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Photosynthetic responses of four tropical tree species grown under gap and understorey conditions in a semi-deciduous forest

机译:半落叶林在间隙和林下条件下生长的四种热带树种的光合作用响应

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Leaf CO2 assimilation (A) as a function of photosynthetic photon flux density (Q) or intercellular CO2 concentration (Ci) and chlorophyll fluorescence measurements were carried out on four tropical woody species growing in forest gap and understorey (Bauhinia forficata Link. and Guazuma ulmifolia Lam. as pioneers, and Hymenaea courbaril L. and Esenbeckia leiocarpa Engl. as non-pioneers). Chlorophyll fluorescence indicated similar acclimation capacities of photochemical apparatus to contrasting light environments irrespective to plant species. Maximum CO2 assimilation and quantum yield derived from A/Q curves indicated higher photosynthetic capacity in pioneer than in non-pioneer species in forest gap. However, the differences among species did not show a straightforward relation with their successional status regarding data derived from A/Q curves under understorey conditions. Both successional groups are able to sustain positive carbon balance under contrasting natural light availabilities, modifying photochemical and biochemical photosynthetic traits with similar phenotypic plasticity capacity.
机译:对在森林间隙和林下生长的四种热带木本植物(紫荆花(Bauhinia forficata Link。)和矮小瓜(Guazuma ulmifolia))进行叶片CO 2同化(A)作为光合光子通量密度(Q)或细胞间CO 2浓度(Ci)和叶绿素荧光测量的函数。 Lam。是先驱者,Hymenaea courbaril L.和Esenbeckia leiocarpa Engl。是非先驱者)。叶绿素荧光表明,无论植物种类如何,光化学装置对对比光环境的适应能力均相似。由A / Q曲线得出的最大CO2同化量和量子产率表明,林隙中先驱者的光合能力高于非先驱者。然而,就底层条件下的A / Q曲线得出的数据而言,物种间的差异与其继承状态没有直接关系。两个连续的小组都能够在自然光利用率不同的情况下维持正碳平衡,以相似的表型可塑性改变光化学和生物化学的光合特性。

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