International, 2007, pp. 354-364.
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.
E. Rayburn, Washburn, S., Hannaway, D. B., Fribourg, H. A., Newman, Y. C., and Fukumoto, G. K., Chapter 5.2: Grasslands in US Humid Regions, in Country pasture/forage resource profile for the United States of America, 2011.

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