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Reaching Natural Growth: The Significance of Light and Temperature Fluctuations in Plant Performance in Indoor Growth Facilities

机译:达到自然增长:室内增长设施中植物性能中的光和温度波动的意义

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摘要

Recommendations for near-natural plant growth under indoor conditions have been described without considering environmental fluctuations, which might have important consequences for researchers and plant producers when comparing results from indoor facilities with natural ecosystems or production. Previous authors proposed that differences in temperature, light quantity, and the lack of their variation are sources of deviations between indoor and outdoor experiments. Here, we investigated the effect of fluctuating light, temperature, and humidity in an indoor environment on plant performance. Seven plant species from different functional plant types were grown outdoors during summer and spring. The same species were then grown in indoor growth chambers under different scenarios of climate complexity in terms of fluctuations of temperature, air humidity, and light: (1) fixed night and day conditions, (2) daily sinusoidal changes, and (3) variable conditions tracking the climate records from the field trials. In each scenario, the average of the environmental variables was the same as in the respective field trial. Productivity-, gas exchange-, and leaf pigment-traits were measured in all plants at the end of the experiments. The plant trait responses were highly dependent on species and treatment, but general trends were observed. The variable condition yielded lower biomass compared to the fixed and sinusoidal conditions, together with a higher specific leaf area and increased chlorophyll concentrations. A principal component analysis (PCA) across all plant traits in response to climatic conditions suggested that at least a sinusoidal fluctuation is recommended for a more natural-like plant performance in indoor growth facilities. However, prevailing significant differences for several traits between field- and indoor-grown plants even under variable climates indicate that additional factors other than those controllable in standard phytotrons (e.g., wind speed and direction, leaf and soil temperature) can still significantly bias plant performance in indoor facilities.
机译:在不考虑环境波动的情况下,已经描述了室内条件下的近乎天然植物增长的建议,这可能对研究人员和植物生产者进行重要后果,当时室内设施与天然生态系统或生产的结果相比。以前的作者提出了温度,光量和缺乏变化的差异是室内和室外实验之间的偏差来源。在这里,我们研究了在室内环境中波动,温度和湿度在植物性能下的影响。在夏季和春季期间,来自不同功能植物类型的七种植物种类在户外生长。在温度,空气湿度和光的波动方面,在气候复杂性的不同场景下,在室内生长室中生长相同的物种:(1)固定夜晚和日情况,(2)每日正弦变化,(3)变量条件跟踪现场试验的气候记录。在每个场景中,环境变量的平均值与相应的实地试验中的平均值相同。在实验结束时的所有植物中测量了生产率 - ,气体交换和叶片颜料 - 特征。植物特征反应高度依赖于物种和治疗,但观察到了一般趋势。与固定和正弦状况相比,可变条件与固定和正弦状况相比,与固定和正弦状况一起,以及更高的特异性叶面积和增加的叶绿素浓度。响应于气候条件的所有植物性状的主要成分分析(PCA)表明,建议至少在室内增长设施中更自然的植物性能进行正弦波动。然而,即使在可变气候下,现场和室内生长植物之间的若干特征的差异显着差异表明除了标准植物四(例如风速和方向,叶片和土壤温度)中可控的额外因素仍可显着偏置植物性能在室内设施。

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