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Peroxisomal polyamine oxidase and NADPH-oxidase cross-talk for ROS homeostasis which affects respiration rate in Arabidopsis thaliana
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Andronis, E. A., Moschou, P. N., Toumi, I., and Roubelakis-Angelakis, K. A. (2014). Peroxisomal polyamine oxidase and NADPH-oxidase cross-talk for ROS homeostasis which affects respiration rate in Arabidopsis thaliana. Front. Plant Sci. 5: 132. doi: 10. 3389/fpls. 2014. 00132.
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Senescence and programmed cell death in plants: Polyamine action mediated by transglutaminase
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doi: 10. 3389/fpls. 2014. 00120
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Del Duca, S., Serafini-Fracassini, D., and Cai, G. (2014). Senescence and programmed cell death in plants: polyamine action mediated by transglutaminase. Front. Plant Sci. 5: 120. doi: 10. 3389/fpls. 2014. 00120.
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Del Duca, S.1
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84901058124
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Impact of 1-methylcyclopropene and controlled atmosphere storage on polyamine and 4-aminobutyrate levels in "Empire" apple fruit
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doi: 10. 3389/fpls. 2014. 00144
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Deyman, K. L., Brikis, C. J., Bozzo, G. G., and Shelp, B. J. (2014). Impact of 1-methylcyclopropene and controlled atmosphere storage on polyamine and 4-aminobutyrate levels in "Empire" apple fruit. Front. Plant Sci. 5: 144. doi: 10. 3389/fpls. 2014. 00144.
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84901029113
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Changes in free polyamine levels, expression of polyamine biosynthesis genes, and performance of rice cultivars under salt stress: A comparison with responses to drought
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doi: 10. 3389/fpls. 2014. 00182
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Do, P. T., Drechsel, O., Heyer, A. G., Hincha, D. K., and Zuther, E. (2014). Changes in free polyamine levels, expression of polyamine biosynthesis genes, and performance of rice cultivars under salt stress: a comparison with responses to drought. Front. Plant Sci. 5: 182. doi: 10. 3389/fpls. 2014. 00182.
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84901036950
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Polyamines in chemiosmosis in vivo: A cunning mechanism for the regulation of ATP synthesis during growth and stress
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doi: 10. 3389/fpls. 2014. 00071
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Ioannidis, N. E., and Kotzabasis, K. (2014). Polyamines in chemiosmosis in vivo: a cunning mechanism for the regulation of ATP synthesis during growth and stress. Front. Plant Sci. 5: 71. doi: 10. 3389/fpls. 2014. 00071.
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Physiological and molecular implications of plant polyamine metabolism during biotic interactions
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doi: 10. 3389/fpls. 2014. 00095
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Jiménez-Bremont, J. F., Marina, M., Guerrero-González, M. L., Rossi, F. R., Sánchez-Rangel, D., Rodríguez-Kessler, M., and et al. (2014). Physiological and molecular implications of plant polyamine metabolism during biotic interactions. Front. Plant Sci. 5: 95. doi: 10. 3389/fpls. 2014. 00095.
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84901068678
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Overexpression of SAMDC1 gene in Arabidopsis thaliana increases expression of defense-related genes as well as resistance to Pseudomonas syringae and Hyaloperonospora arabidopsidis
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doi: 10. 3389/fpls. 2014. 00115
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Marco, F., Busó, E., and Carrasco, P. (2014). Overexpression of SAMDC1 gene in Arabidopsis thaliana increases expression of defense-related genes as well as resistance to Pseudomonas syringae and Hyaloperonospora arabidopsidis. Front. Plant Sci. 5: 115. doi: 10. 3389/fpls. 2014. 00115.
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Polyamines and abiotic stress in plants: A complex relationship
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doi: 10. 3389/fpls. 2014. 00175
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Minocha, R., Majumdar, R., and Minocha, S. C. (2014). Polyamines and abiotic stress in plants: a complex relationship. Front. Plant Sci. 5: 175. doi: 10. 3389/fpls. 2014. 00175.
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Polyamines control of cation transport across plant membranes: Implications for ion homeostasis and abiotic stress signaling
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Pottosin, I., and Shabala, S. (2014). Polyamines control of cation transport across plant membranes: implications for ion homeostasis and abiotic stress signaling. Front. Plant Sci. 5: 154. doi: 10. 3389/fpls. 2014. 00154.
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Thermospermine modulates expression of auxin-related genes in Arabidopsis
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Tong, W., Yoshimoto, K., Kakehi, J.-I., Motose, H., Niitsu, M., and Takahashi, T. (2014). Thermospermine modulates expression of auxin-related genes in Arabidopsis. Front. Plant Sci. 5: 94. doi: 10. 3389/fpls. 2014. 00094.
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Stress and polyamine metabolism in fungi
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Valdés-Santiago, L., and Ruiz-Herrera, J. (2014). Stress and polyamine metabolism in fungi. Front. Chem. 1: 42. doi: 10. 3389/fchem. 2013. 00042.
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