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Genotyping the clonal structure of a gorgonian coral, Junceella juncea (Anthozoa: Octocorallia), using microsatellite loci
Author(s) -
ShangYin Vanson Liu,
HonTsen Yu,
TungYung Fan,
ChangFeng Dai
Publication year - 2005
Publication title -
coral reefs
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.287
H-Index - 109
eISSN - 1432-0975
pISSN - 0722-4028
DOI - 10.1007/s00338-005-0011-7
Subject(s) - biology , octocorallia , symbiodinium , zooxanthellae , gorgonian , microsatellite , anthozoa , genetic structure , genetic diversity , genotyping , scleractinia , population , coral , genotype , mitochondrial dna , asexual reproduction , coral reef , genetic variation , coelenterata , cnidaria , genetics , ecology , symbiosis , allele , gene , demography , sociology , bacteria
The identification of different clones is fundamental to the study of population structure among organisms with mixed reproductive modes such as cnidarians. However, due to the low genetic variation of coral mtDNA and contamination by zooxanthellate DNA, very few molecular markers are available for studying the clonal structure of cnidarians. Herein we used four polymorphic loci of microsatellite DNA isolated from a zooxanthellae-free octocoral, Junceella juncea, to study its clonal structure in seven populations collected from three localities in Taiwan. In total, 40 multilocus genotypes were found among 152 colonies, and the number of genotypes (clones) identified in the seven populations ranged from 2 to 16. Each of the 40 multilocus genotypes was restricted to a single population, even where adjacent populations were only 100 m distant. The ratio of observed to expected genotypic diversity (Go:Ge) ranged from 0.217 to 0.650, and Go showed a significant departure from Ge (p<0.05) at each site indicating that asexual fragmentation may play a major role in the maintenance of established populations. Mean relatedness (R) values showed that genotypes within reefs were more closely related than those between regions. The results indicate that microsatellites are useful for discerning the clonal structures among and within populations at different spatial scales.

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