Effect of Different Light Emitting Diode (LED) Lights on the Growth Characteristics and the Phytochemical Production of Strawberry Fruits during Cultivation

发光二极管 经济短缺 蓝光 园艺 光周期性 光强度 花青素 LED灯 化学 植物 食品科学 生物 材料科学 光电子学 光学 物理 哲学 政府(语言学) 语言学
作者
Hyo Choi,Joon Kook Kwon,Byoung Yong Moon,Nam Jun Kang,Kyoung Sub Park,Myeong Whan Cho,Young Cheol Kim
出处
期刊:Korean Journal of Horticultural Science & Technology [Korean Society for Horticultural Science]
卷期号:31 (1): 56-64 被引量:26
标识
DOI:10.7235/hort.2013.12100
摘要

지구 온난화에 따른 최근의 이상기후는 일조량의 부족을 야기하여 농업 피해의 일차적인 요인이 되고 있다. 플라스틱 하우스 재배에서 LED광은 일조량 부족을 보충하기 위해 종종 활용되고 있다. 본 연구는 LED 인공광원을 이용한 폐쇄형 생장실에서 생육 중인 성숙한 딸기 '대왕' 품종 과실의 생장 특성 및 기능성 식물화합물 형성을 조사하는데 목적이 있다. 인공광원으로는 청색 LED광(448nm), 적색 LED광(634nm 및 661nm), 그리고 청색과 적색이 3대 7로 조합된 혼합 LED광을 사용하였으며, 태양광이 없는 폐쇄형 생장상에서 주간 16시간 및 야간 8시간의 광주기와 함께 $200{\pm}1{\mu}mol{\cdot}m^{-2}{\cdot}s^{-1}$의 광도로 LED광을 처리하였다. 청색과 적색 파장이 혼합된 LED광에서 자란 딸기 과실의 생산량이 다른 LED광 처리보다 높았다. 유리당 중의 하나인 과당은 혼합 LED광에서 증가되었다. 안토시아닌 함량 역시 다른 LED광 처리에 비하여 혼합 LED광에서 현저하게 증가되었다. 총 페놀화합물과 플라보노이드 함량은 LED광 처리별 유의적 차이가 없었다. 반면, 청색 LED광에서 자란 딸기 과실은 다른 LED광처리에 비하여 빨리 익었다. 적색이나 청색의 LED광에서 생육한 과실의 항산화 활성이 혼합 LED광보다 유의적으로 높게 나타났다. 따라서 온실에서의 딸기 생육 시 부족한 태양광의 보충광원으로서 청색과 적색의 혼합 LED광을 사용하면 과실의 생산량과 유리당 함량의 증진에 유용하리라고 판단되며, 식물공장에서 딸기 재배 시 성숙시기의 조절이나 당 함량 및 항산화제 증진과 같은 목적을 실현하기 위해서 LED 파장의 선택적 이용이 필요할 것으로 생각된다. Recent unusual weather due to global warming causes shortage of daily sunlight and constitutes one of the primary reasons for agricultural damages. LED light sources are frequently utilized to compensate for the shortage of sunlight in greenhouse agriculture. The present study is aimed at evaluating formations of phytochemicals as well as growth characteristics of mature strawberry fruits ('Daewang' cultivar) during cultivation in a closed growth chamber equipped with artificial LED light as a sole light source. Each LED light of blue (448 nm), red (634 and 661 nm) or mixed blue plus red (blue:red = 3:7) was separately supplied and the intensity of each light was adjusted to $200{\pm}1{\mu}mol{\cdot}m^{-2}{\cdot}s^{-1}$ at plant level with a photoperiod consisted of 16 hours light and 8 hours darkness. Strawberries grown under mixed LED light of blue and red wavelengths showed a higher production of fruits than those grown under other LED treatments. Fructose, one of the free sugars, increased in mixed LED light-grown fruits. Anthocyanin contents were elevated remarkably in the mixed LED light-grown fruits compared with those in other LED treatments. Contrastingly, contents of total phenolics and flavonoids were not of much different from one another among the fruits treated with various LED lights. On the other hand, ripening of strawberry fruits was found to be faster when grown under blue LED light compared with other LED treatments. Moreover, antioxidant activities of blue or red LED light-grown fruits, respectively, were significantly higher than those of mixed LED light-grown fruits. We suggest that when daylight is in shortage during cultivation in a greenhouse, supplementation of sunlight with LED light, which is composed of blue and red wavelengths, could be useful for the enhancement of productivity as well as of free sugar content in strawberry fruits. In addition, for the strawberry culture in the plant factory, selective adoption of LED light wavelength would be required to accomplish the purpose of controlling fruit maturation time as well as of enhancing contents of sugars and antioxidants of fruits.
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