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进入另一个维度:链形植物藻类如何获得形态复杂性。

Into another dimension: how streptophyte algae gained morphological complexity.

作者信息

Buschmann Henrik

机构信息

University of Osnabrück, Division of Botany, Osnabrück, Germany.

出版信息

J Exp Bot. 2020 Jun 11;71(11):3279-3286. doi: 10.1093/jxb/eraa181.

Abstract

Land plants with elaborated three-dimensional (3D) body plans have evolved from streptophyte algae. The streptophyte algae are known to exhibit varying degrees of morphological complexity, ranging from single-celled flagellates to branched macrophytic forms exhibiting tissue-like organization. In this review, I discuss mechanisms by which, during evolution, filamentous algae may have gained 2D and eventually 3D body plans. There are, in principle, two mechanisms by which an additional dimension may be added to an existing algal filament or cell layer: first, by tip growth-mediated branching. An example of this mechanism is the emergence and polar expansion of root hairs from land plants. The second possibility is the rotation of the cell division plane. In this case, the plane of the forthcoming cell division is rotated within the parental cell wall. This type of mechanism corresponds to the formative cell division seen in meristems of land plants. This literature review shows that of the extant streptophyte algae, the Charophyceae and Coleochaetophyceae are capable of performing both mechanisms, while the Zygnematophyceae (the actual sister to land plants) show tip growth-based branching only. I finally discuss how apical cells with two or three cutting faces, as found in mosses, may have evolved from algal ancestors.

摘要

具有精细三维(3D)身体结构的陆地植物是从链形植物藻类进化而来的。已知链形植物藻类表现出不同程度的形态复杂性,从单细胞鞭毛虫到具有类似组织结构的分支大型植物形态。在这篇综述中,我讨论了丝状藻类在进化过程中可能获得二维并最终获得三维身体结构的机制。原则上,有两种机制可以在现有的藻丝或细胞层上增加一个维度:第一,通过顶端生长介导的分支。这种机制的一个例子是陆地植物根毛的出现和极性扩展。第二种可能性是细胞分裂平面的旋转。在这种情况下,即将进行的细胞分裂平面在亲代细胞壁内旋转。这种机制类型与陆地植物分生组织中所见的形态发生细胞分裂相对应。这篇文献综述表明,在现存的链形植物藻类中,轮藻纲和鞘毛藻纲能够执行这两种机制,而双星藻纲(陆地植物的实际姐妹类群)仅表现出基于顶端生长的分支。我最后讨论了苔藓中发现的具有两个或三个切割面的顶端细胞可能是如何从藻类祖先进化而来的。

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