van Iersel M W, Bugbee B
Department of Horticulture, Georgia Station, The University of Georgia, Griffin, GA 30223-1797, USA.
J Am Soc Hortic Sci. 2000 Jan;125(1):86-92.
Long-term, whole crop CO2 exchange measurements can be used to study factors affecting crop growth. These factors include daily carbon gain, cumulative carbon gain, and carbon use efficiency, which cannot be determined from short-term measurements. We describe a system that measures semicontinuously crop CO2 exchange in 10 chambers over a period of weeks or months. Exchange of CO2 in every chamber can be measured at 5 min intervals. The system was designed to be placed inside a growth chamber, with additional environmental control provided by the individual gas exchange chambers. The system was calibrated by generating CO2 from NaHCO3 inside the chambers, which indicated that accuracy of the measurements was good (102% and 98% recovery for two separate photosynthesis systems). Since the systems measure net photosynthesis (P-net, positive) and dark respiration(R-dark, negative), the data can be used to estimate gross photosynthesis, daily carbon gain, cumulative carbon gain, and carbon use efficiency. Continuous whole-crop measurements are a valuable tool that complements leaf photosynthesis measurements. Multiple chambers allow for replication and comparison among several environmental or cultural treatments that may affect crop growth. Example data from a 2 week study with petunia (Petunia x hybrida Hort. Vilm.-Andr.) are presented to illustrate some of the capabilities of this system.
长期的整株作物二氧化碳交换测量可用于研究影响作物生长的因素。这些因素包括每日碳增益、累积碳增益和碳利用效率,而这些无法通过短期测量来确定。我们描述了一种系统,该系统可在数周或数月的时间内对10个室中的作物二氧化碳交换进行半连续测量。每个室中的二氧化碳交换可每隔5分钟测量一次。该系统设计为放置在生长室内,各个气体交换室提供额外的环境控制。通过在室内由碳酸氢钠产生二氧化碳对系统进行校准,这表明测量精度良好(两个独立光合作用系统的回收率分别为102%和98%)。由于该系统测量净光合作用(P-net,正值)和暗呼吸(R-dark,负值),这些数据可用于估算总光合作用、每日碳增益、累积碳增益和碳利用效率。连续的整株测量是补充叶片光合作用测量的一种有价值的工具。多个室允许对可能影响作物生长的几种环境或栽培处理进行重复和比较。展示了用矮牵牛(Petunia x hybrida Hort. Vilm.-Andr.)进行的为期2周研究的示例数据,以说明该系统的一些功能。