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Effects of Specific UV-Blocking on Plant Growth and Insect Control

机译:特异性紫外线阻断对植物生长和昆虫控制的影响

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Cucumber (Cucumis sativus L. 'Hiryu') and tomato (Lycopersicon esculentum L. 'Momotaro') plants were grown under four different polyolefin film greenhouses (0.15 (μm thickness) where UV wavelengths shorter than 400, 360, 350 and 340 nm, respectively, were blocked (specific UV blocking). A standard polyolefin film greenhouse was used as control. Approximately 50% of UV energy was blocked under the control greenhouse compared with that irradiating plants outside the greenhouse. Under partial UV blocking conditions, however, more than 70% of UV energy was blocked. The plant height of the seedlings did not differ among treatments, irrespective of crop. Nine different insects were captured on the adhesive films. Among these, fly, rice plant hopper, whitefly and aphid were mainly captured on yellow adhesive films, while hoverfly was mainly captured on blue adhesive films. Effects of specific UV-blocking films were the most obvious for aphid control, and the cumulative number of captured aphids decreased greatly as the rate of UV-blocking increased. Effect of specific UV-blocking plastic films was also detected on aphid infestation on the cucumber leaves. Under standard plastic film, the infestation rate increased rapidly from 24 August to 14 September, reaching 54% on 21 September, while it was significantly inhibited under specific UV-blocking conditions and the rate decreased gradually as the UV-blocking rate increased. Our results showed that specific UV-blocking plastic films are commercially acceptable for promoting Integrated Pest Management (IPM) system especially for aphid control without harming plant growth.
机译:黄瓜(Cucumis Sativus L.'Hiryu')和番茄(Lycopersicon Esculentum L.'Momotaro')植物在四种不同的聚烯烃膜温室(0.15(μm),其中UV波长短于400,360,350和340nm,分别被封闭(特定的UV阻塞)。标准聚烯烃薄膜温室用作对照。与温室外的辐照植物相比,约50%的UV能量被控制在控制温室下。在部分紫外线阻挡条件下,更多超过70%的UV能量被阻塞。无论作物如何,治疗的植物高度都没有不同。粘合剂薄膜上捕获了九种不同的昆虫。其中,主要捕获了苍蝇,水稻植物料斗,粉虱和蚜虫。在黄色粘合薄膜上,而Hoverfly主要捕获在蓝色粘合膜上。特异性紫外线膜的作用对于蚜虫控制是最明显的,以及捕获APHI的累积数量随着紫外线阻滞的速率增加,DS大大降低。在黄瓜叶上的蚜虫侵袭上也检测到特异性UV阻断塑料膜的效果。在标准塑料薄膜下,侵扰率从8月24日至9月14日迅速增加,9月21日达到54%,而在特定的紫外线阻断条件下显着抑制,随着紫外线阻断率的增加,速率逐渐降低。我们的研究结果表明,特定的紫外线封闭塑料薄膜在商业上可接受,用于促进综合虫害(IPM)系统,特别是对于蚜虫控制而不损害植物生长。

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