Song Yuhan, Jin Guangze
Center for Ecological Research, Northeast Forestry University, Harbin 150040, China.
Key Laboratory of Sustainable Forest Ecosystem Management-Ministry of Education, Northeast Forestry University, Harbin 150040, China.
Plants (Basel). 2023 Jan 23;12(3):523. doi: 10.3390/plants12030523.
(1) Background: leaf structure traits are closely related to leaf photosynthesis, reflecting the ability of trees to obtain external resources in the process of growth. (2) Methods: We studied the morphological, chemical, anatomical, stomatal traits and maximum net photosynthetic rate of six broad-leaf species in northern temperate mixed broad-leaved Korean pine () forest. (3) Aim: To investigate whether there are differences in leaf structural traits of trees with different shade tolerances and different sizes and the effects of these differences on leaf photosynthetic capacity. (4) Results: the effects of leaf structure traits on leaf photosynthesis were different among trees with different shade tolerances or different sizes. Under the condition of light saturation, the net photosynthetic rate, nitrogen use efficiency, phosphorus use efficiency and stomatal conductance of shade-intolerant trees or small trees were higher than those of shade-tolerant trees or large trees. (5) Conclusions: the shade tolerance of tree species or the size of trees affect the traits of leaf structure and indirectly affect the photosynthetic ability of plants. When constructing the leaf trait-photosynthesis model, the shade tolerance and tree size of tree species should be taken into account.
(1) 背景:叶片结构性状与叶片光合作用密切相关,反映了树木在生长过程中获取外界资源的能力。(2) 方法:我们研究了北温带阔叶红松林六种阔叶树种的形态、化学、解剖、气孔性状及最大净光合速率。(3) 目的:探究不同耐荫性和不同大小树木的叶片结构性状是否存在差异以及这些差异对叶片光合能力的影响。(4) 结果:不同耐荫性或不同大小的树木中,叶片结构性状对叶片光合作用的影响不同。在光饱和条件下,不耐荫树木或小树的净光合速率、氮利用效率、磷利用效率和气孔导度高于耐荫树木或大树。(5) 结论:树种的耐荫性或树木大小影响叶片结构性状,并间接影响植物的光合能力。构建叶片性状-光合作用模型时,应考虑树种的耐荫性和树木大小。