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Tolerance of photosynthesis to high temperature in desert plants
W J Downton1, J A Berry, J R Seemann
1Department of Plant Biology, Carnegie Institution of Washington, 290 Panama Street, Stanford, California, 94305.
Abstract:
Winter- and summertime-active desert annual species were grown at different temperatures to assess their capacity for photosynthetic acclimation. Thermal stability of photosynthesis was determined from responses of chlorophyll fluorescence to increased temperature. Photosynthesis in winter ephemerals grown at 28 degrees C/21 degrees C became unstable close to 41 degrees C in contrast to the summer annuals which were stable up to about 46 degrees C. Growth at higher temperature (43 degrees C/32 degrees C) resulted in increases in thermal stability of 5 to 7 degrees C for the winter annuals and 3 to 4 degrees C for the summer annuals, showing that temperature can provide the primary stimulus for acclimation of the photosynthetic apparatus. The magnitude of these changes was very similar to the range of field values observed for the respective floras, indicating that the thermal acclimation response under field conditions was qualitatively similar to that occurring under controlled growth conditions. Perennial species, co-existing with these annuals in the desert, were on average more thermostable. The cacti were exceptionally heat stable, the threshold for fluorescence increase averaging 55 degrees C.
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