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首页> 外文期刊>Acta Horticulturae >Dynamic temperature integration with temperature drop improved the response of greenhouse tomato to long photoperiod of supplemental lighting
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Dynamic temperature integration with temperature drop improved the response of greenhouse tomato to long photoperiod of supplemental lighting

机译:动态温度集成温度降低改善了温室番茄对辅助照明的长光电池的响应

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摘要

It is well known that long photoperiods (>17 h) of supplemental lighting cause photo-injury such as leaf chlorosis and necrotic spotting in greenhouse tomatoes. This photo-injury has limited the application of long photoperiod and the yield increase by supplemental lighting in year-round greenhouse tomato production. In our previous study, we have found that dynamic temperature integration (TI) with temperature drop can improve early fruit yield in tomato production because it promoted the translocation of photo-assimilates from leaf to fruit. This promotion of photo-assimilate translocation has the potential to help tomato plants to reduce the photo-injury and improve the response to long photoperiods of supplemental lighting. Therefore, we conducted this study with the aim to investigate the interactions between photoperiods and dynamic TI with temperature drop for improving the response of tomatoes to long photoperiods of supplemental lighting. The study was conducted from Oct. 2013 to Mar. 2014in 8 greenhouse compartments, each with 50 m2 of growing area. Two photoperiods (17 h-control and 20 h-long photoperiod) and two temperature integration (TI) strategies (Control Tl-no temperature drop and Dynamic TI with temperature drop to 13.5°C for3 h at the end of photoperiod) were applied in the 8 compartments (2 complete replications). The dynamic TI had the same 24-h average temperature as the control TI; the low temperature during the drop period was compensated with higher temperature in other periods over a day (24-h period). The dynamic TI significantly reduced photo-injury and increased fruit yield and size at the long photoperiod (20-h). Therefore, dynamic temperature integration regime with a temperature drop can be used to improve theresponse of greenhouse tomatoes to long photoperiods of supplemental lighting in year-round production.
机译:众所周知,长光周期(> 17小时)的补充照明会导致光氯阳和温室西红柿中的叶氯仑和坏死斑点。这款照片损伤限制了长光周期的应用,并在全年温室番茄生产中通过补充照明的产量增加。在我们以前的研究中,我们发现动态温度集成(TI)具有温度降低,可以提高番茄生产中的早期果实产量,因为它促进了从叶片到果实的光吸收的易位。这种促进照片同化易位具有帮助番茄植物来减少光损伤,并改善对补充照明的长光周期的响应。因此,我们进行了本研究,目的是研究光周期和动态Ti之间的相互作用,以改善西红柿对辅助照明的长光周期的响应。该研究是从2013年10月到2014年3月的4月8日温室隔间进行的,每个家庭都有50平方米的成长区域。施加了两种光电细胞(17 H-COONT和20 H-LONOW PHOTOPERIOD)和两个温度整合(TI)策略(控制TL-NO温度下降和温度下降至13.5℃的动态TI) 8个隔间(2个完整复制)。动态Ti具有与控制TI相同的24小时平均温度;在一天(24-H周期)的其他时段中,下降期间的低温补偿了较高的温度。动态Ti显着降低了光损伤和长度光周期(20-H)的果实产量和尺寸增加。因此,具有温度下降的动态温度整合方案可用于改善温室西红柿的响应,在全年生产中为辅助照明的长光周期。

著录项

  • 来源
    《Acta Horticulturae》 |2017年第2期|共7页
  • 作者单位

    Greenhouse and Processing Crops Research Centre Harrow Ontario Canada;

    Greenhouse and Processing Crops Research Centre Harrow Ontario Canada;

    Department of Electrical and Computer Engineering University of Windsor Windsor Ontario Canada;

    Greenhouse and Processing Crops Research Centre Harrow Ontario Canada;

    Greenhouse and Processing Crops Research Centre Harrow Ontario Canada;

    0ntario Ministry of Agriculture Food and Rural Affairs Harrow Ontario Canada;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 园艺;
  • 关键词

    Solarium lycopersicum; photo-injury; yield; lighting; high pressure sodium lamp;

    机译:日光浴杆菌;照片损伤;产量;照明;高压钠灯;

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