Modeling temperature-modulated stem growth of cucumber plants (Cucumis sativus L.)

K. Kahlen, J. Zinkernagel, H. Stȕtzel
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引用次数: 1

Abstract

Variation in temperature has tremendous effects on plant growth and development. Below optimal conditions, a decrease in temperature can result in both, a reduced organ appearance rate and a reduced organ growth rate. For internode growth, the latter also depends on the light signal, which in turn might be altered by the temperature effect on the canopy. The aim of this work was to analyze the importance of both, temperature and light signals for a precise prediction of stem growth. Therefore, we (i) investigated the temperature effects on the main stem of greenhouse grown cucumber plants and (ii) used an extended functional-structural plant model of cucumber, L-Cucumber, to analyze the effects of temperature x light on cucumber stem growth. Data of a greenhouse experiment with 24, 20, 16 day temperature (°C) were used for model parameterization. Organ appearance on temperature sum basis rate was significantly reduced just in case of the lowest temperature condition, whereas average internode lengths decreased with temperature. The simulation scenarios highlighted the role of both characteristics on predicting final internode lengths (FILs) and showed how light and temperature both effect on FILs. However, the presented model concept needs to be properly evaluated. Future research should investigate the timing and duration of the temperature sensitive time window for internode growth.
黄瓜茎部温度调节生长的模拟研究
温度的变化对植物的生长发育有很大的影响。在最佳条件下,温度的降低会导致器官出现率的降低和器官生长速度的降低。对于节间生长,后者也取决于光信号,而光信号又可能被冠层上的温度效应所改变。这项工作的目的是分析温度和光信号对精确预测茎生长的重要性。因此,我们(i)研究了温度对温室栽培黄瓜植株主茎的影响,(ii)利用黄瓜的扩展功能-结构植物模型L-Cucumber来分析温度x光对黄瓜茎生长的影响。采用温度为24、20、16天的温室试验数据进行模型参数化。在温度和基率下,器官外观在最低温度条件下显著降低,而平均节间长随着温度的升高而降低。模拟场景强调了这两种特征在预测最终节间长度(FILs)方面的作用,并显示了光和温度对FILs的影响。然而,所提出的模型概念需要进行适当的评估。未来的研究应探讨节间生长的温度敏感时间窗的时间和持续时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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