Cell Metabolism Cell Homeostasis and Stress Response Part 6
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Tham khảo tài liệu cell metabolism cell homeostasis and stress response part 6, khoa học tự nhiên, công nghệ sinh học phục vụ nhu cầu học tập, nghiên cứu và làm việc hiệu quả
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Cell Metabolism Cell Homeostasis and Stress Response Part 666 Cell Metabolism – Cell Homeostasis and Stress ResponseLigeza, A., Tikhonov, A.N., Hyde, J.S. & Subczynski, W.K. (1998). Oxygen Permeability of Thylakoid Membranes: Electron Paramagnetic Resonance Spin Labeling Study. Biochimica et Biophysica Acta, Vol. 1365, No. 3, (July 1998), pp. 453-463, ISSN 0005- 2728Lindahl, M. & Kieselbach, T. (2009). Disulphide Proteomes and Interactions with Thioredoxin on the Track Towards Understanding Redox Regulation in Chloroplasts and Cyanobacteria. Journal of Proteomics, Vol. 72, No. 3, (April 2009), pp. 416–438, ISSN 1876-7737Maciejewska, U., Polkowska-Kowalczyk, L., Swiezewska, E. & Szkopinska, A. (2002). Plastoquinone: Possible Involvement in Plant Disease Resistance. Acta Biochimica Polonica, Vol. 49, No. 3, (n.d.), pp. 775–780, ISSN 0001-527XMaeda, H. & DellaPenna, D. (2007). Tocopherol functions in photosynthetic organisms. Current Opinion in Plant Biology, Vol. 10, No.3, (June 2007), pp. 260-265, ISSN 1369- 5266Mateo, A., Funck, D., Mühlenbock, P., Kular, B., Mullineaux, P.M. & Karpinski, S. (2006). Controlled Levels of Salicylic Acid Are Required for Optimal Photosynthesis and Redox Homeostasis. Journal of Experimental Botany, Vol. 57, No. 8, (May 2006), pp. 1795-1807, ISSN 0022-0957Matheson, I.B.C., Etheridge, R.D., Kratowich, N.R. & Lee, J. (1975). The Quenching of Singlet Oxygen by Amino Acids and Proteins. Photochemistry & Photobiology, Vol. 21, No. 3, (March 1975), pp. 165-171, ISSN 0031-8655Matysik, J., Alia, Bhalu, B. & Mohanty, P. (2002). Molecular Mechanisms of Quenching of Reactive Oxygen Species by Proline under Stress in Plants. Current Science, Vol. 82, No. 5, (March 2002), pp.525–532, ISSN 0011-3891Maurino, V.G.,& Peterhansel, C. (2010). Photorespiration: Current Status and Approaches for Metabolic Engineering. Current Opinion in Plant Biology, Vol. 13, No. 3, (June 2010), pp. 249-256, ISSN 1369-5266Mehler, A.C. (1951). Studies on Reactions of Illuminated Chloroplasts. I. Mechanism of the Reduction of Oxygen and Other Hill Reagents. Archives of Biochemistry and Biophysics, Vol. 33, No. 1, (August 1951), pp. 65-77, ISSN 0003-9861Mittler, R., Vanderauwera, S., Gollery, M. & Van Breusegem, F. (2004). The Reactive Oxygen Gene Network in Plants. Trends in Plant Science, Vol. 9, No. 10, (October 2004), pp. 490–498, ISSN 1360-1385Miyake, C. & Asada, K. (1992). Thylakoid-Bound Ascorbate Peroxidase in Spinach Chloroplasts and Photoreduction of Its Primary Oxidation Product Monodehydroascorbate Radicals in Thylakoids. Plant & Cell Physiology, Vol. 33, No. 5, (July 1992), pp. 541-553, ISSN 0032-0781Miyake, C., Schreiber, U., Hormann, H., Sano, S. & Asada, K. (1998). The FAD-Enzyme