Unexpected cryptic species among streptophyte algae most distant to land plants

Author:

Irisarri Iker12ORCID,Darienko Tatyana13ORCID,Pröschold Thomas4ORCID,Fürst-Jansen Janine M. R.1ORCID,Jamy Mahwash5ORCID,de Vries Jan126ORCID

Affiliation:

1. Department of Applied Bioinformatics, Institute for Microbiology and Genetics, University of Goettingen, Goldschmidstrasse 1, 37077 Göttingen, Germany

2. Campus Institute Data Science (CIDAS), University of Goettingen, Goldschmidstrasse 1, 37077 Göttingen, Germany

3. Albrecht-von-Haller-Institute of Plant Sciences, Experimental Phycology and Culture Collection of Algae, University of Goettingen, Nikolausberger Weg 18, 37073 Göttingen, Germany

4. Research Department for Limnology, Leopold-Franzens-University of Innsbruck, Mondseestrasse 9, 5310 Mondsee, Austria

5. Department of Organismal Biology, Program in Systematic Biology, Uppsala University, Norbyvägen 18D, 75236 Uppsala, Sweden

6. Göttingen Center for Molecular Biosciences (GZMB), Department of Applied Bioinformatics, University of Goettingen, Goldschmidstrasse 1, 37077 Göttingen, Germany

Abstract

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, Spirotaenia spp. and Chlorokybophyceae. All three lineages are species-poor and the Chlorokybophyceae consist of a single described species, Chlorokybus atmophyticus. In this study, we used phylogenomic analyses to shed light into the diversity within Chlorokybus using a sampling of isolates across its known distribution. We uncovered a consistent deep genetic structure within the Chlorokybus isolates, which prompted us to formally extend the Chlorokybophyceae by describing four new species. Gene expression differences among Chlorokybus 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.

Funder

Deutsche Forschungsgemeinschaft

H2020 European Research Council

Publisher

The Royal Society

Subject

General Agricultural and Biological Sciences,General Environmental Science,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine

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