将叶水力学特性、光合速率和旱生植物叶片寿命联系起来:对全球假说的检验。

Linking leaf hydraulic properties, photosynthetic rates, and leaf lifespan in xerophytic species: a test of global hypotheses.

机构信息

Key Laboratory of Mountain Ecological Restoration and Bioresource Utilization, Chengdu Institute of Biology, Chinese Academy of Sciences, Chengdu, China, 610041.

Department of Botany, University of Wisconsin-Madison, Madison, WI, USA, 53706.

出版信息

Am J Bot. 2018 Nov;105(11):1858-1868. doi: 10.1002/ajb2.1185.

Abstract

PREMISE OF THE STUDY

Leaf venation and its hierarchal traits are crucial to the hydraulic and mechanical properties of leaves, reflecting plant life-history strategies. However, there is an extremely limited understanding of how variation in leaf hydraulics affects the leaf economic spectrum (LES) or whether venation correlates more strongly with hydraulic conductance or biomechanical support among hierarchal orders.

METHODS

We examined correlations of leaf hydraulics, indicated by vein density, conduit diameter, and stomatal density with light-saturated photosynthetic rates, leaf lifespan (LLS), and leaf morpho-anatomical traits of 39 xerophytic species grown in a common garden.

KEY RESULTS

We found positive relationships between light-saturated, area-based photosynthetic rates, and vein densities, regardless of vein orders. Densities of leaf veins had positive correlations with stomatal density. We also found positive relationships between LLS and vein densities. Leaf area was negatively correlated with the density of major veins but not with minor veins. Most anatomical traits were not related to vein densities.

CONCLUSIONS

We developed a network diagram of the correlations among leaf hydraulics and leaf economics, which suggests functional trade-offs between hydraulic costs and lifetime carbon gain. Leaf hydraulics efficiency and carbon assimilation were coupled across species. Vein construction costs directly coordinated with the LLS. Our findings indicate that hierarchal orders of leaf veins did not differ in the strength of their correlations between hydraulic conductance and biomechanical support. These findings clarify how leaf hydraulics contributes to the LES and provide new insight into life-history strategies of these xerophytic species.

摘要

研究前提

叶片脉序及其层次特征对叶片的水力和机械性能至关重要,反映了植物的生活史策略。然而,人们对叶片水力特性的变化如何影响叶片经济谱(LES),或者脉序与水力导度或层次结构中的生物力学支撑之间的相关性更强,知之甚少。

方法

我们检验了叶片水力特性(由叶脉密度、导管直径和气孔密度表示)与 39 种旱生植物的光饱和光合速率、叶片寿命(LLS)和叶片形态解剖学特征之间的相关性,这些植物在一个共同的花园中生长。

主要结果

我们发现,无论叶脉顺序如何,光饱和、基于面积的光合速率与叶脉密度之间都存在正相关关系。叶脉密度与气孔密度呈正相关。我们还发现 LLS 与叶脉密度之间存在正相关关系。叶片面积与主脉密度呈负相关,但与侧脉密度无关。大多数解剖学特征与叶脉密度无关。

结论

我们绘制了叶片水力特性和叶片经济之间相关性的网络图,这表明了水力成本和寿命碳收益之间的功能权衡。叶片水力效率和碳同化在物种间是耦合的。叶脉结构成本与 LLS 直接协调。我们的研究结果表明,叶片脉序的层次结构在其与水力导度和生物力学支撑之间的相关性方面没有差异。这些发现阐明了叶片水力特性如何为 LES 做出贡献,并为这些旱生植物的生活史策略提供了新的见解。

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