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首页> 外文期刊>HortScience >Supplemental Light-emitting Diode Effects on the Growth, Fruit Quality, and Yield of Two Greenhouse-grown Strawberry (Fragaria xananassa) Cultivars
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Supplemental Light-emitting Diode Effects on the Growth, Fruit Quality, and Yield of Two Greenhouse-grown Strawberry (Fragaria xananassa) Cultivars

机译:补充发光二极管对两种温室生长的草莓(Fragaria Xananassa)品种的生长,水果质量和产量的影响

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摘要

Recent interest in off-season greenhouse-grown food crops, in combination with supplemental (top) lighting (SL), has created opportunities for local production of high-value fruit crops such as strawberries (Fragaria xananassa). Light-emitting diodes (LEDs) as SL can be tailored to a specific quality of radiation (i.e., wavelengths) to promote increased production and quality of greenhouse-grown crops. The objectives of this study were to evaluate the effects of three LED light bars on off-season controlled environmental agriculture (CEA) production of 2-day neutral strawberry cultivars: Albion and San Andreas. LED effects on overall vegetative biomass (e.g., stolon production, crown number, and leaf area), marketable fruit yield, and fruit quality [e.g., individual fruit weight and soluble solids content (SSC)] were measured during decreasing daylengths from Oct. to Dec. 2017 (Expt. 1) and increasing daylengths of Jan. to Apr. 2018 (Expt. 2). We hypothesized that the addition of SL via three LED treatments would increase measured parameters. Specifically, it was expected that the LED bars [high blue (HB) and low blue (LB)] with greater intensities of blue and red light would produce greater yields and also increase SSC of the berries. The hypotheses were tested by evaluating three LED light top bars [white far-red (WFR; 440-450 nm), HB, and LB], with wavelength peaks of blue (450 nm) and red (665 nm) light, but differing photosynthetic photon flux densities (PPFDs). Results from these experiments showed that individual strawberry fruit size and SSC were increased with the use of HB and LB LEDs during the shortening days of Expt. 1. Increased leaf area and crown number were also affected positively within all LED treatments (WFR, LB, HB) for 'San Andreas'. Relative to Expt. 1, the lengthening days of Expt. 2 elicited more limited fruit responses, although increased stolon production within all treatments was reported. In addition, differences between cultivars in leaf area and SSC were observed with 'San Andreas' growing larger leaves and 'Albion' berries having a greater SSC. Individual fruit weight of both cultivars responded similarly, with increased fruit size in LB and HB, specifically within both Expt. 1 and Expt. 2. Our studies indicate that the addition of SL, in the form of LB and HB improved overall strawberry fruit quality and plant growth during shortening daylengths and under greenhouse CEA conditions.
机译:近期对淡季温室种植的食物作物的兴趣,与补充(顶部)照明(SL)的组合,为局部生产的高价值水果作物(如草莓(Fragaria Xananassa)组合而成的机会。作为S1的发光二极管(LED)可以根据特定的辐射质量(即,波长)来促进温室生长作物的增加的产量和质量。本研究的目标是评估三个LED灯条对淡季控制环境农业(CEA)生产2天中性草莓品种的影响:Albion和San Andreas。对整体植物生物量(例如,Stolon生产,皇冠数和叶面积),可销售果实产量和果实质量[例如,单独的果实重量和可溶性固体含量(SSC)]的LED效应在降低到10月份的日期期间测量2017年12月(EXPT。1)和增加1月至2018年4月的黄色长度我们假设通过三个LED处理的添加层将增加测量参数。具体而言,预期,LED杆[高蓝(HB)和低蓝色(LB)]具有更大的蓝色和红光的强度将产生更大的产率并且还增加浆果的SSC。通过评估三个LED灯顶杆[白色远红色(WFR; 440-450nm),Hb和LB]来测试假设,其中蓝色(450nm)和红色(665nm)光的波长峰,但不同光合光子磁通密度(PPFD)。这些实验的结果表明,在缩短日子的缩短日期,使用Hb和Lb LED增加了个体草莓果实尺寸和SSC。 1.增加的叶片区域和皇冠编号在“San Andreas”的所有LED治疗(WFR,LB,HB)中也受到积极影响。相对于EXPT。 1,延长日的延长天。 2引发了更多有限的水果响应,尽管据报道所有治疗中的匍匐茎产量增加。此外,叶面积和SSC的品种之间的差异被较大的叶片和“汉语”浆果具有更大的SSC。两种品种的个体果实重量类似地反应,果实大小增加了LB和HB,特别是在EXPT中。 1和expt。 2.我们的研究表明,在缩短日期和温室CEA条件下,以LB和HB的形式添加SL的添加,其含量较高,植物生长。

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