Predicting dry matter production of cauli ̄ower (Brassica oleracea L. botrytis) under unstressed conditions I. Photosynthetic parameters of cauli ̄ower leaves and their implications for calculations of dry matter production

نویسندگان

  • H. Kage
  • C. Alt
  • H. StuÈtzel
چکیده

Measurements of CO2 exchange of cauli ̄ower leaves were carried out in a ®eld experiment which included two nitrogen fertilisation rates. Irradiance and CO2 concentration were varied at the leaf level within a leaf cuvette and additionally a temperature treatment was applied to ®eld grown plants moved into climate chambers. These measurements were used to estimate parameter values of a rectangular hyperbola describing cauli ̄ower leaf CO2 exchange as a function of irradiance and CO2 concentration. The obtained parameter estimates were used to derive empirical regression equations with temperature and nitrogen content of the leaves as independent variables. The resulting relationships were applied within a simple photosynthesis±respiration based dry matter production model in order to derive functional relationships between light use ef®ciency and irradiance, leaf area index and temperature. The rectangular hyperbola was able to describe the gas exchange data as varied by irradiance and CO2 concentration on the single leaf level with suf®cient accuracy, but estimates of initial light use ef®ciency (about 25 mg Jÿ1) were too high because of the bias emanating from the limited ̄exibility of this model. Light saturated photosynthesis rate (Pmax) showed an optimum response to temperature and an increase with increasing nitrogen content of leaves. The initial slope a of the rectangular hyperbola showed no consistent responses to ambient temperature and nitrogen content of leaves. The respiration per unit leaf area b increased exponentially with increasing temperature, Scientia Horticulturae 87 (2001) 155±170 * Corresponding author. Tel.: ‡49-511-762-2919; fax: ‡49-511-762-3606. E-mail address: [email protected] (H. Kage). 0304-4238/01/$ ± see front matter # 2001 Elsevier Science B.V. All rights reserved. PII: S 0 3 0 4 4 2 3 8 ( 0 0 ) 0 0 1 7 7 1 resulting in a Q10 value of 1.86. Because only a limited number of plants was evaluated in this study, additional work is needed to further substantiate the results of the gas exchange measurements. The model analysis demonstrated that LUE is independent of the light integral over a range 5± 10 MJ mÿ2 per day photosynthetically active radiation if one assumes an adaptation of Pmax within the canopy and over time according to the incident irradiance. Acclimatisation within the canopy and higher leaf area indices, LAI, reduce the decrease of LUE with irradiance but a substantial decline remains even for LAI values of 4. # 2001 Elsevier Science B.V. All rights reserved.

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تاریخ انتشار 2000