首页> 外文期刊>Horticulture,Environment,and Biotechnology >Development of planting-density growth harvest (PGH) charts for quinoa (Chenopodium quinoa Willd.) and sowthistle (Ixeris dentata Nakai) grown hydroponically in closed-type plant production systems
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Development of planting-density growth harvest (PGH) charts for quinoa (Chenopodium quinoa Willd.) and sowthistle (Ixeris dentata Nakai) grown hydroponically in closed-type plant production systems

机译:在密闭型植物生产系统中水培生长的藜麦(Chenopodium quinoa Willd。)和so草(Ixeris dentata Nakai)的种植密度生长收获(PGH)图的开发

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When designing a plant production system, it is crucial to perform advanced estimation of growth and productivity in relation to cultivation factors. In this study, we developed Planting-density Growth Harvest (PGH) charts to facilitate the estimation of crop growth and harvest factors such as growth rate, relative growth rate, shoot fresh weight, harvesting time, marketable rate, and marketable yield for quinoa (Chenopodium quinoa Willd.) and sowthistle (Ixeris dentata Nakai). The plants were grown in a nutrient film technique (NFT) system in a closed-type plant factory under fluorescent lamps with three-band radiation under a light intensity of 140 mu mol center dot m(-2) center dot s(-1), with a 12-h/12-h (dayight) photoperiod. We analyzed the growth and yield of quinoa and sowthistle grown in nutrient solution at EC 2.0 dS center dot m(-1) under four planting densities: 15 cm between rows with a within-row distance of 15 x 10 cm (67 plants/m (2)), 15 x 15 cm (44 plants/m(2)), 15 x 20 cm (33 plants/m(2)), and 15 x 25 cm (27 plants/m(2)). Crop growth rate, relative growth rate, and lost time were closely correlated with planting density. We constructed PGH charts based on the growth data and existing models. Using these charts, growth factors could easily be determined, including growth rate, relative growth rate, and lost time, as well as harvest factors such as shoot fresh weight, marketable yield per area, and harvesting time, based on at least two parameters, for instance, planting density and shoot fresh weight.
机译:在设计植物生产系统时,至关重要的是,要对栽培因子进行生长和生产力的高级估计。在本研究中,我们开发了种植密度生长收获(PGH)图表以方便估算作物生长和收获因素,例如藜麦的生长速度,相对生长速度,枝条鲜重,收获时间,适销率和适销率(藜藜(Chenopodium quinoa)和苦and(Ixeris dentata Nakai)。将植物在营养膜技术(NFT)系统中的封闭型植物工厂中在三波段辐射的荧光灯下以140μmol中心点m(-2)中心点s(-1)的光强度生长,且光照时间为12小时/ 12小时(白天/晚上)。我们分析了四种种植密度下EC 2.0 dS中心点m(-1)在营养液中生长的藜麦和so的生长和产量:行距为15 cm,行距为15 x 10 cm(67株/ m) (2)),15 x 15厘米(44颗植物/ m(2)),15 x 20厘米(33颗植物/ m(2))和15 x 25厘米(27颗植物/ m(2))。作物生长速度,相对生长速度和损失的时间与种植密度密切相关。我们根据增长数据和现有模型构建了PGH图表。使用这些图表,可以基于至少两个参数轻松确定生长因子,包括生长速率,相对生长速率和损失的时间,以及收获因子,例如枝条鲜重,单位面积可销售产量和收获时间,例如,种植密度和芽鲜重。

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