4.2 Article

Pseudoscillatoria coralii gen. nov., sp nov., a cyanobacterium associated with coral black band disease (BBD)

Journal

DISEASES OF AQUATIC ORGANISMS
Volume 87, Issue 1-2, Pages 91-96

Publisher

INTER-RESEARCH
DOI: 10.3354/dao02089

Keywords

Black band disease; Marine cyanobacteria; Oscillatoriales; Pseudoscillatoria coralii; Stony corals

Funding

  1. ISF [1169/7]

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Black band disease (BBD) is a widespread coral disease which mainly infects massive framework-building corals. BBD is believed to be caused by a consortium of microorganisms and may not result from the actions of a primary pathogen. The BBD microbial community is dominated, in terms of biomass, by filamentous cyanobacteria. Here we describe a cyanobacterial strain, designated BgP10_4S(T), cultured from a BBD-affected Favia sp. coral from the northern Red Sea (Gulf of Eilat, Israel). This dark-green pigmented cyanobacterium showed optimal growth at salinities of 5.0 to 5.5% (w/v), pH of 7 to 8 and cultivation temperatures of 25 degrees C. Morphological examination revealed cylindrical, unbranched trichomes with tapering and blunt cells at the ends which leave a thin mucilaginous trail as they glide. No sheath was evident under these conditions. Inclusion bodies and straight thylakoids were clearly discerned by transmission electron microscopy. Pigment analysis revealed absorption spectra for phycocyanin, carotenoid and chlorophyll a. The sequence of the 16S rRNA gene in this cyanobacterium isolate showed high similarity (99%) to cyanobacterial sequences retrieved from BBD-affected corals from different geographical sites (i.e. the Caribbean Sea, Palau and the Red Sea). The BgP10_4S(T) strain is observed to be a persistent component of the BBD mat of Faviid corals and may thus be an important agent in the disease etiology. On the basis of its morphological, physiological and phylogenetic distinctiveness, strain BgP10_4S(T) represents a novel genus and species of Subsection III (formerly Oscillatoriales), for which the name Pseudoscillatoria coralli gen. nov., sp. nov. is proposed.

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