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首页> 外文期刊>Current Biology: CB >Repeated Origin of Three-Dimensional Leaf Venation Releases Constraints on the Evolution of Succulence in Plants
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Repeated Origin of Three-Dimensional Leaf Venation Releases Constraints on the Evolution of Succulence in Plants

机译:三维叶脉的重复起源释放了对植物肉质进化的限制

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摘要

Succulent water storage is a prominent feature among plants adapted to arid zones, but we know little about how succulence evolves and how it is integrated into organs already tasked with multiple functions. Increased volume in succulent leaves, for example, may result in longer transport distances between veins and the, cells that they supply, which in turn could negatively impact photosynthesis [1-4]. We quantified water storage [5] in group of 83 closely related species to examine the evolutionary dynamics of succulence and leaf venation. In most leaves, vein density decreased with increasing succulence, resulting in significant increases in the path length of water from veins to evaporative surfaces. The most succulent leaves, however, had a distinct three-dimensional (3D) venation pattern, which evolved 11-12 times within this small lineage, likely via multiple developmental pathways. 3D venation "resets" internal leaf distances, maintaining moderate vein density in extremely succulent tissues and suggesting that the evolution of extreme succulence is constrained by the need to maintain an efficient leaf hydraulic system. The repeated evolution of 3D venation decouples leaf water storage from hydraulic path length, facilitating the evolutionary exploration of novel phenotypic space.
机译:在适应干旱地区的植物中,多肉植物的贮水是一个突出的特征,但是我们对多肉植物如何进化以及如何整合到已经具有多种功能的器官中却知之甚少。例如,肉质叶体积的增加可能会导致静脉与它们所供应的细胞之间的运输距离变长,进而对光合作用产生负面影响[1-4]。我们对83个密切相关物种的组中的储水量进行了量化[5],以研究肉质和叶脉的进化动态。在大多数叶片中,肉质的密度随肉质的增加而降低,从而导致水从静脉到蒸发表面的路径长度显着增加。然而,最肉质的叶子具有独特的三维(3D)脉纹模式,在这种小谱系中进化了11-12次,可能是通过多种发育途径。 3D脉络“重置”内部叶片的距离,从而在极多汁的组织中保持适度的静脉密度,这表明极度多汁的进化受到维持高效叶片液压系统的需求的限制。 3D脉络的反复演变使叶片的水分存储与水力路径长度脱钩,从而促进了对新型表型空间的进化探索。

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