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首页> 外文期刊>HortScience >Tomatoes Grown with Light-emitting Diodes or High-pressure Sodium Supplemental Lights have Similar Fruit-quality Attributes
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Tomatoes Grown with Light-emitting Diodes or High-pressure Sodium Supplemental Lights have Similar Fruit-quality Attributes

机译:用发光二极管或高压钠补充灯种植的番茄具有相似的果实品质属性

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摘要

Light-emitting diodes (LEDs) are an attractive alternative to high-pressure sodium (HPS) lamps for plant growth because of their energy-saving potential. However, the effects of supplementing broad-waveband solar light with narrow-waveband LED light on the sensory attributes of greenhouse-grown tomatoes (Solanum lycopersicum) are largely unknown. Three separate studies investigating the effect of supplemental light quantity and quality on physicochemical and organoleptic properties of greenhouse-grown tomato fruit were conducted over 4- or 5-month intervals during 2012 and 2013. Tomato cultivars Success, Komeett, and Rebelski were grown hydroponically within a high-wire trellising system in a glass-glazed greenhouse. Chromacity, Brix, titratable acidity, electrical conductivity (EC), and pH measurements of fruit extracts indicated plant response differences between lighting treatments. In sensory panels, tasters ranked tomatoes Tor color, acidity, and sweetness using an objective scale, whereas color, aroma, texture, sweetness, acidity, aftertaste, and overall approval were ranked using hedonic scales. By collecting both physicochemical as well as sensory data, this study was able to determine whether statistically significant physicochemical parameters of tomato fruit also reflected consumer perception of fruit quality. Sensory panels indicated that statistically significant physicochemical differences were not noticeable to tasters and that tasters engaged in blind testing could not discern between tomatoes from different supplemental lighting treatments or unsupplemented controls. Growers interested in reducing supplemental lighting energy consumption by using intracanopy LED (IC-LED) supplemental lighting need not be concerned that the quality of their tomato fruits will be negatively affected by narrow-band supplemental radiation at the intensities and wavelengths used in this study.
机译:发光二极管(LED)由于具有节能潜力,因此是代替高压钠(HPS)灯进行植物生长的诱人替代品。但是,用窄波LED光补充宽频太阳光对温室种植的番茄(茄属番茄)的感官特性的影响尚不清楚。在2012年和2013年之间,每隔4个月或5个月进行了三项单独的研究,研究了补充光量和质量对温室种植的番茄果实的理化和感官特性的影响。番茄品种Success,Komeett和Rebelski均在水培条件下种植玻璃玻璃温室中的高架格架系统。水果提取物的色度,白利糖度,可滴定酸度,电导率(EC)和pH值测量表明,光照处理之间的植物响应差异。在感官面板中,品尝者使用客观标度对西红柿Tor的颜色,酸度和甜度进行排名,而颜色,香气,质地,甜度,酸度,余味和总体认可度使用享乐度标度进行排名。通过收集理化和感官数据,这项研究能够确定番茄果实的统计学上重要的理化参数是否也反映了消费者对果实品质的感知。感官小组指出,统计学上显着的理化差异对于品尝者而言并不明显,并且从事盲法测试的品尝者无法分辨出来自不同补充照明处理或未补充对照的西红柿。对通过使用棚内LED(IC-LED)辅助照明来减少辅助照明能源消耗感兴趣的种植者,不必担心番茄果实的质量会受到本研究中使用的强度和波长的窄带辅助辐射的负面影响。

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