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  The Magellania venosa Biomineralizing Proteome: A Window into Brachiopod Shell Evolution

Jackson, D. J., Mann, K., Haeussermann, V., Schilhabel, M. B., Lueter, C., Griesshaber, E., et al. (2015). The Magellania venosa Biomineralizing Proteome: A Window into Brachiopod Shell Evolution. GENOME BIOLOGY AND EVOLUTION, 7(5), 1349-1362. doi:10.1093/gbe/evv074.

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Genome Biol Evol-2015-Jackson-1349-62.pdf (Any fulltext), 1018KB
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 Creators:
Jackson, Daniel J.1, Author
Mann, Karlheinz2, Author           
Haeussermann, Vreni1, Author
Schilhabel, Markus B.1, Author
Lueter, Carsten1, Author
Griesshaber, Erika1, Author
Schmahl, Wolfgang1, Author
Woerheide, Gert1, Author
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1external, ou_persistent22              
2Mann, Matthias / Proteomics and Signal Transduction, Max Planck Institute of Biochemistry, Max Planck Society, ou_1565159              

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Free keywords: CORAL STYLOPHORA-PISTILLATA; ALPHA-CARBONIC ANHYDRASES; SKELETAL PROTEOME; MOLECULAR-CLONING; FORMING PROTEOME; ORGANIC MATRIX; SEA-URCHIN; REVEALS; GENE; SEQUENCEBrachiopoda; biomineralization; proteome; transcriptome; evolution; Magellania;
 Abstract: Brachiopods are a lineage of invertebrates well known for the breadth and depth of their fossil record. Although the quality of this fossil record attracts the attention of paleontologists, geochemists, and paleoclimatologists, modern day brachiopods are also of interest to evolutionary biologists due to their potential to address a variety of questions ranging from developmental biology to biomineralization. The brachiopod shell is a composite material primarily composed of either calcite or calcium phosphate in close association with proteins and polysaccharides which give these composite structures their material properties. The information content of these biomolecules, sequestered within the shell during its construction, has the potential to inform hypotheses focused on describing how brachiopod shell formation evolved. Here, using high throughput proteomic approaches and next generation sequencing, we have surveyed and characterized the first shell-proteome and shell-forming transcriptome of any brachiopod, the South American Magellania venosa (Rhynchonelliformea: Terebratulida). We find that the seven most abundant proteins present in the shell are unique to M. venosa, but that these proteins display biochemical features found in other metazoan biomineralization proteins. We can also detect some M. venosa proteins that display significant sequence similarity to other metazoan biomineralization proteins, suggesting that some elements of the brachiopod shell-forming proteome are deeply evolutionarily conserved. We also employed a variety of preparation methods to isolate shell proteins and find that in comparison to the shells of other spiralian invertebrates (such as mollusks) the shell ultrastructure of M. venosa may explain the effects these preparation strategies have on our results.

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Language(s): eng - English
 Dates: 2015
 Publication Status: Published online
 Pages: 14
 Publishing info: -
 Table of Contents: -
 Rev. Type: Peer
 Identifiers: ISI: 000356228800015
DOI: 10.1093/gbe/evv074
 Degree: -

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Title: GENOME BIOLOGY AND EVOLUTION
Source Genre: Journal
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Publ. Info: GREAT CLARENDON ST, OXFORD OX2 6DP, ENGLAND : OXFORD UNIV PRESS
Pages: - Volume / Issue: 7 (5) Sequence Number: - Start / End Page: 1349 - 1362 Identifier: ISSN: 1759-6653