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Microsatellite loci were isolated for the first time for the deep-sea coral Desmophyllum dianthus, using 454 GS-FLX Titanium pyrosequencing. We developed conditions for amplifying 24 markers in 10 multiplex reactions. Three to 16 alleles per locus were detected across 25 samples analyzed from Santa Maria di Leuca coral province (Mediterranean Sea). For the 24 polymorphic loci, observed and expected heterozygosities ranged from 0.211 to 0.880 and 0.383 to 0.910, respectively; 3 loci deviated from Hardy-Weinberg equilibrium, after null allele and sequential Holm-Bonferroni corrections. These newly isolated microsatellites are very useful genetic markers that provide data for future conservation strategies. Cross-amplification of these microsatellites, tested in 46 coral species, representing 40 genera, and 10 families of the phylum Cnidaria, produced informative allelic profiles for 1 to 24 loci. The utility of extending analyses to cross-species amplifications is also discussed.
Desmophyllum, Genetic Markers, Conservation of Natural Resources, Heterozygote, Deep sea coral, Population structure, microsatellites, Species Specificity, Genetics, Mediterranean Sea, Animals, Microsatellites, Molecular Biology, Genetics (clinical), Alleles, High-throughput sequencing, high-throughput sequencing, population structure, Sequence Analysis, DNA, Anthozoa, Genetics, Population, Genetic Loci, deep sea coral, Biotechnology, Microsatellite Repeats
Desmophyllum, Genetic Markers, Conservation of Natural Resources, Heterozygote, Deep sea coral, Population structure, microsatellites, Species Specificity, Genetics, Mediterranean Sea, Animals, Microsatellites, Molecular Biology, Genetics (clinical), Alleles, High-throughput sequencing, high-throughput sequencing, population structure, Sequence Analysis, DNA, Anthozoa, Genetics, Population, Genetic Loci, deep sea coral, Biotechnology, Microsatellite Repeats
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