Abstract
The clam Macridiscus multifarius with a planktonic larval stage of about 10 days is an ecologically and economically important species in the coastal regions of China. In this study, 3 mt-DNA markers (COI, 12S rRNA, and ND1) were used to investigate the population structure and demography of wild M. multifarius populations in 3 coastal localities of the East China Sea (ZS and ZP populations) and Beibu Gulf in the South China Sea (BH population). Sequences of 685 bp in COI, 350 bp in 12S rRNA, and 496 bp in ND1 were determined. High level and significant F ST values were obtained among the different localities on the basis of either COI (F ST = 0.100–0.444, p < 0.05) or 12S rRNA (F ST = 0.199–0.742, p < 0.05) gene, indicating a high degree of genetic differentiation among the populations. F ST values were significant but weak for the ND1 gene because it is highly conservative. The median-joining network suggested an obvious genetic differentiation between ZS and BH populations, and the finding is consistent with the results of our demographic analyses using the unweighted pair group method with arithmetic mean. Our study unraveled the extant population genetic structure of M. multifarius and explained the strong population structure of a species with a short planktonic larval stage species; this information could be useful for fishery management measures, including artificial breeding and conservation.
Highlights
The life history of most marine organisms includes a planktonic stage during which larvae disperse to distances that range from several meters to hundreds of kilometers from their locationPLOS ONE | DOI:10.1371/journal.pone.0146260 December 31, 2015Genetic Population Structure of M. multifarius
Significant genetic structure was observed in M. multifarius populations by using 3 mtDNA markers
This result is consistent with the finding that species with a short planktonic larval stage have a short dispersal distance, especially those with low mobility as adults
Summary
The objective of this study was to test the influence of planktonic larval stage duration on the genetic structure of M. multifarius
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