A chemical view of the most ancient metazoa - biomarker chemotaxonomy of hexactinellid sponges

2002 | journal article. A publication with affiliation to the University of Göttingen.

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​A chemical view of the most ancient metazoa - biomarker chemotaxonomy of hexactinellid sponges​
Thiel, V. ; Blumenberg, M. ; Hefter, J.; Pape, T.; Pomponi, S.; Reed, J. C. & Reitner, J.  et al.​ (2002) 
The Science of Nature89(2) pp. 60​-66​.​ DOI: https://doi.org/10.1007/s00114-001-0284-9 

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Authors
Thiel, Volker ; Blumenberg, Martin ; Hefter, J.; Pape, T.; Pomponi, S.; Reed, J. C.; Reitner, Joachim ; Wörheide, Gert ; Michaelis, Walter
Abstract
Hexactinellid sponges are often considered to be the most ancient metazoans. Lipid biomarkers from 23 species were studied for information on their phylogenetic properties, particularly their disputed relation to the two other sponge classes (Demospongiae, Calcarea). The most prominent lipid compounds in the Hexactinellida comprise C-28 to C-32 polyenoic fatty acids. Their structures parallel the unique patterns found in demosponge membrane fatty acids ('demospongic acids') and strongly support a close phylogenetic association of the Demospongiae and the Hexactinellida. Both taxa also show unusual mid-chain methylated fatty acids (C-15-C-25) and irregular C-25- and C-40-isoprenoid hydrocarbons, tracers for specific eubacteria and Archaea, respectively. These biomarkers indicate a similar, highly conservative symbiont community, although some shift in the abundance of the associated microbiota was observed. The lack of these features in calcareous sponges further contradicts the still common view that Calcarea and Demospongiae are more closely related to each other than either is to the Hexactinellida.
Issue Date
2002
Journal
The Science of Nature 
ISSN
0028-1042

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