Monodehydroascorbate Radical Reductase Mediates Photoproduction of Superoxide Radicals in Spinach Thylakoid Membranes. Plant & Cell Physiology, Vol. 39, No. 8, (August 1998), pp. 821 – 829, ISSN 0032-0781Morosinotto, T., Bassi, R., Frigerio, S., Finazzi, G., Morris, E. & Barber, J. (2006). Biochemical and Structural Analyses of a Higher Plant Photosystem II Supercomplex of a Photosystem I-Less Mutant of Barley. Consequences of a Chronic Over-Reduction of the Plastoquinone Pool. The FEBS Journal, Vol. 273, No. 20, (October 2006), pp. 4616-4630, ISSN 1742-464X 67Oxygen Metabolism in ChloroplastMozzo, M., Passarini, F., Bassi, R., van Amerongen, H. & Croce, R. (2008). Photoprotection in Higher Plants: the Putative Quenching Site is Conserved in All Outer Light- Harvesting Complexes of Photosystem II. Biochimica et Biophysica Acta, Vol. 1777, No. 10, (October 2008), pp. 1263-1267, ISSN 0005-2728Mubarakshina, M., Khorobrykh, S. & Ivanov, B. (2006). Oxygen Reduction in Chloroplast Thylakoids Results in Production of Hydrogen Peroxide Inside the Membrane. Biochimica et Biophysica Acta, Vol. 1757, No. 11, (November 2006), pp. 1496-1503, ISSN 0005-2728Mubarakshina, M.M., Ivanov B.N., Naydov I.A., Hillier W., Badger M.R., Krieger-Liszkay A. (2010). Production and diffusion of chloroplastic H2O2 and its implication to signalling. Journal of Experimental Botany, Vol. 61, No. 13, pp. 3577–3587, ISSN 0022- 0957Mubarakshina, M.M. & Ivanov, B.N. (2010). The Production and Scavenging of Reactive Oxygen Species in the Plastoquinone Pool of Chloroplast Thylakoid Membranes. Physiologia Plantarum, Vol. 140, No. 2, (October 2010), pp. 103-110, ISSN ...
Nội dung trích xuất từ tài liệu:
Cell Metabolism Cell Homeostasis and Stress Response Part 666 Cell Metabolism – Cell Homeostasis and Stress ResponseLigeza, A., Tikhonov, A.N., Hyde, J.S. & Subczynski, W.K. (1998). Oxygen Permeability of Thylakoid Membranes: Electron Paramagnetic Resonance Spin Labeling Study. Biochimica et Biophysica Acta, Vol. 1365, No. 3, (July 1998), pp. 453-463, ISSN 0005- 2728Lindahl, M. & Kieselbach, T. (2009). Disulphide Proteomes and Interactions with Thioredoxin on the Track Towards Understanding Redox Regulation in Chloroplasts and Cyanobacteria. Journal of Proteomics, Vol. 72, No. 3, (April 2009), pp. 416–438, ISSN 1876-7737Maciejewska, U., Polkowska-Kowalczyk, L., Swiezewska, E. & Szkopinska, A. (2002). Plastoquinone: Possible Involvement in Plant Disease Resistance. Acta Biochimica Polonica, Vol. 49, No. 3, (n.d.), pp. 775–780, ISSN 0001-527XMaeda, H. & DellaPenna, D. (2007). Tocopherol functions in photosynthetic organisms. Current Opinion in Plant Biology, Vol. 10, No.3, (June 2007), pp. 260-265, ISSN 1369- 5266Mateo, A., Funck, D., Mühlenbock, P., Kular, B., Mullineaux, P.M. & Karpinski, S. (2006). Controlled Levels of Salicylic Acid Are Required for Optimal Photosynthesis and Redox Homeostasis. Journal of Experimental Botany, Vol. 57, No. 8, (May 2006), pp. 1795-1807, ISSN 0022-0957Matheson, I.B.C., Etheridge, R.D., Kratowich, N.R. & Lee, J. (1975). The