A Phase Separation Model for the Nanopatterning of Diatom Biosilica

Author:

Sumper Manfred1

Affiliation:

1. Lehrstuhl Biochemie I, Universität Regensburg, 93053 Regensburg, Germany.

Abstract

Diatoms are encased in an intricately patterned wall that consists of amorphous silica. Species-specific fabrication of this ornate biomineral enables taxonomists to identify thousands of diatom species. The molecular mechanisms that control this nanofabrication and generate the diversity of patterns is not well understood. A simple model is described, in which repeated phase separation events during wall biogenesis are assumed to produce self-similar silica patterns in smaller and smaller scales. On the basis of this single assumption, the apparently complex patterns found in the valves of the diatom genus Coscinodiscus can be predicted. Microscopic analysis of valves in statu nascendi from three different Coscinodiscus species supports the conclusions derived from the model.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

Reference24 articles.

1. MORPHOLOGY AND DISTRIBUTION OFCOSCINODISCUSSPECIES FROM THE OSLOFJORD, NORWAY, AND THE SKAGERRAK, NORTH ATLANTIC

2. C. R. Tomas Identifying Marine Phytoplankton (Academic Press New York 1997).

3. C. granii C. wailesii and C. radiatus were collected from the North Sea (Germany) and cultivated as axenic unialgal cultures in an artificial seawater medium according to the recipe from the North East Pacific Culture Collection (www.ocgy.ubc.ca/cccm//NEPCC/esaw.html). C. asteromphalus was obtained from this culture collection.

4. Post mitotic fine structure of Gomphonema parvulum

5. WALL MORPHOGENESIS IN COSCINODISCUS WAILESII GRAN AND ANGST. I. VALVE MORPHOLOGY AND DEVELOPMENT OF ITS ARCHITECTURE1

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