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Responses of Rice Growth to Day and Night Temperature and Relative Air Humidity—Dry Matter Leaf Area and Partitioning

机译:水稻生长对昼夜温度和相对空气湿度的反应-干物质叶面积和分区

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摘要

Asymmetric changes of day and night temperature have already been observed because of Climate Change. However, knowledge on environmental conditions either during day or night serving as trigger for growth processes is scarce. In this study, one rice ( ) variety (IR64) was examined to assess the impact of varying temperatures and relative air humidities during day and night periods on biomass, leaf area, and dry matter partitioning between organs. Three different day and night temperature (30/20 °C, 25/25 °C, 20/30 °C) and relative air humidity (40/90%, 65/65%, 90/40%) regimes were established. The effect of relative air humidity on both plant dry matter and leaf area was larger than the effect of temperature, in particular low humidity had a strong negative impact during the night. With high day temperature, the shoot mass fraction increased, whereas the root mass fraction decreased. Specific leaf area increased at high night temperatures and led, along with the high leaf mass fraction at high night humidities, to higher growth rates. The results emphasize the importance of considering relative air humidity when focusing on plant responses to temperature, and strongly suggest that under asymmetric day and night temperature increases in the future, biomass partitioning rather than biomass itself will be affected.
机译:由于气候变化,已经观察到昼夜温度的不对称变化。但是,缺乏关于白天或夜晚环境条件的知识,这些条件可以触发生长过程。在这项研究中,研究了一种水稻(IR64),以评估昼夜不同温度和相对空气湿度对器官之间生物量,叶面积和干物质分配的影响。建立了三种不同的昼夜温度(30/20°C,25/25°C,20/30°C)和相对空气湿度(40/90%,65/65%,90/40%)的方案。相对空气湿度对植物干物质和叶面积的影响均大于温度的影响,特别是低湿度在夜间具有强烈的负面影响。在高温下,枝条的质量分数增加,而根的质量分数下降。在夜间高温下,比叶面积增加,并且在夜间湿度较高的情况下,导致叶片质量分数增加,导致较高的生长速率。结果强调了在着重于植物对温度的响应时考虑相对空气湿度的重要性,并强烈表明,在未来日夜温度不对称的情况下,生物量分配而不是生物量本身将受到影响。

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