4.5 Article

Morphological reversion of Spirulina (Arthrospira) platensis (Cyanophyta):: From linear to helical

Journal

JOURNAL OF PHYCOLOGY
Volume 41, Issue 3, Pages 622-628

Publisher

BLACKWELL PUBLISHING INC
DOI: 10.1111/j.1529-8817.2005.00087.x

Keywords

helical; linear; morphogenesis; RAPD; reversion; SDS-PAGE; Spirulina (Arthrospira) platensis

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The cyanobacterium Spirulina Turpin is characterized by its regularly coiled trichomes. Under some conditions, its helical filaments can convert to abnormal morphologies, such as irregularly curved and even linear shapes, that had been considered as a permanent degeneration that could not be reversed. However, here we found that the linear filaments of Spirulina platensis Geitler could spontaneously revert to the helical form with the same morphology as the original filaments. Further studies showed that the ultrastructural, physiological, and biochemical characteristics of linear filaments were different from those of the original filaments, whereas they were the same for the reverted and the original filaments. The SDS-PAGE analysis revealed at least four proteins or subunits related to Spirulina morphogenesis: The 21.9-kDa and the 20.3-kDa proteins were highly expressed in the helical filaments, whereas the 52.0-kDa and the 31.8-kDa proteins were highly expressed in the linear filaments. The random amplified polymorphic DNA analysis with 96 random primers showed that the genetic background of the reverted filaments was the same as that of the original filaments but distinct from that of the linear filaments. The results indicated that linear filaments of Spirulina could revert to the original morphology under certain conditions, and their other distinctive traits were regained.

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