Combined effects of CO2 concentration and enhanced UV-B radiation on faba bean

被引:3
|
作者
Marcel Tosserams
Andries Visser
Mark Groen
Guido Kalis
Erwin Magendans
Jelte Rozema
机构
[1] Vrije Universiteit,Department of Systems Ecology, Faculty of Biology
来源
Plant Ecology | 2001年 / 154卷
关键词
Apical dominance; Biomass allocation; Biomass production; Carbohydrates; CO; enrichment; Faba bean; Photosynthetic acclimation; UV-B radiation;
D O I
暂无
中图分类号
学科分类号
摘要
Due to anthropogenic influences, both solar UV-B irradiance at the earth's surface and atmospheric [CO2] are increasing. To determine whether effects of CO2 enrichment on faba bean (cv. Minica) growth are modified by UV-B radiation, the effects of enhanced [CO2] on growth and photosynthetic characteristics, were studied at four UV-B levels. Faba bean was sensitive to enhanced UV-B radiation as indicated by decreases in total biomass production. Growth stimulation by CO2 enrichment was greatly reduced at the highest UV-B level. [CO2] by UV-B interactions on biomass accumulation were related to loss of apical dominance. Both [CO2] and UV-B radiation affected biomass partitioning, UV-B effects being most pronounced. Effects of [CO2] and UV-B on faba bean growth were time-dependent, indicating differential sensitivity of developmental stages. [CO2] and UV-B effects on photosynthetic characteristics were rather small and restricted to the third week of treatment. CO2 enrichment induced photosynthetic acclimation, while UV-B radiation decreased light-saturated photosynthetic rate. It is concluded that the reduction in biomass production cannot be explained by UV-B-induced effects on photosynthesis.
引用
收藏
页码:195 / 210
页数:15
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