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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Bilaterally symmetric axes with rhizoids composed the rooting structure of the common ancestor of vascular plants
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Bilaterally symmetric axes with rhizoids composed the rooting structure of the common ancestor of vascular plants

机译:具有根茎的双侧对称轴组成了血管植物的共同祖先的生根结构

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There are two general types of rooting systems in extant land plants: gametophyte rhizoids and sporophyte root axes. These structures carry out the rooting function in the free-living stage of almost all land plant gametophytes and sporophytes, respectively. Extant vascular plants develop a dominant, free-living sporophyte on which roots form, with the exception of a small number of taxa that have secondarily lost roots. However, fossil evidence indicates that early vascular plants did not develop sporophyte roots. We propose that the common ancestor of vascular plants developed a unique rooting system-rhizoidal sporophyte axes. Here we present a synthesis and reinterpretation of the rootless sporophytes of Horneophyton lignieri, Aglaophyton majus, Rhynia gwynne-vaughanii and Nothia aphylla preserved in the Rhynie chert. We show that the sporophyte rooting structures of all four plants comprised regions of plagiotropic (horizontal) axes that developed unicellular rhizoids on their underside. These regions of axes with rhizoids developed bilateral symmetry making them distinct from the other regions which were radially symmetrical. We hypothesize that rhizoidal sporophyte axes constituted the rooting structures in the common ancestor of vascular plants because the phylogenetic positions of these plants span the origin of the vascular lineage.
机译:现存陆地植物中有两种一般的生根系统:配子体根茎和孢子体根轴。这些结构分别在几乎所有土地植物配子体和孢子体的自由生活阶段进行生根函数。外延血管植物在哪个根源形成的主要血管植物,除了少数丢失根系的少数分类。然而,化石证据表明早期的血管植物没有发展孢子体根。我们建议血管植物的共同祖先开发出独特的生根系统 - 根茎孢子体轴。在这里,我们介绍了Horneophyton Lignieri,Aglaophyton Majus,Rhynia Gwynne-Vaughanii和Nothia Aphylla保留在Rhynie Chert中的合成和重新诠释。我们表明,所有四种植物的孢子体根系结构包括在其下侧开发单细胞根茎的Plagiotropic(水平)轴的区域。具有根茎的轴的区域产生双侧对称使它们与径向对称的其他区域不同。我们假设根茎孢子体轴构成血管植物的共同祖先的生根结构,因为这些植物的系统发育位置跨越血管谱系的起源。

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