Department of Horticultural Science, Box 7609, North Carolina State University, Raleigh, North Carolina 27695-7609.
Plant Physiol. 1986 Jan;80(1):59-62. doi: 10.1104/pp.80.1.59.
CO(2) concentrations of 1000 compared to 350 microliters per liter in controlled environment chambers did not increase total fruit weight or number in a monoecious cucumber (Cucumis sativus L. cv Chipper) nor did it increase biomass, leaf area, or relative growth rates beyond the first 16 days after seeding. Average fruit weight was slightly, but not significantly greater in the 1000 microliters per liter CO(2) treatment because fruit numbers were changed more than total weight. Plants grown at 1000 and 350 microliters per liter CO(2) were similar in distribution of dry matter and leaf area between mainstem, axillary, and subaxillary branches. Early flower production was greater in 1000 microliters per liter plants. Subsequent flower numbers were either lower in enriched plants or similar in the two treatments, except for the harvest at fruiting when enriched plants produced many more male flowers than the 350 microliters per liter treatments.
在控制环境室中,将 CO(2)浓度从 350 微升/升至 1000 微升/升,并未增加雌雄同株黄瓜(Cucumis sativus L. cv Chipper)的总果实重量或数量,也不会增加生物量、叶面积或相对生长率超过播种后 16 天。在 1000 微升/升 CO(2)处理中,平均果实重量略有但无显著增加,因为果实数量的变化大于总重量。在 1000 和 350 微升/升 CO(2)下生长的植物,其干物质和叶面积在主茎、腋芽和次腋芽之间的分布相似。在 1000 微升/升 CO(2)处理下,早期的花产量更高。在随后的花数量中,除了在果实收获时,富化植物产生的雄花数量明显多于 350 微升/升 CO(2)处理外,富化植物的花数量要么较低,要么两种处理相似。