School of Environmental Sciences, University of Guelph, Guelph, ON. Canada; National Aeronautics and Space Administration (NASA), Kennedy Space Center, FL, United States .
National Aeronautics and Space Administration (NASA), Kennedy Space Center, FL, United States.
Life Sci Space Res (Amst). 2016 Jun;9:62-68. doi: 10.1016/j.lssr.2016.04.001. Epub 2016 Apr 27.
The objective of this study was to evaluate root restriction as a tool to increase volume utilization efficiency in spaceflight crop production systems. Bell pepper plants (Capsicum annuum cv. California Wonder) were grown under restricted rooting volume conditions in controlled environment chambers. The rooting volume was restricted to 500ml and 60ml in a preliminary trial, and 1500ml (large), 500ml (medium), and 250ml (small) for a full fruiting trial. To reduce the possible confounding effects of water and nutrient restrictions, care was taken to ensure an even and consistent soil moisture throughout the study, with plants being watered/fertilized several times daily with a low concentration soluble fertilizer solution. Root restriction resulted in a general reduction in biomass production, height, leaf area, and transpiration rate; however, the fruit production was not significantly reduced in the root restricted plants under the employed environmental and horticultural conditions. There was a 21% reduction in total height and a 23% reduction in overall crown diameter between the large and small pot size in the fruiting study. Data from the fruiting trial were used to estimate potential volume utilization efficiency improvements for edible biomass in a fixed production volume. For fixed lighting and rooting hardware situations, the majority of improvement from root restriction was in the reduction of canopy area per plant, while height reductions could also improve volume utilization efficiency in high stacked or vertical agricultural systems.
本研究旨在评估根限制作为一种提高航天作物生产系统中体积利用率的工具。在受控环境室中,使用辣椒(Capsicum annuum cv. California Wonder)进行限制根系体积的试验。在初步试验中,根系体积限制在 500ml 和 60ml,在全面结果试验中,根系体积限制在 1500ml(大)、500ml(中)和 250ml(小)。为了减少水和养分限制的可能干扰,在整个研究过程中,特别注意确保土壤湿度均匀一致,每天用低浓度的可溶性肥料溶液多次浇水/施肥。根限制导致生物量生产、高度、叶面积和蒸腾速率普遍降低;然而,在采用的环境和园艺条件下,根限制植物的果实产量没有显著降低。在结果试验中,大盆和小盆之间的总高度降低了 21%,整体冠径降低了 23%。结果试验的数据用于估计在固定生产体积中可食用生物量的潜在体积利用率提高。对于固定的照明和根系硬件情况,根限制的大部分改进在于减少每株植物的冠层面积,而高度降低也可以提高高堆叠或垂直农业系统的体积利用率。