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Seasonal dynamics of population genetic structure in cryptic taxa of the Pellioditis marina complex (Nematoda: Rhabditida)
Derycke, S.; Backeljau, T.; Vlaeminck, C.; Vierstraete, A.; Vanfleteren, J.; Vincx, M.; Moens, T. (2006). Seasonal dynamics of population genetic structure in cryptic taxa of the Pellioditis marina complex (Nematoda: Rhabditida). Genetica 128(1-3): 307-321. dx.doi.org/10.1007/s10709-006-6944-0
In: Genetica. Kluwer Academic: The Hague. ISSN 0016-6707; e-ISSN 1573-6857
Related to:
Derycke, S.; Backeljau, T.; Vlaeminck, C.; Vierstraete, A.; Vanfleteren, J.; Vincx, M.; Moens, T. (2007). Seasonal dynamics of population genetic structure in cryptic taxa of the Pellioditis marina complex (Nematoda: Rhabditida), in: Derycke, S. Patronen en processen in de genetische structuur van twee mariene nemarodentaxa Rhabditis (Pellioditis) marina and Halomonhystera disjuncta): een moleculaire, morfologische en experimentele benadering = Patterns and processes in the genetic structure of two marine nematode taxa (Rhabditis (Pellioditis) marina and Halomonhystera disjuncta): a molecular, morphology and experimental approach. pp. 41-63, more
Peer reviewed article  

Available in  Authors 

Keywords
    Biology > Genetics
    Metapopulation
    Structures
    Temporal variations
    Nematoda [WoRMS]; Pellioditis marina (Bastian, 1865) Andrássy, 1983 [WoRMS]
    ANE, Belgium [Marine Regions]; ANE, Netherlands [Marine Regions]
    Marine/Coastal; Brackish water
Author keywords
    genetic structure; metapopulation; mtDNA; nematode; Pellioditis marina;SSCP; temporal variation

Authors  Top 
  • Derycke, S., more
  • Backeljau, T.
  • Vlaeminck, C.
  • Vierstraete, A.
  • Vanfleteren, J.
  • Vincx, M., more
  • Moens, T., more

Abstract
    The distribution patterns and genetic structure of the Pellioditis marina species complex in Belgium and The Netherlands were compared between four consecutive seasons. Different types of habitats (coast, estuary, semi-estuary and lake) with different degrees of connectivity were sampled. In addition, each habitat type was characterised by either temporal or permanent algal deposits. We screened 426 bp of the mitochondrial cytochrome oxidase c (COI) gene with the single-strand conformation polymorphism (SSCP) method in 1615 individuals of Pellioditis marina. The 51 haplotypes were divided into four (sympatric) lineages, with divergences ranging from 0.25 to 10.6%. Our results show that the lineages have different temporal dynamics, which may be linked to abiotic factors. Analysis of Molecular Variance (AMOVA) indicated a significant structuring in the PmI lineage, which correlated with habitat characteristics and which changed over time (Mantel, r = 0.51; p = 0.126). Intrapopulational diversity was similar in all locations, and temporal changes in haplotype frequencies were not higher in temporary than in permanent algal deposits. Instead, the results of the temporal survey indicated that (some) P. marina populations are characterised by a metapopulation structure. It is emphasized that a complete and correct interpretation of processes causing genetic structuring within species and of the genetic structure itself can only be done when analyses are performed at several time points.

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