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从测量的光合作用和呼吸速率预测不同光照水平下的生长速率。

Prediction of growth rate at different light levels from measured photosynthesis and respiration rates.

机构信息

Physics and Engineering Laboratory, D.S.I.R., Lower Hutt, New Zealand.

出版信息

Plant Physiol. 1966 Apr;41(4):559-66. doi: 10.1104/pp.41.4.559.

Abstract

Light integrators with a linear response are not suitable for measuring the light climates of plants because plants are not linear integrators. It should be possible to make a quantitative allowance for this nonlinearity by using the CO(2) uptake curve of the plant. To test this, we have subjected white clover plants to different levels of constant light, comparing the rate of increase of total dry matter with the net rate of uptake of CO(2) per day. Temperature, humidity, daylength and nutrient supply were kept constant. The growth rate calculated from CO(2) uptake agreed well with the observed rate over the light levels tested (3.7-88 w.m(-2), 0.4-0.7 micron: 1 w.m(-2) = 10(3) erg . sec(-1) cm(-2)). All plants put on weight over the few days of the experiment, even those placed at light levels below their compensation point. The plants adapted their respiration rates to be a constant proportion of their growth rates. Most of the adaptation occurred within 24 hours of the light change. The adaptation of respiration has implications for models of light/growth relations in plant communities, almost all of which assume that respiration is proportional to leaf area and independent of growth rate or light level. The only model which does not is that of de Wit, and this gave good agreement with our results.

摘要

线性响应的积分器不适合测量植物的光照环境,因为植物不是线性积分器。可以通过使用植物的 CO₂吸收曲线对这种非线性进行定量补偿。为此,我们将白三叶草植物置于不同水平的恒定光照下,比较总干物质的增长率与每天 CO₂净吸收速率。温度、湿度、日照长度和养分供应保持不变。从 CO₂吸收计算出的生长速率与所测试光照水平(3.7-88 w.m(-2),0.4-0.7 微米:1 w.m(-2) = 10(3) erg. sec(-1) cm(-2))的观察到的速率非常吻合。所有植物在实验的几天内都增加了体重,即使是那些处于补偿点以下光照水平的植物。植物将其呼吸速率适应为其生长速率的恒定比例。大部分适应发生在光照变化后的 24 小时内。呼吸的适应对植物群落中光照/生长关系的模型有影响,几乎所有这些模型都假设呼吸与叶面积成正比,与生长速率或光照水平无关。唯一不符合这一假设的模型是德维特的模型,该模型与我们的结果非常吻合。

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