Genotype-specific effects of elevated CO2 on fecundity in wild radish (Raphanus raphanistrum)
- 1 February 1994
- journal article
- Published by Springer Nature in Oecologia
- Vol. 97 (1) , 100-105
- https://doi.org/10.1007/bf00317913
Abstract
Rising atmospheric CO2 may lead to natural selection for genotypes that exhibit greater fitness under these conditions. The potential for such evolutionary change will depend on the extent of within-population genetic variation in CO2 responses of wild species. We tested for heritable variation in CO2-dependent life history responses in a weedy, cosmopolitan annual, Raphanus raphanistrum. Progeny from five paternal families were grown at ambient and twice ambient CO2 using outdoor open-top chambers (160 plants per CO2 treatment). Elevated CO2 stimulated net assimilation rates, especially in plants that had begun flowering. Across paternal families, elevated CO2 led to significant increases in flower and seed production (by 22% and 13% respectively), but no effect was seen on time to bolting, leaf area at bolting, fruit set, or number of seeds per fruit. Paternal families differed in their response to the CO2 treatment: in three families there were no significant CO2 effects, while in one family lifetime fecundity increased by >50%. These genotype-specific effects altered fitness rankings among the five paternal families. Although we did not detect a significant genotype x CO2 interaction, our results provide evidence for heritable responses to elevated CO2. In a subset of plants, we found that the magnitude of CO2 effects on fecundity was also influenced by soil fertility.Keywords
This publication has 26 references indexed in Scilit:
- Seasonal responses of leaf gas exchange to elevated carbon dioxide in PopulusgrandidentataCanadian Journal of Forest Research, 1992
- The influence of CO2 and O3, singly and in combination, on gas exchange, growth and nutrient status of radish (Raphanus sativus L.)New Phytologist, 1992
- Intraspecific variation in the response of rice (Oryza sativa) to increased CO2– photosynthetic, biomass and reproductive characteristicsPhysiologia Plantarum, 1992
- Phenology and growth in four annual species grown in ambient and elevated CO2Canadian Journal of Botany, 1991
- Constancy of population parameters for life history and floral traits in Raphanus sativus L. I. Norms of reaction and the nature of genotype by environment interactionsHeredity, 1991
- Growth response of carrot and radish to atmospheric CO2 enrichmentEnvironmental and Experimental Botany, 1989
- Atmospheric carbon dioxide measurements in the remote global troposphere, 1981-1984Tellus B: Chemical and Physical Meteorology, 1988
- Acclimation to High CO2 in Monoecious CucumbersPlant Physiology, 1986
- Effects of High Atmospheric CO2 and Sink Size on Rates of Photosynthesis of a Soybean CultivarPlant Physiology, 1981
- Dispensing and Monitoring Ozone in Open-Top Field Chambers for Plant-Effects StudiesPhytopathology®, 1979