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Response of growth, yield, and quality of edible-podded snow peas to supplemental LED lighting during winter greenhouse production

机译:冬季温室生产中可食用盆栽雪豆的生长,产量和质量的响应,综合LED照明

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摘要

The occurrence of low natural light levels during winter months is a major limiting factor for greenhouse plant production in northern regions. To determine the effects of supplemental lighting (SL) on winter greenhouse production of pea pods, plant growth, pod yield, and quality were investigated under SL at a photosyn thetic photon flux density (PPFD) of 50, 80, 110, and 140 mu mol m(-2) s(-1), plus a no-SL control treatment, inside a Canadian greenhouse from January to March. Light-emitting diodes with a red-to-blue PPFD ratio of 4:1 and a 16 h photoperiod were used for the lighting treatments. During the trial period, the average natural daily light integral (DLI) inside the greenhouse was 6.6 mol m(-2) d(-1) and the average daily temperature was around 13 degrees C. Compared with the control, SL treatments increased pod yield and promoted plant growth, as demonstrated by faster main stem extension and greater aerial biomass. Also, total pod yield (g plant(-1) or no. plant(-1)) and some growth traits (e.g., stem diameter, branch number, leaf thickness, and leaf chlorophyll content) were proportional to supplemental PPFD within the range of 0-140 mu mol m(-2) s(-1). However, SL levels of 50-80 mu mol m(-2) s(-1), corresponding to a total (natural + supplemental) DLI of 9.4-11.1 mol m(-2 )d(-1), resulted in the best pod quality based on evaluations of individual fresh mass, length, soluble solids content, succulence, and firmness. Therefore, a total DLI ranging between 9.4 and 11.1 mol m(-2 )d(-1) can be recommended as a target light level for greenhouse production of pea pods using SL under winter environment conditions.
机译:冬季月份的低自然光水平的发生是北部地区温室植物生产的主要限制因素。为了确定补充照明(SL)对冬季温室生产的豌豆荚,植物生长,豆荚产量和质量的影响,在SL处,在SL处,在50,80,110和140亩的光子上的光子磁通密度(PPFD)下进行SL。 Mol M(-2)S(-1)加上1月至3月的加拿大温室内的No-SL控制处理。具有红色至蓝色PPFD比率为4:1和16 H Photopheriod的发光二极管用于照明处理。在试用期间,温室内的平均自然日光积分(DLI)为6.6 mol m(-2)d(-1),平均每日温度约为13℃。与控制相比,SL处理增加了豆荚产量和促进植物生长,如更快的主干延伸和更大的空中生物质所证明。此外,总豆荚产率(G植物(-1)或否。植物(-1))和一些生长性状(例如,茎直径,分支数,叶片厚度和叶叶叶含量)与该范围内的补充PPFD成比例0-140 mm mol m(-2)s(-1)。然而,SL水平为50-80μmMmol m(-2)s(-1),对应于9.4-11.1mol m(-2)d(-1)的总(天然+补充)dli,导致了基于个体新鲜质量,长度,可溶性固体含量,多汁素和坚定的评估的最佳POD质量。因此,在冬季环境条件下,可以建议使用9.4至11.1mol m(-2)d(-2)d(-2)d(-2)d(-2)d(-1)的目标光线水平,以便在冬季环境条件下使用SL的温室生产豌豆荚。

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