Department of Chemistry and Bioscience, Aalborg University, Fredrik Bajers Vej 7H, 9220, Aalborg, Denmark.
Department of Earth and Environmental Sciences, Columbia University, Palisades, NY, 10964, USA.
New Phytol. 2022 Oct;236(1):71-85. doi: 10.1111/nph.18330. Epub 2022 Jul 12.
Leaf daytime respiration (leaf respiration in the light, R ) is often assumed to constitute a fixed fraction of leaf dark respiration (R ) (i.e. a fixed light inhibition of respiration (R )) and vary diurnally due to temperature fluctuations. These assumptions were tested by measuring R , R and the light inhibition of R in the field at a constant temperature using the Kok method. Measurements were conducted diurnally on 21 different species: 13 deciduous, four evergreen and four herbaceous from humid continental and humid subtropical climates. R and R showed significant diurnal variations and the diurnal pattern differed in trajectory and magnitude between climates, but not between plant functional types (PFTs). The light inhibition of R varied diurnally and differed between climates and in trajectory between PFTs. The results highlight the entrainment of leaf daytime respiration to the diurnal cycle and that time of day should be accounted for in studies seeking to examine the environmental and biological drivers of leaf daytime respiration.
叶片日间呼吸作用(有光条件下的叶片呼吸作用,R )通常被假定为构成叶片暗呼吸作用(R )的固定比例(即呼吸作用对光的固定抑制(R )),并因温度波动而呈现出昼夜变化。本研究通过 Kok 法在恒定温度下于野外对 R 、R 和 R 的光抑制作用进行测量,对这些假设进行了验证。研究在 21 种不同的物种上进行,包括 13 种落叶植物、4 种常绿植物和 4 种草本植物,分别来自湿润大陆性气候和湿润亚热带气候。R 和 R 呈现出显著的昼夜变化,且在不同气候条件下,昼夜模式在轨迹和幅度上存在差异,但在植物功能型(PFT)之间不存在差异。R 的光抑制作用也呈现出昼夜变化,且在不同气候条件和 PFT 之间的轨迹上存在差异。这些结果突出了叶片日间呼吸作用与昼夜周期的同步性,在研究寻求检验叶片日间呼吸作用的环境和生物学驱动因素时,应考虑一天中的时间因素。