4.7 Article

Evaluation of Growth and Photosynthetic Rate of Cucumber Seedlings Affected by Far-Red Light Using a Semi-Open Chamber and Imaging System

Journal

HORTICULTURAE
Volume 9, Issue 1, Pages -

Publisher

MDPI
DOI: 10.3390/horticulturae9010098

Keywords

far-red light; whole canopy photosynthesis; cucumber seedling; Raspberry Pi

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Recent studies have shown that far-red light increases photosynthetic capacity, but there have been few studies on its effects on the whole canopy photosynthetic rate and morphology of cucumber seedlings. This study evaluated the effect of adding far-red light to conventional white LEDs on cucumber seedlings' gas exchange rate and used a Raspberry Pi-based imaging system to analyze continuous images. Results showed that far-red light promoted germination and early growth of cucumber seedlings, but did not affect shoot and root dry weight.
Far-red light was excluded in photosynthetic photon flux; however, recent studies have shown that it increases photosynthetic capacity. In addition, there were few studies on the whole canopy photosynthetic rate and continuous changes of morphology on cucumber seedlings affected by far-red light. This study evaluated the effect of conventional white LEDs adding far-red light on cucumber seedlings using a semi-open chamber system for the measurement of the whole canopy gas exchange rate, and the Raspberry Pi-based imaging system for the analysis of a continuous image. In the image, through the imaging system, it was confirmed that far-red light promoted the germination rate of cucumber seedlings and enhanced early growth. However, the dry weight of the shoot and root did not increase. The measured net apparent CO2 assimilation rate was improved by an increasing leaf area during the cultivation period. The conventional white LED light source with added far-red light increased the photosynthetic rate of cucumber seedlings' whole canopy. However, at the early seedling stage, plant height and leaf area of the whole canopy was increased by far-red light, and it was revealed that the image data saturated faster. It was considered that the photosynthetic efficiency decreased due to a shading effect of the limited planting density of the cell tray. The results found that using appropriate far-red light, considering planting density, could increase the photosynthetic rate of the whole canopy of crops, thereby promoting crop growth, but it was judged that the use of far-red light in the early growth stage of cucumber seedlings should be considered carefully.

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