Literature DB >> 12069543

Molecular phylogeny of symbiotic dinoflagellates inferred from partial chloroplast large subunit (23S)-rDNA sequences.

Scott R Santos1, Derek J Taylor, Robert A Kinzie, Michio Hidaka, Kazuhiko Sakai, Mary Alice Coffroth.   

Abstract

Symbiotic associations between invertebrates and dinoflagellates of the genus Symbiodinium are a common occurrence in marine environments. However, despite our extensive knowledge concerning the physiological contributions of these algae to their symbiotic partners, our understanding of zooxanthella phylogenetics is still in its early stages. In the past 10 years, studies of Symbiodinium phylogenetics have relied solely on nuclear ribosomal (rDNA) genes. To date, organellar DNA sequences have not been employed to infer phylogenies for this genus of symbiotic dinoflagellates. We address this by presenting the first Symbiodinium phylogeny based on chloroplast (cp) large subunit (23S)-rDNA sequences. Cp23S-rDNA Domain V sequences were determined for 35 dinoflagellate cultures isolated from a range of invertebrate host species and geographical locations. Symbiodinium phylogenies inferred from cp23S-rDNA produced topologies that were not statistically different from those generated from nuclear rDNA, providing the first independent evidence supporting the published major clades of Symbiodinium. In addition, comparisons of sequence dissimilarity indicated that cp23S-rDNA Domain V evolves 9-30 times faster than the V1-V4 regions of nuclear small subunit (n18S)-rDNA, 1-7 times as fast as the D1-D3 regions of nuclear large subunit (n28S)-rDNA, and 0.27-2.25 times that of the internal transcribed spacer (ITS)-rDNA region. Our data suggested that cp23S-rDNA Domain V will prove to be a useful molecule for exploring Symbiodinium phylogenetics. 2002 Elsevier Science (USA).

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Year:  2002        PMID: 12069543     DOI: 10.1016/S1055-7903(02)00010-6

Source DB:  PubMed          Journal:  Mol Phylogenet Evol        ISSN: 1055-7903            Impact factor:   4.286


  30 in total

Review 1.  Mycosporine-like amino acids from coral dinoflagellates.

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2.  Symbiosis-dependent gene expression in coral-dinoflagellate association: cloning and characterization of a P-type H+-ATPase gene.

Authors:  Anthony Bertucci; Eric Tambutté; Sylvie Tambutté; Denis Allemand; Didier Zoccola
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Authors:  Nedeljka N Rosic; Mathieu Pernice; Simon Dunn; Sophie Dove; Ove Hoegh-Guldberg
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4.  Molecular assessment of the effect of light and heterotrophy in the scleractinian coral Stylophora pistillata.

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5.  Unfolding the secrets of coral-algal symbiosis.

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7.  Environmental barcoding reveals massive dinoflagellate diversity in marine environments.

Authors:  Rowena F Stern; Ales Horak; Rose L Andrew; Mary-Alice Coffroth; Robert A Andersen; Frithjof C Küpper; Ian Jameson; Mona Hoppenrath; Benoît Véron; Fumai Kasai; Jerry Brand; Erick R James; Patrick J Keeling
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8.  Phylogenetic identification of symbiotic dinoflagellates via length heteroplasmy in domain V of chloroplast large subunit (cp23S)-ribosomal DNA sequences.

Authors:  Scott R Santos; Carla Gutierrez-Rodriguez; Mary Alice Coffroth
Journal:  Mar Biotechnol (NY)       Date:  2003 Mar-Apr       Impact factor: 3.619

9.  Functional diversity in coral-dinoflagellate symbiosis.

Authors:  Michael Stat; Emily Morris; Ruth D Gates
Journal:  Proc Natl Acad Sci U S A       Date:  2008-06-30       Impact factor: 11.205

10.  Isolation of new Symbiodinium strains from tridacnid giant clam (Tridacna crocea) and sea slug (Pteraeolidia ianthina) using culture medium containing giant clam tissue homogenate.

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Journal:  Mar Biotechnol (NY)       Date:  2004-06-23       Impact factor: 3.619

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