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Multi-objective environment chamber system for studying plant responses to climate change

机译:研究植物对气候变化反应的多目标环境室系统

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摘要

This paper describes the technical information and performance of a new multi-objective chamber system enabling the control of environmental variables (e.g., temperature, CO2, air humidity, wind speed, and UV-B radiation) for understanding plant responses to climate change. Over a whole growing season, four different climate scenarios were evenly programmed into the system’s 16 chambers as ambient environment (AMB), elevated temperature (ET), elevated CO2 concentration (EC) and elevated temperature and CO2 concentration (ETC). Simultaneously, the chamber effects were assessed regarding the physiological responses and growth of a boreal perennial grass (reed canary grass, Phalaris arundinacea L.). During the growing season, the chamber system provided a wide variety of climatic conditions for air temperature (T a), relative humidity (RH) and CO2 concentration (C a) in the AMB chambers following outside conditions. The target temperature (+3.5°C) was achieved to a good degree in the ET and ETC chambers, being on average 3.3°C and 3.7°C higher than ambient conditions, respectively. The target concentration of CO2 (700 ppm) was also well achieved in the EC and ETC chambers, being on average 704 ppm and 703 ppm, respectively. The stable airflow condition inside all of the chambers provided a homogeneous distribution of gases and temperature. The decreases in RH and increases in vapour pressure deficit (VPD) in the elevated temperature chambers were also maintained at a low level. Chamber effects were observed, with some physiological and growth parameters of plants being significantly lower in the AMB chambers, compared to outside conditions. The plant growth was negatively affected by the reduced radiation inside the chambers.
机译:本文介绍了一种新的多目标室系统的技术信息和性能,该系统可控制环境变量(例如温度,CO2 ,空气湿度,风速和UV-B辐射),以了解植物对以下物质的反应气候变化。在整个生长季节中,将四个不同的气候情景均匀地编程到系统的16个腔室中,分别是环境(AMB),高温(ET),升高的CO2 (EC)以及升高的温度和CO2 浓度(ETC)。同时,评估了关于多年生北方多年生草(芦苇金丝雀草,Phalaris arundinacea L.)的生理反应和生长的室效应。在生长季节,箱式系统为AMB中的气温(T a ),相对湿度(RH)和CO2 浓度(C a )提供了多种气候条件遵循外界条件的密室。在ET和ETC室中达到了较高的目标温度(+ 3.5°C),分别比环境温度分别高3.3°C和3.7°C。在EC和ETC室中,也很好地达到了目标CO2(700 ppm),分别为704 ppm和703 ppm。所有室内的稳定气流条件提供了气体和温度的均匀分布。高温室中的RH降低和蒸气压亏缺(VPD)的增加也保持在较低水平。与室外条件相比,观察到了室效应,在AMB室中植物的一些生理和生长参数显着降低。室内的辐射减少对植物的生长有负面影响。

著录项

  • 来源
    《Photosynthetica》 |2012年第1期|p.24-34|共11页
  • 作者单位

    School of Forest Sciences, University of Eastern Finland, Yliopistokatu 7, P.O. Box 111, FI-80101, Joensuu, Finland;

    School of Forest Sciences, University of Eastern Finland, Yliopistokatu 7, P.O. Box 111, FI-80101, Joensuu, Finland;

    School of Forest Sciences, University of Eastern Finland, Yliopistokatu 7, P.O. Box 111, FI-80101, Joensuu, Finland;

    School of Forest Sciences, University of Eastern Finland, Yliopistokatu 7, P.O. Box 111, FI-80101, Joensuu, Finland;

    School of Forest Sciences, University of Eastern Finland, Yliopistokatu 7, P.O. Box 111, FI-80101, Joensuu, Finland;

    Department of Environmental Sciences, University of Eastern Finland, P.O. Box 1627, FI-70211, Kuopio, Finland;

    Mekrijärvi Research Station, University of Eastern Finland, FI-82900, Ilomantsi, Finland;

    Mekrijärvi Research Station, University of Eastern Finland, FI-82900, Ilomantsi, Finland;

    Mekrijärvi Resea;

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

    autocontrolled environment chamber; boreal grass; chamber effect; climate change;

    机译:自动控制环境室;北方草;室效应;气候变化;

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