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Physiology and Molecular Biology of Stress ... - KHAM PHA MOI

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High Temperature <strong>Stress</strong><br />

129<br />

separations in chloroplast thylakoid membranes by compatible co-solutes <strong>and</strong> its relation to<br />

the thermal stability <strong>of</strong> Photosystem II. Biochim. Biophys. Acta 1099,137-144.<br />

Wise, R. R., Olson, A. J., Schrader, S. M. <strong>and</strong> Sharkey, T. D. (2004). Electron transport is the<br />

functional limitation <strong>of</strong> photosynthesis in field-grown Pima cotton plants at high temperature.<br />

Plant Cell Environ. 27,717-724.<br />

Wydrzynski, T. <strong>and</strong> Sauer, K. (1980). Periodic changes in the oxidation-state <strong>of</strong> manganese in<br />

photosynthetic oxygen evolution upon illumination with flashes. Biochim. Biophys. Acta 589,<br />

56-70.<br />

Yamamoto, Y. <strong>and</strong> Nishimura, M. (1983). Organization <strong>of</strong> the O2-evolution enzyme complex in a<br />

highly active O2-evolving photosystem-II prepartion. The Oxygen Evolving System <strong>of</strong><br />

Photosyn-thesis. Inoue, Y., Cr<strong>of</strong>ts, A. R., Govindjee, Murata, N., Renger, G. <strong>and</strong> Satoh, K.<br />

(Eds.) Academic Press Pp. 229-238.<br />

Yamane, Y., Kashino, Y., Koike, H. <strong>and</strong> Satoh, K. (1998). Effects <strong>of</strong> high temperatures on the<br />

photosynthetic systems in spinach, Oxygen-evolving activities, fluorescence characteristics<br />

<strong>and</strong> the denaturation process. Photosynth. Res. 57,51-59.<br />

Yamane, Y., Shikanai, T., Kashino, Y., Koike, H. <strong>and</strong> Satoh, K. (2000). Reduction <strong>of</strong> Q A<br />

in the<br />

dark, Another cause <strong>of</strong> fluorescence F o<br />

increases by high temperatures in higher plants.<br />

Photosynth. Res. 63,23-34.<br />

Yamashita, T. <strong>and</strong> Butler, W. L. (1968). Inhibition <strong>of</strong> chloroplasts by UV-irradiation <strong>and</strong> heattreatment.<br />

Plant Physiol. 43,2037-2040.<br />

Yang, G. P., Rhodes, D. <strong>and</strong> Joly, R. J. (1996). Effects <strong>of</strong> high temperature on membrane stability<br />

<strong>and</strong> chlorophyll fluorescence in glycinebetaine-deficient <strong>and</strong> glycinebetaine-containing maize<br />

lines. Aust. J. Plant Physiol. 23,437-443.<br />

Yang, Z. L., Li, L. B. <strong>and</strong> Kuang, T. Y. (2002a). Thermal stability <strong>of</strong> oxygen evolution in<br />

photosystem II core complex in the presence <strong>of</strong> digalactosyl diacylglycerol. Chin. Sci. Bull.<br />

47,2089-2092.<br />

Yang, Z. L., Wang, Z. N., Li, L. B. <strong>and</strong> Kuang, T. Y. (2002b). Oxygen-evolving activity in<br />

photosystem II core complex <strong>of</strong> photosynthetic membrane in the presence <strong>of</strong> native lipid.<br />

Chin. J. Chem. 20,576-582.<br />

Young, L. W., Wilen, R. W. <strong>and</strong> Bonham-Smith, P. C. (2004). High temperature stress <strong>of</strong> Brassica<br />

napus during flowering reduces micro- <strong>and</strong> megagametophyte fertility, induces fruit abortion,<br />

<strong>and</strong> disrupts seed production. J. Exp. Bot. 55,485-495.<br />

Yruela, I., Allakhverdiev, S. I., Ibarra, J. V. <strong>and</strong> Klimov, V. V. (1998). Bicarbonate binding to the<br />

water-oxidizing complex in the photosystem II. A Fourier transform infrared spectroscopy<br />

study. FEBS Lett. 425,396-400.<br />

Zhang, L. M., Lohmann, C., Prändl, R. <strong>and</strong> Schöffl, F. (2003). Heat stress-dependent DNA<br />

binding <strong>of</strong> Arabidopsis heat shock transcription factor HSF1 to heat shock gene promoters in<br />

Arabidopsis suspension culture cells in vivo. Biol. Chem. 384,959-963.

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