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

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126<br />

T.D. Sharkey <strong>and</strong> S.M. Schrader<br />

Pastenes, C. <strong>and</strong> Horton, P. (1996a). Effect <strong>of</strong> high temperature on photosynthesis in beans 1.<br />

Oxygen evolution <strong>and</strong> chlorophyll fluorescence. Plant Physiol. 112,1245-1251.<br />

Pastenes, C. <strong>and</strong> Horton, P. (1996b). Effect <strong>of</strong> high temperature on photosynthesis in beans 2. CO2<br />

assimilation <strong>and</strong> metabolite contents. Plant Physiol. 112,1253-1260.<br />

Pearcy, R. W. (1978). Effect <strong>of</strong> growth temperature on fatty acid composition <strong>of</strong> leaf lipids in<br />

Atriplex lentiformis (Torr.) Wats. Plant Physiol. 61,484-486.<br />

Pearcy, R. W., Krall, J. P. <strong>and</strong> Sassenrath-Cole, G. F. (1996). Photosynthesis in fluctuating light<br />

environments. Photosynthesis <strong>and</strong> the Environment. Baker, N. R. (Ed.) Kluwer Academic Press<br />

Pp. 321-346.<br />

Pechan, P. M., <strong>and</strong> Smykal, P.(2001). Androgenesis, Affecting the fate <strong>of</strong> the male gametophyte.<br />

Physiol. Plant. 111,1-8.<br />

Peet, M. M., Sato, S. <strong>and</strong> Gardner, R. G. (1998). Comparing heat stress effects on male-fertile <strong>and</strong><br />

male-sterile tomatoes. Plant Cell Environ. 21,225-231.<br />

Porch, T. G. <strong>and</strong> Jahn, M. (2001). Effects <strong>of</strong> high-temperature stress on microsporogenesis in heatsensitive<br />

<strong>and</strong> heat-tolerant genotypes <strong>of</strong> Phaseolus vulgaris. Plant Cell Environ. 24,723-731.<br />

Pr<strong>and</strong>l, R., Hinderh<strong>of</strong>er, K., Eggers-Schumacher, G. <strong>and</strong> Sch<strong>of</strong>fl, F. (1998). HSF3, a new heat shock<br />

factor from Arabidopsis thaliana, derepresses the heat shock response <strong>and</strong> confers thermotolerance<br />

when overexpressed in transgenic plants. Mol. Gen. Gen. 258,269-278.<br />

Prasad, P. V. V., Boote, K. J., Allen, L. H. <strong>and</strong> Thomas, J. M. G. (2002). Effects <strong>of</strong> elevated<br />

temperature <strong>and</strong> carbon dioxide on seed-set <strong>and</strong> yield <strong>of</strong> kidney bean (Phaseolus vulgaris L.).<br />

Global Change Biol. 8,710-721.<br />

Pratt, W. B., Krishna, P. <strong>and</strong> Olsen, L. J. (2001). Hsp90-binding immunophilins in plants, the protein<br />

movers. Trends Plant Sci. 6,54-58.<br />

Pueyo, J. J., Alfonso, M., Andres, C. <strong>and</strong> Picorel, R. (2002). Increased tolerance to thermal inactivation<br />

<strong>of</strong> oxygen evolution in spinach Photosystem II membranes by substitution <strong>of</strong> the extrinsic<br />

33-kDa protein by its homologue from a thermophilic cyanobacterium. Biochim. Biophys.<br />

Acta 1554,29-35.<br />

Pursiheimo, S., Martinsuo, P., Rintamaki, E. <strong>and</strong> Aro, E. M. (2003). Photosystem II protein phosphorylation<br />

follows four distinctly different regulatory patterns induced by environmental cues. Plant<br />

Cell Environ. 26,1995-2003.<br />

Queitsch, C., Hong, S. W., Vierling, E. <strong>and</strong> Lindquist, S. (2000). Heat shock protein 101 plays a<br />

crucial role in thermotolerance in Arabidopsis. The Plant Cell 12,479-492.<br />

Queitsch, C., Sangster, T. A. <strong>and</strong> Lindquist, S. (2002). Hsp90 as a capacitor for genetic variation.<br />

Nature 417,618-624.<br />

Quinn, P. J., Joo, F., <strong>and</strong> Vigh, L. (1989). The role <strong>of</strong> unsaturated lipids in membrane-structure <strong>and</strong><br />

stability. Prog. Biophys. Mol. Biol. 53,71-103.<br />

Radin, J. W., Lu, Z., Percy, R. G. <strong>and</strong> Zeiger, E. (1994). Genetic variability for stomatal conductance<br />

in Pima cotton <strong>and</strong> its relation to improvements <strong>of</strong> heat adaptation. Proc. Nat. Acad. Sci.<br />

91,7217-7221.<br />

Raison, J. K., Roberts, J. K. M. <strong>and</strong> Berry, J. A. (1982). Correlations between the thermal stability <strong>of</strong><br />

chloroplasts (thylakoid) membranes <strong>and</strong> the composition <strong>and</strong> fluidity <strong>of</strong> their polar lipids upon<br />

acclimation <strong>of</strong> the higher plant Nerium ole<strong>and</strong>er to growth temperature. Biochim. Biophys.<br />

Acta 688,218-228.<br />

Reddy, K. R., Hodges, H. F. <strong>and</strong> McKinion, J. M. (1995). Carbon dioxide <strong>and</strong> temperature effects on<br />

pima cotton growth. Agric. Ecosys. Environ. 54,17-29.<br />

Rintamäki, E., Kettunen, R. <strong>and</strong> Aro, E. M. (1996). Differential D1 dephosphorylation in functional<br />

<strong>and</strong> photodamaged photosystem II centers. Dephosphorylation is a prerequisite for degradation<br />

<strong>of</strong> damaged D1. J. Biol. Chem. 271,14870-14875.<br />

Rokka, A., Aro, E. M., Herrmann, R. G., Andersson, B. <strong>and</strong> Vener, A. V. (2000). Dephosphorylation<br />

<strong>of</strong> photosystem II reaction center proteins in plant photosynthetic membranes as an immediate<br />

response to abrupt elevation <strong>of</strong> temperature. Plant Physiol. 123,1525-1535.<br />

Rokka, A., Zhang, L. <strong>and</strong> Aro, E. M. (2001). Rubisco activase, an enzyme with a temperaturedependent<br />

dual function? Plant J. 25,463-471.

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