Photosynthetic photon flux density affects fruit biomass radiation-use efficiency of dwarf tomatoes under LED light at the reproductive growth stage

被引:9
|
作者
Ke, Xinglin [1 ]
Yoshida, Hideo [1 ]
Hikosaka, Shoko [1 ]
Goto, Eiji [1 ,2 ]
机构
[1] Chiba Univ, Grad Sch Hort, Matsudo, Japan
[2] Chiba Univ, Plant Mol Res Ctr, Chiba, Japan
来源
基金
日本科学技术振兴机构;
关键词
dry matter partitioning; fruit sink strength; fruit yield; indoor farming; Micro-Tom; plant factory; source strength; vertical farming; QUANTUM YIELD; MODEL; LEAF; QUANTIFICATION; SYSTEM;
D O I
10.3389/fpls.2023.1076423
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
This study aimed to analyze the effects of photosynthetic photon flux density (PPFD) on fruit biomass radiation-use efficiency (FBRUE) of the dwarf tomato cultivar 'Micro-Tom' and to determine the suitable PPFD for enhancing the FBRUE under LED light at the reproductive growth stage. We performed four PPFD treatments under white LED light: 200, 300, 500, and 700 mu mol m(-2) s(-1). The results demonstrated that a higher PPFD led to higher fresh and dry weights of the plants and lowered specific leaf areas. FBRUE and radiation-use efficiency (RUE) were the highest under 300 mu mol m(-2) s(-1). FBRUE decreased by 37.7% because RUE decreased by 25% and the fraction of dry mass portioned to fruits decreased by 16.9% when PPFD increased from 300 to 700 mu mol m(-2) s(-1). Higher PPFD (500 and 700 mu mol m(-2) s(-1)) led to lower RUE owing to lower light absorptance, photosynthetic quantum yield, and photosynthetic capacity of the leaves. High source strength and low fruit sink strength at the late reproductive growth stage led to a low fraction of dry mass portioned to fruits. In conclusion, 300 mu mol m(-2) s(-1) PPFD is recommended for 'Micro-Tom' cultivation to improve the FBRUE at the reproductive growth stage.
引用
收藏
页数:13
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