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在模拟自然光条件下,甜菜叶片的碳同化和叶片水分状况。

Carbon Assimilation and Leaf Water Status in Sugar Beet Leaves during a Simulated Natural Light Regimen.

机构信息

Department of Biology, University of Dayton, Dayton, Ohio 45469-2320.

出版信息

Plant Physiol. 1991 Nov;97(3):1103-8. doi: 10.1104/pp.97.3.1103.

Abstract

Carbon assimilation and leaf water status were studied in sugar beet (Beta vulgaris L., Klein E-type multigerm) leaves during a light period in which illumination either increased rapidly to full irradiance or changed gradually in a sinusoidal manner as generally occurs during a natural day. A light regimen that simulated the light of a natural day was produced by adjusting irradiance with a neutral-density filter under the control of a computer. Under this light regimen, photosynthesis, transpiration, and stomatal conductance followed the irradiance pattern very closely and ribulose bisphosphate carboxylase was nearly fully activated. When illumination was increased rapidly at the beginning of a light period, transpiration also increased quickly, causing leaves to wilt to some extent. The activation state of ribulose bisphosphate carboxylase increased to only 52%, but ribulose bisphosphate level was nearly twice as high as during the simulated natural day. In spite of the differences in activation state and ribulose bisphosphate levels, photosynthesis rates were very similar under both regimens. Nevertheless, differences in parameters between leaves under the two irradiance regimens can affect how a plant responds to internal or external factors, and therefore, the rate at which irradiance increases at the beginning of a light period is an important consideration when interpreting data.

摘要

在光照期内,研究了糖甜菜(Beta vulgaris L.,Klein E 型多胚)叶片的碳同化和叶片水分状况。在光照期内,光照要么快速增加到全光照,要么以正弦方式逐渐变化,这通常是在自然日期间发生的。通过在计算机控制下使用中性密度滤光片调节辐照度,可以产生模拟自然日光照的光周期。在这种光周期下,光合作用、蒸腾作用和气孔导度非常紧密地遵循辐照度模式,核酮糖二磷酸羧化酶几乎完全被激活。当光照在光照期开始时快速增加时,蒸腾作用也会迅速增加,导致叶片在一定程度上萎蔫。核酮糖二磷酸羧化酶的激活状态仅增加到 52%,但核酮糖二磷酸的水平几乎是模拟自然日的两倍。尽管激活状态和核酮糖二磷酸水平存在差异,但两种处理下的光合作用速率非常相似。然而,两种辐照度处理下叶片参数的差异会影响植物对内部或外部因素的反应速度,因此,在解释数据时,光照期开始时辐照度增加的速度是一个重要的考虑因素。

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