Ding Xiaotao, He Lizhong, Li Rongguang, Qian Tingting, Zhang Hongmei, Jin Haijun, Cui Jiawei, Wang Hong, Zhou Qiang, Zou Jun, Hui Dafeng, Jiang Yuping, He Kun, Yu Jizhu
Shanghai Key Lab of Protected Horticultural Technology, Horticultural Research Institute, Shanghai Academy of Agricultural Sciences, Shanghai 201403, China.
Shanghai Institute of Technology, College of Ecological Technology and Engineering, Shanghai 201418, China.
Plants (Basel). 2022 Aug 30;11(17):2252. doi: 10.3390/plants11172252.
With the development of the economy and society, more attention is being paid to energy costs and the potential environmental pollution caused by vegetable cultivation. The aim of this study was to investigate the impacts of zero discharge of nutrient solutions on cucumber growth, leaf photosynthesis, and the yield and quality of cucumber under greenhouse conditions. The results show that zero discharge treatment did not change plant height, stem diameter, internode length, leaf area, net photosynthetic rate (), stomatal conductance (), intercellular CO concentration (), transpiration rate (), and leaf relative chlorophyll content on the most measurement days. Only and relative chlorophyll content were significantly reduced after 16 days of treatment but soon recovered over time. Cucumber plants can adapt to treatment circumstances over the course of days. Leaf mineral element contents showed significant differences on some treatment days compared to the control, and trace elements of Fe, Mn, Cu, and Mo can be appropriately supplied during the treatment days. The cucumber yield and fruit quality in the zero discharge treatment did not change during the whole experimental period. This study confirmed that the irrigation method of a nutrient solution with zero discharge can be applied in cucumber cultivation practices. The strict management of irrigation strategy, plant growth, and greenhouse climate are very important for zero discharge cultivation. The cultivation method with zero discharge of nutrient solution can reduce the energy costs of disinfection, save water and fertilizers, and reduce the environmental pollution in cucumber cultivation.
随着经济和社会的发展,人们越来越关注蔬菜种植中的能源成本以及潜在的环境污染问题。本研究的目的是探讨在温室条件下营养液零排放对黄瓜生长、叶片光合作用以及黄瓜产量和品质的影响。结果表明,在大多数测量日,零排放处理并未改变黄瓜的株高、茎粗、节间长度、叶面积、净光合速率、气孔导度、胞间CO₂浓度、蒸腾速率和叶片相对叶绿素含量。处理16天后,只有净光合速率和相对叶绿素含量显著降低,但随时间推移很快恢复。黄瓜植株在数天内能够适应处理环境。与对照相比,处理期间某些日子叶片矿质元素含量存在显著差异,处理期间可适当供应铁、锰、铜和钼等微量元素。整个试验期间,零排放处理的黄瓜产量和果实品质未发生变化。本研究证实,营养液零排放灌溉方法可应用于黄瓜种植实践。严格管理灌溉策略、植株生长和温室气候对于零排放栽培非常重要。营养液零排放栽培方法可降低消毒能源成本、节约用水和肥料,并减少黄瓜种植中的环境污染。