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10.1038/srep26073

http://scihub22266oqcxt.onion/10.1038/srep26073
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C4872142!4872142!27194462
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suck abstract from ncbi


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pmid27194462      Sci+Rep 2016 ; 6 (ä): ä
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  • A first report of hydroxylated apatite as structural biomineral in Loasaceae ? plants? teeth against herbivores #MMPMID27194462
  • Ensikat HJ; Geisler T; Weigend M
  • Sci Rep 2016[]; 6 (ä): ä PMID27194462show ga
  • Biomineralization provides living organisms with various materials for the formation of resilient structures. Calcium phosphate is the main component of teeth and bones in vertebrates, whereas especially silica serves for the protection against herbivores on many plant surfaces. Functional calcium phosphate structures are well-known from the animal kingdom, but had not so far been reported from higher plants. Here, we document the occurrence of calcium phosphate biomineralization in the South-American plant group Loasaceae (rock nettle family), which have stinging trichomes similar to those of the well-known stinging nettles (Urtica). Stinging hairs and the smaller, glochidiate trichomes contained nanocrystalline hydroxylated apatite, especially in their distal portions, replacing the silica found in analogous structures of other flowering plants. This could be demonstrated by chemical, spectroscopic, and diffraction analyses. Some species of Loasaceae contained both calcium phosphate and silica in addition to calcium carbonate. The intriguing discovery of structural hydroxylated apatite in plants invites further studies, e.g., on its systematic distribution across the family, the genetic and cellular control of plant biomineralization, the properties and ultrastructure of calcium phosphate. It may prove the starting point for the development of biomimetic calcium phosphate composites based on a cellulose matrix.
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