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Sharon Pike

Sharon Pike

Research Specialist

PikeS@missouri.edu
314 Life Scences Center

News about Sharon Pike

Electrical potentials of plant cell walls in response to the ionic environment. Shomer I, Novacky AJ, Pike SM, Yermiyahu U, Kinraide TB. Plant Physiology; 133(1):411-422.

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Biological activity of harpin produced by Pantoea stewartii subsp. stewartii. Ahmad M, Majerczak DR, Pike S, Hoyos ME, Novacky A, Coplin DL. Molecular Plant-Microbe Interactions; 14(10):1223-1234.

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Effects of Erwinia amylovora harpin on tobacco leaf cell membranes are related to leaf necrosis and electrolyte leakage and distinct from perturbations caused by inoculated E. amylovora. Pike SM, Ádám AL, Pu X-A, Hoyos ME, Laby R, Beer SV, Novacky A. Physiological and Molecular Plant Pathology; 53(1):39-60.

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Rapid and transient activation of a myelin basic protein kinase in tobacco leaves treated with harpin from Erwinia amylovora. Ádám AL, Pike S, Hoyos ME, Stone JM, Walker JC, Novacky A. Plant Physiology; 115(2):853-861.

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The interaction of harpinPss, with plant cell walls. Hoyos ME, Stanley CM, He SY, Pike S, Pu X-A, Novacky A. Molecular Plant-Microbe Interactions; 9(7):608-616.

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The effect of harpin from Erwinia amylovora on the plasmalemma of suspension-cultured tobacco cells. Popham PL, Pike SM, Novacky A. Physiological and Molecular Plant Pathology; 47(1):39-50.

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Water relation alterations observed during hypersensitive reaction induced by bacteria. Popham PL, Pike SM, Novacky A, Pallardy SG. Plant Physiology; 103(4):1243-1247.

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Lipid peroxidation and superoxide production in cowpea (vigna unguiculata) leaves infected with tobacco ringspot virus or southern bean mosaic virus. El-Moshaty FIB, Pike SM, Novacky AJ, Sehgal OP. Physiological and Molecular Plant Pathology; 43(2):109-119.

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Fusicoccin‐induced membrane depolarization, K+ efflux and extracellular alkalinization in leaves of Vigna unguiculata. Ullrich CI, Pike S, Beleid El‐Moshaty FI, Lenz S, Popham P, Novacky AJ. Plant, Cell & Environment; 14(4):383-390.

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The Conserved arginine required for avrrps4 processing is also required for recognition of its n-terminal fragment in lettuce. Su J, Nguyen Q-M, Kimble A, Pike SM, Kim SH, Gassmann W. Molecular Plant-Microbe Interactions; 34(3):270-278.

Featured in this article: Jianbin Su, Sharon Pike, Walter Gassmann.

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Using Xenopus laevis Oocytes to Functionally Characterize Plant Transporters. Pike S, Matthes MS, McSteen P, Gassmann W. Current protocols in plant biology; 4(1):e20087.

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Copper uptake mechanism of Arabidopsis thaliana high-affinity COPT transporters. Sanz A, Pike S, Khan MA, Carrió-Seguí À, Mendoza-Cózatl DG, Peñarrubia L, Gassmann W. Protoplasma; 256(1):161-170.

Featured in this article: Sharon Pike, David Mendoza-Cózatl, Walter Gassmann.

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Generating transgenic arabidopsis plants for functional analysis of pathogen effectors and corresponding R proteins. Pike S, Gassmann W, Su J. Methods in Molecular Biology; 1991:199-206.

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Soybean tip gene family analysis and characterization of GmTIP1;5 and GmTIP2;5 water transport activity. Song L, Nguyen N, Deshmukh RK, Patil GB, Prince SJ, Valliyodan B, Mutava R, Pike SM, Gassmann W, Nguyen HT. Frontiers in Plant Science; 7(OCTOBER2016):1564.

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The Arabidopsis immune regulator SRFR1 dampens defences against herbivory by Spodoptera exigua and parasitism by Heterodera schachtii. Nguyen PDT, Pike S, Wang J, Nepal Poudel A, Heinz R, Schultz JC, Koo AJ, Mitchum MG, Appel HM, Gassmann W. Molecular Plant Pathology; 17(4):588-600.

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Functions of EDS1-like and PAD4 genes in grapevine defenses against powdery mildew. Gao F, Dai R, Pike SM, Qiu W, Gassmann W. Plant Molecular Biology; 86(4-5):381-393.

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Members of the NPF3 transporter subfamily encode pathogen-inducible nitrate/nitrite transporters in grapevine and arabidopsis. Pike S, Gao F, Kim MJ, Kim SH, Schachtman DP, Gassmann W. Plant and Cell Physiology; 55(1):162-170.

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Transport of boron by the tassel-less1 aquaporin is critical for vegetative and reproductive development in maize. Durbak AR, Phillips KA, Pike S, O'Neill MA, Mares J, Gallavotti A, Malcomber ST, Gassmann W, McSteen P. Planet Cell; 26(7):2978-2995.

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The Arabidopsis nitrate transporter NRT1.8 functions in nitrate removal from the xylem sap and mediates cadmium tolerance. Li J-Y, Fu Y-L, Pike SM, Bao J, Tian W, Zhang Y, Chen C-Z, Zhang Y, Li H-M, Huang J, Li L-G, Schroeder JI, Gassmann W, Gong J-M. Plant Cell; 22(5):1633-1646.

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Arabidopsis OPT6 is an oligopeptide transporter with exceptionally broad substrate specificity. Pike S, Patel A, Stacey G, Gassmann W. Plant and Cell Physiology; 50(11):1923-1932.

Featured in this article: Sharon Pike, Gary Stacey, Walter Gassmann.

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Chloroplast-generated reactive oxygen species are involved in hypersensitive response-like cell death mediated by a mitogen-activated protein kinase cascade. Liu Y, Ren D, Pike S, Pallardy S, Gassmann W, Zhang S. Plant Journal; 51(6):941-954.

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Electrophysiological characterization of the Arabidopsis avrRpt2-specific hypersensitive response in the absence of other bacterial signals. Pike SM, Zhang X-C, Gassmann W. Plant Physiology; 138(2):1009-1017.

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Aluminum rapidly depolymerizes cortical microtubules and depolarizes the plasma membrane: Evidence that these responses are mediated by a glutamate receptor. Sivaguru M, Pike S, Gassmann W, Baskin TI. Plant and Cell; Plant and Cell Physiology.

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Is change in electrical potential or pH a hatching signal for Heterodera glycines?. Pike SM, Heinz R, Walk T, Jones C, Kraus GA, Gassmann W, Novacky AJ, Niblack TL. Phytopathology; 92(5):456-463.

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