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Growth characteristics of sowthistle (Ixeris dentata Nakai) under different levels of light intensity, electrical conductivity of nutrient solution, and planting density in a plant factory

机译:植物工厂中不同水平的光强度,营养液的电导率和种植密度下so的生长特性

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The objective of this study was to investigate the growth characteristics of sowthistle (Ixeris dentata Nakai) under different levels of light intensity (photosynthetic photon flux, PPF), electrical conductivity (EC) of nutrient solution, and planting density for efficient production in a closed-type plant factory system. Growth and yield of the plants were analyzed at EC 1.5 and 2.0 dS·m−1 with PPF 100 and 200 μmol·m−2·s−1. Further, growth and yield were measured under four different planting densities: a 15-cm between-row distance with within-row distances of 10, 15, 20, and 25 cm. Shoot dry weight and leaf photosynthetic rate all increased with increasing EC and light intensity. Shoot fresh and dry weights, chlorophyll content, and leaf photosynthetic rate were maximal at EC 2.0 dS·m−1 with PPF 200 μmol·m−2·s−1. For all planting densities, number of leaves and leaf width were not significantly different. Shoot fresh and dry weights per plant were not significantly different, however, shoot fresh and dry weights per area decreased with increasing plating densities. A linear relationship was observed between the number of leaves and days after transplantation. Based on the results, we suggest a nutrient solution of EC 2.0 dS·m−1, PPF 200 μmol·m−2 · s−1, and planting density of 15×10 cm for maximal growth and yield of sowthistle in a closed-type plant factory.
机译:这项研究的目的是研究在不同水平的光强度(光合作用光子通量,PPF),营养液的电导率(EC)和种植密度下不同水平生长的so的生长特征。型厂房工厂系统。在PP 1.5和200μmol·m-2 ·s-1 的EC 1.5和2.0 dS·m-1 下分析了植物的生长和产量。此外,在四种不同的种植密度下测量了生长和产量:行间距离为15厘米,行内距离为10、15、20和25厘米。茎干重量和叶片光合速率均随EC和光照强度的增加而增加。 PPF 200μmol·m-2 ·s-1 下,EC 2.0 dS·m-1 下的干鲜重,叶绿素含量和叶片光合速率最大。对于所有种植密度,叶片数量和叶片宽度均无显着差异。每株植物的茎鲜重和干重没有显着差异,但是,每单位面积的茎鲜重和干重随平板密度的增加而降低。叶片数目与移植后天数之间存在线性关系。根据研究结果,我们建议采用EC 2.0 dS·m-1 ,PPF 200μmol·m-2 ·s-1 和15×10的种植密度的营养液。厘米,用于在封闭式工厂中最大限度地提高so的生长和产量。

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