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首页> 外文期刊>The New Phytologist >A worldwide analysis of within-canopy variations in leaf structural, chemical and physiological traits across plant functional types
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A worldwide analysis of within-canopy variations in leaf structural, chemical and physiological traits across plant functional types

机译:全世界范围内植物功能类型叶片结构,化学和生理性状的冠层内变化分析

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Extensive within-canopy light gradients importantly affect the photosynthetic productivity of leaves in different canopy positions and lead to light-dependent increases in foliage photosynthetic capacity per area (A(A)). However, the controls on A(A) variations by changes in underlying traits are poorly known. We constructed an unprecedented worldwide database including 831 within-canopy gradients with standardized light estimates for 304 species belonging to major vascular plant functional types, and analyzed within-canopy variations in 12 key foliage structural, chemical and physiological traits by quantitative separation of the contributions of different traits to photosynthetic acclimation. Although the light-dependent increase in A(A) is surprisingly similar in different plant functional types, they differ fundamentally in the share of the controls on A(A) by constituent traits. Species with high rates of canopy development and leaf turnover, exhibiting highly dynamic light environments, actively change A(A) by nitrogen reallocation among and partitioning within leaves. By contrast, species with slow leaf turnover exhibit a passive A(A) acclimation response, primarily determined by the acclimation of leaf structure to growth light. This review emphasizes that different combinations of traits are responsible for within-canopy photosynthetic acclimation in different plant functional types, and solves an old enigma of the role of mass- vs area-based traits in vegetation acclimation.
机译:冠层内广泛的光梯度会严重影响不同冠层位置的叶片的光合生产力,并导致单位面积叶片光合能力的光依赖性增加(A(A))。但是,通过基本特征的变化对A(A)变异的控制知之甚少。我们建立了一个前所未有的全球数据库,其中包括831种冠层内部梯度,并对属于主要维管植物功能类型的304个物种进行了标准化的光照估算,并通过定量分离了12种主要叶片结构,化学和生理性状对冠层内部的变化进行了分析。光合适应的不同特征尽管在不同的植物功能类型中,A(A)的光依赖性增加令人惊讶地相似,但它们在构成特征上对A(A)的控制份额上却根本不同。具有较高的冠层发育和叶片周转率,具有高动态光照环境的物种通过氮在叶片中的重新分配和在叶片中的分配而主动改变A(A)。相比之下,叶片周转缓慢的物种表现出被动的A(A)适应性响应,这主要取决于叶片结构对生长光的适应性。这篇综述强调,不同性状的组合负责不同植物功能类型的冠层内部光合适应,并解决了基于质量与面积的性状在植被适应中作用的古老谜团。

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