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高光量子通量密度差异改善毛豆和矮生番茄可食用生物量空间利用效率。

High Photosynthetic Photon Flux Density Differentially Improves Edible Biomass Space Use Efficacy in Edamame and Dwarf Tomato.

作者信息

Liu Qingxin, Ke Xinglin, Goto Eiji

机构信息

Graduate School of Horticulture, Chiba University, Matsudo 648, Matsudo 271-8510, Chiba, Japan.

Research Center for Space Agriculture and Horticulture, Chiba University, Matsudo 648, Matsudo 271-8510, Chiba, Japan.

出版信息

Plants (Basel). 2024 Jul 5;13(13):1858. doi: 10.3390/plants13131858.

Abstract

Improving edible biomass space use efficacy (EBSUE) is important for sustainably producing edamame and dwarf tomatoes in plant factories with artificial light. Photosynthetic photon flux density (PPFD) may increase EBSUE and space use efficacy (SUE). However, no study has quantitatively explained how PPFD affects EBSUE in edamame and dwarf tomatoes. This study aimed to quantitatively validate the effects of PPFD on EBSUE in dwarf tomatoes and edamame and verify whether this effect differs between these crops. The edamame and dwarf tomato cultivars 'Enrei' and 'Micro-Tom', respectively, were cultivated under treatments with PPFDs of 300, 500, and 700 µmol m s. The results showed that the EBSUE and SUE increased with increasing PPFD in both crops. The EBSUE increased depending on the increase in SUE, the dry mass ratio of the edible part to the total plant in the edamame, and the SUE only in the dwarf tomatoes. In conclusion, a high PPFD can improve the EBSUE and SUE of edamame and dwarf tomatoes in different ways at the reproductive growth stage. The findings from this study offer valuable information on optimizing space and resource usage in plant factories with artificial light and vertical farms. Additionally, they shed light on the quantitative impact of PPFD on both EBSUE and SUE.

摘要

提高可食用生物量空间利用效率(EBSUE)对于在人工光植物工厂中可持续生产毛豆和矮生番茄至关重要。光合光子通量密度(PPFD)可能会提高EBSUE和空间利用效率(SUE)。然而,尚无研究定量解释PPFD如何影响毛豆和矮生番茄的EBSUE。本研究旨在定量验证PPFD对矮生番茄和毛豆EBSUE的影响,并验证这种影响在这些作物之间是否存在差异。分别以300、500和700 μmol m² s⁻¹的PPFD处理种植毛豆品种‘Enrei’和矮生番茄品种‘Micro-Tom’。结果表明,两种作物的EBSUE和SUE均随PPFD的增加而增加。EBSUE的增加取决于SUE的增加、毛豆可食用部分与整株植物的干质量比以及仅矮生番茄中的SUE。总之,高光合光子通量密度(PPFD)可以在生殖生长阶段以不同方式提高毛豆和矮生番茄的EBSUE和SUE。本研究结果为优化人工光植物工厂和垂直农场的空间和资源利用提供了有价值的信息。此外,它们揭示了PPFD对EBSUE和SUE的定量影响。

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