Literature DB >> 9321419

Molecular evolution of a portion of the mitochondrial 16S ribosomal gene region in scleractinian corals.

S L Romano1, S R Palumbi.   

Abstract

Relationships among families and suborders of scleractinian corals are poorly understood because of difficulties 1) in making inferences about the evolution of the morphological characters used in coral taxonomy and 2) in interpreting their 240-million-year fossil record. Here we describe patterns of molecular evolution in a segment of the mitochondrial (mt) 16S ribosomal gene from taxa of 14 families of corals and the use of this gene segment in a phylogenetic analysis of relationships within the order. We show that sequences obtained from scleractinians are homologous to other metazoan 16S ribosomal sequences and fall into-two distinct clades defined by size of the amplified gene product. Comparisons of sequences from the two clades demonstrate that both sets of sequences are evolving under similar evolutionary constraints: they do not differ in nucleotide composition, numbers of transition and transversion substitutions, spatial patterns of substitutions, or in rates of divergence. The characteristics and patterns observed in these sequences as well as the secondary structures, are similar to those observed in mt 16S ribosomal DNA sequences from other taxa. Phylogenetic analysis of these sequences shows that they are useful for evaluating relationships within the order. The hypothesis generated from this analysis differs from traditional hypotheses for evolutionary relationships among the Scleractinia and suggests that a reevaluation of evolutionary affinities in the order is needed.

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Year:  1997        PMID: 9321419     DOI: 10.1007/pl00006245

Source DB:  PubMed          Journal:  J Mol Evol        ISSN: 0022-2844            Impact factor:   2.395


  47 in total

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Authors:  M F Smith; W K Thomas; J L Patton
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  25 in total

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3.  Naked corals: skeleton loss in Scleractinia.

Authors:  Mónica Medina; Allen G Collins; Tori L Takaoka; Jennifer V Kuehl; Jeffrey L Boore
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4.  Employing of the amplified fragment length polymorphism (AFLP) methodology as an efficient population genetic tool for symbiotic cnidarians.

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5.  Secondary structure of the rRNA ITS2 region reveals key evolutionary patterns in acroporid corals.

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6.  First macrobiota biomineralization was environmentally triggered.

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8.  Novel group I introns encoding a putative homing endonuclease in the mitochondrial cox1 gene of Scleractinian corals.

Authors:  Hironobu Fukami; Chaolun Allen Chen; Chi-Yung Chiou; Nancy Knowlton
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9.  A comprehensive phylogenetic analysis of the Scleractinia (Cnidaria, Anthozoa) based on mitochondrial CO1 sequence data.

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