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生态学杂志 ›› 2024, Vol. 43 ›› Issue (12): 3797-3805.doi: 10.13292/j.1000-4890.202412.022

• 综合评述 • 上一篇    下一篇

基于植物氧同位素比率的叶片温度研究进展

黄穗敏1,汪旭明1,2*,李蕾1,巩晓颖1,2
  

  1. 1福建师范大学地理科学学院, 湿润亚热带生态-地理过程教育部重点实验室, 福州 350117; 2福建省植物生理生态重点实验室, 福州 350117)

  • 出版日期:2024-12-10 发布日期:2024-12-10

A review on leaf temperature based on oxygen isotope ratios of plants.

HUANG Suimin1, WANG Xuming1,2*, LI Lei1, GONG Xiaoying1,2   

  1. (1School of Geographical Sciences, Key Laboratory for Humid Subtropical Eco-geographical Processes of Ministry of Education, Fujian Normal University, Fuzhou 350117, China; 2Key Laboratory for Plant Eco-physiology of Fujian Province, Fuzhou 350117, China).

  • Online:2024-12-10 Published:2024-12-10

摘要: 叶片温度是影响植物生产力和物质循环的关键因子,是光合作用和呼吸作用模型以及地球系统模型的重要参数。叶片通过气孔调节和形态学性状改变等实现叶温调节,能保持相对适宜光合作用的叶温并避免叶片受到高温胁迫的伤害。基于植物纤维素18O分馏值(Δ18OCel)的光合加权叶温(TL-photo)整合了光合作用实际发生时的叶温,TL-photo的稳定性表征植物是否进行了有效的叶温调节,然而TL-photo与气温的关系存在较大不确定性。文章阐述了叶温调节的生理生态意义和调节机制,介绍了基于Δ18OCel估算TL-photo模型的理论基础、模型推导、测算方法及结果的不确定性,最后指出提高Δ18OCel-TL-photo模型精准度及其在叶片-植株-生态系统尺度TL-photo研究的适用性,是未来需加强研究的主要方向。


关键词: 叶片温度调节, 光合加权叶温, 叶温内稳态, 纤维素18O, 植物功能性状

Abstract: As a key factor influencing plant productivity and material cycling, leaf temperature is an important parameter in photosynthesis and respiration models and earth system models. Leaf controls temperature by regulating stomata and morphological traits, consequently maintains leaf temperature suitable for photosynthesis and prevents leaf from being damaged by high-temperature stress. Photosynthesis-weighted leaf temperature (TL-photo) estimated by the fractionation of plant cellulose (Δ18OCel) integrates leaf temperature during photosynthesis. The stability of TL-photo indicates the effectiveness of plants in leaf thermoregulation, but the relationship between TL-photo and air temperature remains uncertain. In this review, we discuss the eco-physiological significance and mechanism of leaf thermoregulation, with emphasis on the theoretical basis, model derivation, and uncertainty of measurement methods and results of TL-photo estimating from Δ18OCel. We put forward that improving the accuracy of Δ18OCel TL-photo model and its applicability in studying TL-photo at different scales of leaf-plant-ecosystem should be the main direction of further research.


Key words: leaf thermoregulation, photosynthesis-weighted leaf temperature, leaf temperature homeostasis, cellulose 18O, plant functional trait