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. 1980 Apr;45(1):19-25.
doi: 10.1007/BF00346701.

Long-term effects of drought on wild and cultivated plants in the Negev desert : II. Diurnal patterns of net photosynthesis and daily carbon gain

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Long-term effects of drought on wild and cultivated plants in the Negev desert : II. Diurnal patterns of net photosynthesis and daily carbon gain

E -D Schulze et al. Oecologia. 1980 Apr.

Abstract

The seasonal change in diurnal patterns of net photosynthesis and daily carbon gain is studied in relation to the plant water status of the irrigated and non-irrigated naturally growing desert species Hammada scoparia, Zygophyllum dumosum, Artemisia herba-alba and Reaumuria negevensis. Comparison is made to cultivated Prunus armeniaca. Under non-irrigated natural conditions Hammada scoparia, a C4 plant, showed one-peaked flat diurnal courses of CO2 uptake which changed into a pattern of a high morning peak of CO2 uptake or slightly two-speaked curves in the late dry season. In contrast, the C3 species Zygophyllum dumosum, Artemisia herba-alba and Prunus armeniaca changed from one-peaked to distinct two-peaked patterns. At the end of the dry season, non-irrigated plants showed respiration only. Reaumuria negevensis had one-peaked curves with a low level of CO2 uptake.There is no general relation between day-time CO2 gain and pre-dawn water potential for the investigated species. In order to characterize the effect of soil drought, the CO2 gain during day-time of non-irrigated plants is expressed as a percentage of the CO2 gain of the irrigated counterparts. After an initial period of minimal drought effect, the relative day-time CO2 gain decreases almost linearly with cumulative water stress as determined by the daily addition of pre-dawn water potentials for the non-irrigated plants since the last rainfall. The slope of decrease differs from species to species. The relation of daily CO2 gain to maximal net photosynthesis is discussed. Initially, at a good plant water status, the daily CO2 gain does not decrease in proportion to the maximal photosynthetic rates as a result of stomatal control at high photosynthetic activity. At increasing water stress the daily CO2 gain decreases more than proportionally to the decrease of the maximal rates.

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References

    1. Oecologia. 1975 Dec;19(4):303-314 - PubMed
    1. Oecologia. 1975 Sep;18(3):219-233 - PubMed
    1. Oecologia. 1972 Dec;9(4):317-340 - PubMed
    1. Oecologia. 1974 Sep;15(3):205-222 - PubMed
    1. Oecologia. 1975 Mar;18(1):45-53 - PubMed

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