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首页> 外文期刊>Acta Horticulturae >LED light in primocane raspberries grown in polytunnel at high latitudes
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LED light in primocane raspberries grown in polytunnel at high latitudes

机译:在高纬度的聚洞中种植的初茂树莓的LED灯

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Growing of primocane raspberries in mid-Norway is challenging, because of short days and low light levels in autumn. However, temperatures in coastal areas are normally high enough in summer and early autumn for growth and fruit development, and higher temperatures can be expected in future according to climatic scenarios. Therefore, improved light conditions were examined when photosynthetic active radiation (PAR) was below critical level for development of high fruit quality (400 umol m2 s1), growing 'Polka' in 2011-2013. An experimental block design with different light treatments: (i) ambient light; (ii) LED lamps (300 W); or (iii) SON (400 W) (the latter not employed in 2013) placed 40 cm above the top of the canopy. Fruit yield, °Brix, fruitfirmness and arthropods on leaves were recorded. Results over three years indicate that LED had influence on °Brix and possibly on fruit yield, but not on fruit firmness. Highest light level (900 W under LED) was beyond saturation point for photosynthesis in periods of low temperatures (mainly beyond October 1). The arthropod fauna was sampled 2-3 times per season, revealing a build-up of spider mites from near zero in August 2011 to 265 mites leaf1 two years later. Light treatment did not influence spider mite or aphid numbers. It can be suggested that LEDs had a positive influence on fruit yield and °Brix, but not on fruit firmness, and that spider mites and aphids were not promoted by the extra light. However, to secure the whole crop to be harvested some heat should be added beyond October 1 to increase efficiency of LED lighting and secure ripening of total yield potential.
机译:由于白天短,秋天的光照低,在挪威中部种植一棵初茂树莓很有挑战性。然而,沿海地区的温度通常在夏季和秋季初都足够高,可以生长和发育果实,并且根据气候情况,未来可能会出现更高的温度。因此,当光合有效辐射(PAR)低于发展高品质水果(400 umol m2 s1)的临界水平时,就检查了改善的光照条件,并在2011-2013年种植了'Polka'。具有不同光处理的实验模块设计:(i)环境光; (ii)LED灯(300瓦);或(iii)SON(400 W)(后者于2013年不再使用)放置在顶篷顶部上方40厘米处。记录叶片上的果实产量,白利糖度,果实度和节肢动物。三年的结果表明,LED影响白利糖度,可能影响果实产量,但不影响果实硬度。在低温期间(主要在10月1日之后),最高光水平(LED下为900 W)超过了光合作用的饱和点。每个节肢动物区系每季采样2-3次,揭示出蜘蛛螨的数量从2011年8月的接近零增长到两年后的265螨。光处理不影响红蜘蛛或蚜虫数量。可以认为,LED对果实的产量和白利糖度具有积极的影响,但对果实的硬度没有积极的影响,多余的光不会促进红蜘蛛和蚜虫的生长。但是,为确保整个作物收获,应在10月1日以后增加一些热量,以提高LED照明的效率并确保总产量潜力的成熟。

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