Niinemets Ulo, Portsmuth Angelika, Tobias Mari
Institute of Environmental and Agricultural Sciences, Estonian University of Life Sciences, Kreutzwaldi 64, Tartu 51014, Estonia.
New Phytol. 2006;171(1):91-104. doi: 10.1111/j.1469-8137.2006.01741.x.
The implications of extensive variation in leaf size for biomass distribution between physiological and support tissues and for overall leaf physiological activity are poorly understood. Here, we tested the hypotheses that increases in leaf size result in enhanced whole-plant support investments, especially in compound-leaved species, and that accumulation of support tissues reduces average leaf nitrogen (N) content per unit dry mass (N(M)), a proxy for photosynthetic capacity. Leaf biomass partitioning among the lamina, mid-rib and petiole, and whole-plant investments in leaf support (within-leaf and stem) were studied in 33 simple-leaved and 11 compound-leaved species. Support investments in mid-ribs and petioles increased with leaf size similarly in simple leaves and leaflets of compound leaves, but the overall support mass fraction within leaves was larger in compound-leaved species as a result of prominent rachises. Within-leaf and within-plant support mass investments were negatively correlated. Therefore, the total plant support fraction was independent of leaf size and lamina dissection. Because of the lower N(M) of support biomass, the difference in N(M) between the entire leaf and the photosynthetic lamina increased with leaf size. We conclude that whole-plant support costs are weakly size-dependent, but accumulation of support structures within the leaf decreases whole-leaf average N(M), potentially reducing the integrated photosynthetic activity of larger leaves.
叶片大小的广泛变化对生理组织和支撑组织之间生物量分配以及叶片整体生理活动的影响尚不清楚。在此,我们检验了以下假设:叶片大小的增加会导致整株植物支撑投入增加,尤其是在复叶物种中;支撑组织的积累会降低单位干质量的平均叶片氮(N)含量(N(M)),这是光合能力的一个指标。我们研究了33种单叶物种和11种复叶物种中叶片生物量在叶片、中脉和叶柄之间的分配,以及整株植物在叶片支撑(叶内和茎)方面的投入。单叶和复叶小叶中,对中脉和叶柄的支撑投入随叶片大小的增加而类似地增加,但由于显著的叶轴,复叶物种中叶内的总支撑质量分数更大。叶内和植株内的支撑质量投入呈负相关。因此,整株植物的支撑比例与叶片大小和叶片解剖结构无关。由于支撑生物量的N(M)较低,整个叶片与光合叶片之间的N(M)差异随叶片大小增加。我们得出结论,整株植物的支撑成本对大小的依赖性较弱,但叶内支撑结构的积累会降低整叶平均N(M),可能会降低较大叶片的综合光合活性。