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Ecophysiological, morphological, and biochemical traits of free-living Diplosphaera chodatii (Trebouxiophyceae) reveal adaptation to harsh environmental conditions

Cynthia Medwed; Andreas Holzinger; Stefanie Hofer; Anja Hartmann; Dirk Michalik; Karin Glaser; Ulf Karsten
Protoplasma · Vol. 258, Issue 6 · pp. 1187-1199 · 2021

Abstract

Single-celled green algae within the Trebouxiophyceae (Chlorophyta) are typical components of terrestrial habitats, which often exhibit harsh environmental conditions for these microorganisms. This study provides a detailed overview of the ecophysiological, biochemical, and ultrastructural traits of an alga living on tree bark. The alga was isolated from a cypress tree in the Botanical Garden of Innsbruck (Austria) and identified by morphology and molecular phylogeny as Diplosphaera chodatii . Transmission electron microscopy after high-pressure freezing (HPF) showed an excellent preservation of the ultrastructure. The cell wall was bilayered with a smooth inner layer and an outer layer of polysaccharides with a fuzzy hair-like appearance that could possibly act as cell-cell adhesion mechanism and hence as a structural precursor supporting biofilm formation together with the mucilage observed occasionally. The photosynthetic-irradiance curves of D. chodatii indicated low light requirements without photoinhibition at high photon flux densities (1580 μmol photons m −2 s −1 ) supported by growth rate measurements. D. chodatii showed a high desiccation tolerance, as 85% of its initial value was recovered after controlled desiccation at a relative humidity of ~10%. The alga contained the low molecular weight carbohydrates sucrose and sorbitol, which probably act as protective compounds against desiccation. In addition, a new but chemically not elucidated mycosporine-like amino acid was detected with a molecular mass of 332 g mol −1 and an absorption maximum of 324 nm. The presented data provide various traits which contribute to a better understanding of the adaptive mechanisms of D. chodatii to terrestrial habitats.

Bibliographic Information

JournalProtoplasma
PublisherSpringer
Publication Date2021-11-01
Publication Year2021
Volume258
Issue6
Pages1187-1199
Document TypeJournal Article
Print ISSN0033-183X
eISSN1615-6102
DOI10.1007/s00709-021-01620-6

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NARA Access Coverage1926-01-01~Current
Journal Homepagehttps://www.springer.com/journal/709
Publisher PageOpen Publisher Page
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