Department of Applied Bioinformatics, Institute for Microbiology and Genetics, University of Goettingen, Goldschmidstrasse 1, 37077 Göttingen, Germany.
Campus Institute Data Science (CIDAS), University of Goettingen, Goldschmidstrasse 1, 37077 Göttingen, Germany.
Proc Biol Sci. 2021 Nov 24;288(1963):20212168. doi: 10.1098/rspb.2021.2168.
Streptophytes are one of the major groups of the green lineage (Chloroplastida or Viridiplantae). During one billion years of evolution, streptophytes have radiated into an astounding diversity of uni- and multicellular green algae as well as land plants. Most divergent from land plants is a clade formed by Mesostigmatophyceae, spp. and Chlorokybophyceae. All three lineages are species-poor and the Chlorokybophyceae consist of a single described species, In this study, we used phylogenomic analyses to shed light into the diversity within using a sampling of isolates across its known distribution. We uncovered a consistent deep genetic structure within the isolates, which prompted us to formally extend the Chlorokybophyceae by describing four new species. Gene expression differences among species suggest certain constitutive variability that might influence their response to environmental factors. Failure to account for this diversity can hamper comparative genomic studies aiming to understand the evolution of stress response across streptophytes. Our data highlight that future studies on the evolution of plant form and function can tap into an unknown diversity at key deep branches of the streptophytes.
石莼类植物是绿色谱系(叶绿体或绿藻门)的主要群体之一。在十亿年的进化过程中,石莼类植物已经辐射出了惊人多样的单细胞和多细胞绿藻以及陆地植物。与陆地植物最不同的是由Mesostigmatophyceae、 spp. 和 Chlorokybophyceae组成的分支。这三个谱系的物种都很少,Chlorokybophyceae由一个单一的描述物种, 组成。在这项研究中,我们使用系统基因组分析来揭示 种内的多样性,对其已知分布范围内的分离株进行了采样。我们发现 分离株内存在一致的深层遗传结构,这促使我们正式通过描述四个新物种来扩展 Chlorokybophyceae。物种间的基因表达差异表明存在某些组成型变异性,这可能影响它们对环境因素的反应。如果不考虑这种多样性,可能会阻碍旨在了解石莼类植物胁迫反应进化的比较基因组研究。我们的数据强调,未来关于植物形态和功能进化的研究可以利用石莼类植物关键深分支的未知多样性。