SciELO - Scientific Electronic Library Online

 
vol.36 número1Crecimiento comparativo, condición y supervivencia de juveniles de los ostiones Crassostrea gigas y C. corteziensis cultivados en verano e inviernoAnálisis del esfuerzo pesquero con palangre de la flota atunera mexicana del Golfo de México durante 2004 índice de autoresíndice de assuntospesquisa de artigos
Home Pagelista alfabética de periódicos  

Serviços Personalizados

Journal

Artigo

Indicadores

Links relacionados

  • Não possue artigos similaresSimilares em SciELO

Compartilhar


Ciencias marinas

versão impressa ISSN 0185-3880

Resumo

FRAGOSO, D et al. Characterization of the CaCO3 biomineral in coralline red algae (Corallinales) from the Pacific coast of Mexico. Cienc. mar [online]. 2010, vol.36, n.1, pp.41-58. ISSN 0185-3880.

Coralline red algae assimilate HCO3- to precipitate CaCO3 in their tissues in the form of calcite or aragonite. A characterization of the biomolecular content and the crystalline structure of the biomineral of coralline red algae from the Pacific coast of Mexico was performed by powder X-ray diffraction (XRD), scanning electron (SEM) and tunneling microscopy (STM), and Fourier transform infrared spectroscopy (FTIR). The preliminary conclusion drawn from the results is that this type of calcite-aragonite biomineral has a very low organic content occluded within the crystals. FTIR bands at 2945 and 2889 cm-1 indicate that the most likely organic molecules are carbohydrates; moreover, peptide bond bands (amide I ~1640 and amide II ~1540 cm-1) were not detected, suggesting that proteins are not related to mineral synthesis or their stabilization. This could be explained if the biomineral is synthesized by a biologically controlled extracellular mineralization process. The XRD study showed two main mineral phases, calcite and aragonite, with very similar structural parameters to the inorganic mineral counterparts. The crystallite shapes, seen by STM, were found as plates and needles with different sizes, between 20 and 100 nm.

Palavras-chave : Corallinales; biomineral; Rietveld method; nanostructure; scanning tunneling microscopy.

        · resumo em Espanhol     · texto em Espanhol     · Espanhol ( pdf )

 

Creative Commons License Todo o conteúdo deste periódico, exceto onde está identificado, está licenciado sob uma Licença Creative Commons