Quenching of Singlet Oxygen by Amino Acids and Proteins. Photochemistry & Photobiology, Vol. 21, No. 3, (March 1975), pp. 165-171, ISSN 0031-8655Matysik, J., Alia, Bhalu, B. & Mohanty, P. (2002). Molecular Mechanisms of Quenching of Reactive Oxygen Species by Proline under Stress in Plants. Current Science, Vol. 82, No. 5, (March 2002), pp.525–532, ISSN 0011-3891Maurino, V.G.,& Peterhansel, C. (2010). Photorespiration: Current Status and Approaches for Metabolic Engineering. Current Opinion in Plant Biology, Vol. 13, No. 3, (June 2010), pp. 249-256, ISSN 1369-5266Mehler, A.C. (1951). Studies on Reactions of Illuminated Chloroplasts. I. Mechanism of the Reduction of Oxygen and Other Hill Reagents. Archives of Biochemistry and Biophysics, Vol. 33, No. 1, (August 1951), pp. 65-77, ISSN 0003-9861Mittler, R., Vanderauwera, S., Gollery, M. & Van Breusegem, F. (2004). The Reactive Oxygen Gene Network in Plants. Trends in Plant Science, Vol. 9, No. 10, (October 2004), pp. 490–498, ISSN 1360-1385Miyake, C. & Asada, K. (1992). Thylakoid-Bound Ascorbate Peroxidase in Spinach Chloroplasts and Photoreduction of Its Primary Oxidation Product Monodehydroascorbate Radicals in Thylakoids. Plant & Cell Physiology, Vol. 33, No. 5, (July 1992), pp. 541-553, ISSN 0032-0781Miyake, C., Schreiber, U., Hormann, H., Sano, S. & Asada, K. (1998). The FAD-Enzyme Monodehydroascorbate Radical Reductase Mediates Photoproduction of Superoxide Radicals in Spinach Thylakoid Membranes. Plant & Cell Physiology, Vol. 39, No. 8, (August 1998), pp. 821 – 829, ISSN 0032-0781Morosinotto, T., Bassi, R., Frigerio, S., Finazzi, G., Morris, E. & Barber, J. (2006). Biochemical and Structural Analyses of a Higher Plant Photosystem II Supercomplex of a Photosystem I-Less Mutant of Barley. Consequences of a Chronic Over-Reduction of the Plastoquinone Pool. The FEBS Journal, Vol. 273, No. 20, (October 2006), pp. 4616-4630, ISSN 1742-464X 67Oxygen Metabolism in ChloroplastMozzo, M., Passarini, F., Bassi, R., van Amerongen, H. & Croce, R. (2008). Photoprotection in Higher Plants: the Putative Quenching Site is Conserved in All Outer Light- Harvesting Complexes of Photosystem II. Biochimica et Biophysica Acta, Vol. 1777, No. 10, (October 2008), pp. 1263-1267, ISSN 0005-2728Mubarakshina, M., Khorobrykh, S. & Ivanov, B. (2006). Oxygen Reduction in Chloroplast Thylakoids Results in Production of Hydrogen Peroxide Inside the Membrane. Biochimica et Biophysica Acta, Vol. 1757, No. 11, (November 2006), pp. 1496-1503, ISSN 0005-2728Mubarakshina, M.M., Ivanov B.N., Naydov I.A., Hillier W., Badger M.R., Krieger-Liszkay A. (2010). Production and diffusion of chloroplastic H2O2 and its implication to signalling. Journal of Experimental Botany, Vol. 61, No. 13, pp. 3577–3587, ISSN 0022- 0957Mubarakshina, M.M. & Ivanov, B.N. (2010). The Production and Scavenging of Reactive Oxygen Species in the Plastoquinone Pool of Chloroplast Thylakoid Membranes. Physiologia Plantarum, Vol. 140, No. 2, (October 2010), pp. 103-110, ISSN ...
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