Analysis and modeling of gas exchange processes in Scaevola aemula
نویسندگان
چکیده
Scaevola aemula is a popular ornamental crop cultivated as a bedding plant or for hanging baskets. We characterized gas exchange properties of S. aemula ‘New Wonder’ in response to photosynthetically active radiation (PAR), carbon dioxide concentration, and leaf temperature. Net CO2 assimilation rate (A) was responsive to CO2, exhibiting a saturation when intercellular CO2 concentration (Ci) was greater than 600 mmol mol . Net CO2 assimilation rate and dark respiration rate (Rd) were 23.1 and 2.3 mmol m 2 s , respectively, at 25 8C and PAR = 1500 mmol m 2 s . Net CO2 assimilation rates were similar at leaf temperatures between 20 and 30 8C but significantly reduced at 15 8C. These gas exchange results were used to test the extendibility of a coupled gas exchange model previously developed for cut-roses. Utilizing the gas exchange data measured at 25 8C leaf temperature, several model parameters were independently determined for S. aemula. Model predictions were then compared with observations at different leaf temperatures. The model predicted the rates of net CO2 assimilation and transpiration of S. aemula reasonably well. Without additional calibration, the model was capable of predicting the temperature dependence of net CO2 assimilation and transpiration rates. Applying the model to predict the effects of supplemental lighting and CO2 enrichment on canopy photosynthesis and transpiration rates, we show that this model could be a useful tool for examining environmental control options for S. aemula production in the greenhouse. # 2007 Elsevier B.V. All rights reserved. www.elsevier.com/locate/scihorti Scientia Horticulturae 114 (2007) 170–176
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