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Metabolism and growth in Arabidopsis depend on the daytime temperature but are temperature-compensated against cool nights.

机译:拟南芥的代谢和生长取决于白天的温度,但可以补偿夜晚的温度。

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Diurnal cycles provide a tractable system to study the response of metabolism and growth to fluctuating temperatures. We reasoned that the response to daytime and night temperature may vary; while daytime temperature affects photosynthesis, night temperature affects use of carbon that was accumulated in the light. Three Arabidopsis thaliana accessions were grown in thermocycles under carbon-limiting conditions with different daytime or night temperatures (12 to 24 degrees C) and analyzed for biomass, photosynthesis, respiration, enzyme activities, protein levels, and metabolite levels. The data were used to model carbon allocation and growth rates in the light and dark. Low daytime temperature led to an inhibition of photosynthesis and an even larger inhibition of growth. The inhibition of photosynthesis was partly ameliorated by a general increase in protein content. Low night temperature had no effect on protein content, starch turnover, or growth. In a warm night, there is excess capacity for carbon use. We propose that use of this capacity is restricted by feedback inhibition, which is relaxed at lower night temperature, thus buffering growth against fluctuations in night temperature. As examples, the rate of starch degradation is completely temperature compensated against even sudden changes in temperature, and polysome loading increases when the night temperature is decreased.
机译:昼夜周期为研究代谢和生长对温度波动的响应提供了一个易于处理的系统。我们认为对白天和黑夜温度的响应可能会有所不同;白天温度影响光合作用,而夜间温度影响光中积累的碳的使用。将三种拟南芥种在热循环仪中在限制碳的条件下,以不同的白天或夜晚温度(12至24摄氏度)生长,并分析其生物量,光合作用,呼吸作用,酶活性,蛋白质水平和代谢产物水平。数据用于模拟明暗环境中的碳分配和增长率。白天的低温会导致光合作用受到抑制,甚至更大程度地抑制生长。蛋白质含量的普遍提高可部分改善对光合作用的抑制作用。夜间温度低对蛋白质含量,淀粉更新或生长没有影响。在温暖的夜晚,碳使用量会过多。我们建议使用此容量受反馈抑制的限制,该反馈抑制在较低的夜间温度下放松,从而缓冲了生长,防止夜间温度波动。例如,淀粉的降解速率完全被温度补偿,即使温度突然变化,当夜间温度降低时,多核糖体的负载也会增加。

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