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具有系统发生信息的陆地植物最近亲缘关系的五界系统。

A phylogenomically informed five-order system for the closest relatives of land plants.

机构信息

Institute for Zoology, University of Cologne, Zülpicher Str. 47b, 50674 Cologne, Germany.

Department of Biochemistry and Molecular Biology, Dalhousie University, 5850 College St., Halifax NS B3H 4R2, Canada.

出版信息

Curr Biol. 2022 Oct 24;32(20):4473-4482.e7. doi: 10.1016/j.cub.2022.08.022. Epub 2022 Sep 1.

Abstract

The evolution of streptophytes had a profound impact on life on Earth. They brought forth those photosynthetic eukaryotes that today dominate the macroscopic flora: the land plants (Embryophyta). There is convincing evidence that the unicellular/filamentous Zygnematophyceae-and not the morphologically more elaborate Coleochaetophyceae or Charophyceae-are the closest algal relatives of land plants. Despite the species richness (>4,000), wide distribution, and key evolutionary position of the zygnematophytes, their internal phylogeny remains largely unresolved. There are also putative zygnematophytes with interesting body plan modifications (e.g., filamentous growth) whose phylogenetic affiliations remain unknown. Here, we studied a filamentous green alga (strain MZCH580) from an Austrian peat bog with central or parietal chloroplasts that lack discernible pyrenoids. It represents Mougeotiopsis calospora PALLA, an enigmatic alga that was described more than 120 years ago but never subjected to molecular analyses. We generated transcriptomic data of M. calospora strain MZCH580 and conducted comprehensive phylogenomic analyses (326 nuclear loci) for 46 taxonomically diverse zygnematophytes. Strain MZCH580 falls in a deep-branching zygnematophycean clade together with some unicellular species and thus represents a formerly unknown zygnematophycean lineage with filamentous growth. Our well-supported phylogenomic tree lets us propose a new five-order system for the Zygnematophyceae and provides evidence for at least five independent origins of true filamentous growth in the closest algal relatives of land plants. This phylogeny provides a robust and comprehensive framework for performing comparative analyses and inferring the evolution of cellular traits and body plans in the closest relatives of land plants.

摘要

石莼植物的进化对地球上的生命产生了深远的影响。它们产生了那些今天在宏观植物中占主导地位的光合作用真核生物:陆地植物(Embryophyta)。有令人信服的证据表明,单细胞/丝状的绿藻门-Zygnematophyceae-而不是形态上更复杂的褐藻门或轮藻门-是陆地植物最接近的藻类亲属。尽管石莼植物物种丰富(>4,000 种)、分布广泛且在进化上具有关键地位,但它们的内部系统发育仍然在很大程度上没有得到解决。还有一些具有有趣身体结构修饰的假定石莼植物(例如丝状生长),其系统发育关系仍然未知。在这里,我们研究了一种来自奥地利泥炭沼泽的丝状绿藻(菌株 MZCH580),其中央或壁状叶绿体缺乏可辨别的淀粉核。它代表 Mougeotiopsis calospora PALLA,这是一种神秘的藻类,早在 120 多年前就被描述过,但从未进行过分子分析。我们生成了 M. calospora 菌株 MZCH580 的转录组数据,并对 46 种分类多样化的石莼植物进行了全面的系统基因组分析(326 个核基因座)。菌株 MZCH580 与一些单细胞物种一起属于一个深分支的石莼植物群,因此代表了一个以前未知的具有丝状生长的石莼植物谱系。我们的支持良好的系统基因组树使我们能够为 Zygnematophyceae 提出一个新的五阶系统,并为陆地植物最接近的藻类亲属中真正丝状生长的至少五个独立起源提供证据。这个系统发育树为进行比较分析提供了一个稳健而全面的框架,并推断了陆地植物最接近亲属中细胞特征和身体结构的进化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3424/9632326/252769e413e8/fx1.jpg

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