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C3 和 C4 禾本科植物叶片细胞和组织解剖结构及光合速率的异速生长关系。

Allometries of cell and tissue anatomy and photosynthetic rate across leaves of C and C grasses.

机构信息

Department of Ecology and Evolutionary Biology, University of California Los Angeles, Los Angeles, California, USA.

Lancaster Environment Centre, Lancaster University, Lancaster, UK.

出版信息

Plant Cell Environ. 2024 Jan;47(1):156-173. doi: 10.1111/pce.14741. Epub 2023 Oct 24.

Abstract

Allometric relationships among the dimensions of leaves and their cells hold across diverse eudicotyledons, but have remained untested in the leaves of grasses. We hypothesised that geometric (proportional) allometries of cell sizes across tissues and of leaf dimensions would arise due to the coordination of cell development and that of cell functions such as water, nutrient and energy transport, and that cell sizes across tissues would be associated with light-saturated photosynthetic rate. We tested predictions across 27 globally distributed C and C grass species grown in a common garden. We found positive relationships among average cell sizes within and across tissues, and of cell sizes with leaf dimensions. Grass leaf anatomical allometries were similar to those of eudicots, with exceptions consistent with the fewer cell layers and narrower form of grass leaves, and the specialised roles of epidermis and bundle sheath in storage and leaf movement. Across species, mean cell sizes in each tissue were associated with light-saturated photosynthetic rate per leaf mass, supporting the functional coordination of cell sizes. These findings highlight the generality of evolutionary allometries within the grass lineage and their interlinkage with coordinated development and function.

摘要

叶片及其细胞的维度之间的异速生长关系在多种真双子叶植物中都成立,但在禾本科植物的叶片中尚未得到验证。我们假设,由于细胞发育和细胞功能(如水分、养分和能量运输)的协调,细胞大小的几何(比例)异速生长以及叶片维度会出现,并且细胞大小与组织之间的光饱和光合速率有关。我们在一个共同的花园中对来自全球的 27 种 C 和 C 禾本科植物进行了测试,检验了这些预测。我们发现,组织内和组织间的平均细胞大小之间存在正相关关系,而且细胞大小与叶片维度也存在正相关关系。禾本科植物的叶片解剖异速生长与真双子叶植物相似,但也存在一些例外,这与禾本科植物叶片的细胞层数较少、形态较窄以及表皮和束鞘在储存和叶片运动中的特殊作用相一致。在物种间,每个组织中的平均细胞大小与单位叶片质量的光饱和光合速率有关,这支持了细胞大小的功能协调性。这些发现突出了进化异速生长在禾本科植物中的普遍性,以及它们与协调的发育和功能之间的相互联系。

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