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不同光照和温度下叶片的光合特性:对现有假说的扩展。

Photosynthetic characteristics of leaves developed at different irradiances and temperatures: an extension of the current hypothesis.

机构信息

Light and Plant Growth Laboratory, Plant Physiology Institute, United States Department of Agriculture, Agricultural Research Service, 20705, Beltsville, MD, USA.

出版信息

Photosynth Res. 1983 Jun;4(2):87-97. doi: 10.1007/BF00052370.

Abstract

Photosynthetic characteristics at high measurement irradiance were analyzed for single leaves of two C3 and one C4 species grown under twenty one combinations of irradiance level, irradiance duration, and air temperature in order to test the idea that photosynthetic characteristics developed by leaves in different environments are controlled by the daily amount of photosynthesis. Photosynthetic rates per unit area and mesophyll conductances at 25°C and air levels of CO2 and O2, and parameters for two photosynthesis models were used to characterize the photosynthetic properties of the leaves. Leaves with highest values of the photosynthetic parameters for each species were often developed in environments with irradiance levels below saturation for photosynthesis, and with only 12 hours of iradiance per day. Lower air temperature during growth increased the photosynthetic characteristics for a given irradiance regime. Photosynthetic characteristics had higher correlation coefficients with daily photosynthesis of mature leaves divided by 24-hour leaf elongation rates of young leaves, than with daily photosynthesis alone, indicating that photosynthetic characteristics may be related to a balance between photosynthesis and leaf expansion.

摘要

为了检验叶片在不同环境中形成的光合作用特征受每日光合作用量控制的假说,我们对在 21 种光强水平、光持续时间和空气温度组合下生长的两种 C3 植物和一种 C4 植物的单个叶片进行了高光强下的光合特性分析。利用单位面积光合速率和 25°C 时的叶肉导度以及 CO2 和 O2 空气水平,以及两个光合作用模型的参数来描述叶片的光合作用特性。对于每个物种,具有最高光合作用参数值的叶片通常是在光饱和以下且每天只有 12 小时光照的环境中形成的。生长期间较低的空气温度会增加在给定光照条件下的光合作用特性。光合作用特性与成熟叶片的每日光合作用除以幼叶的 24 小时叶片伸长率的比值的相关系数高于每日光合作用的相关系数,这表明光合作用特性可能与光合作用和叶片扩展之间的平衡有关。

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