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Genetic variability in Littorina saxatilis from different habitats on an island in Galway Bay

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Part of the book series: Developments in Hydrobiology ((DIHY,volume 133))

Abstract

Starch-gel electrophoretic techniques were applied to the investigation of molecular genetic variation in populations of the rough periwinkle Littorina saxatilis. The investigation comprised two phases: (a) technique development to resolve as many as possible of the allozyme loci reported in the literature as having been screened in the genus Littorina and in Melarhaphe neritoides; (b) the use of these loci to assess levels of genetic variation in and patterns of genetic differentiation among populations of L. saxatilis from a relatively isolated group of populations from Galway Bay, Ireland.

More than 43 allozyme loci (of which four were screened for the first time here in this species), coding for 37 enzymes, were investigated and thirteen of these loci (including two loci screened for the first time here) were found to be variable and reliably scorable. Samples from five pairs of transects were collected from Inismór, Aran Islands, from sites with known exposure levels; one transect within each pair was collected from an exposed site and the other from a nearby, but relatively sheltered site. UPGMA for eleven loci, (ARK and PGDH were excluded from cluster and F ST analysis as they were unscorable in a few samples), showed that the samples cluster mostly by pair, reflecting their geographic origin and is indicative of little gene flow between populations. Levels of population differentiation were high among samples from the top of the shore, but unusually so at AAT-1 which showed nearly three times the mean F ST value for the eleven loci. There was also a significant regression of frequency of AAT-1 100 against level of exposure. In addition, among midshore samples, there was a consistently higher frequency of AAT-1 100 in sheltered habitats. These results support the findings of others, indicating that this locus may be subject to natural selection.

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References

  • Ballantine, W. J., 1961. A biologically-defined exposure scale for the comparative description of rocky shores. Field Stud. 1: 1–19.

    Google Scholar 

  • Beardmore, J. & S. R. Morris, 1978. Genetic variation and species coexistence in Littorina. In B. Battaglia & J. Beardmore (eds), Marine Organisms: Genetics, Ecology and Evolution. Plenum Press, New York & London.

    Google Scholar 

  • Caley, K. J., J. Grahame & P. J. Mill, 1995. A geographically-based study of shell shape in small rough periwinkles. Hydrobiologia 309: 181–193.

    Article  Google Scholar 

  • Clayton, J. W. & D. N. Tretiak, 1972. Amine-citrate buffers for pH control in starch gel electrophoresis. J. Fish Res. Bd Can. 29: 1169–1172.

    Article  CAS  Google Scholar 

  • Gosling, E. M., I. F. Wilson & J. Andrews, 1998. A preliminary study on genetic differentiation in Littorina saxatilis from Gal-way Bay, Ireland: Littorina tenebrosa Montagu — a valid species or ecotype? Hydrobiologia 378: 21–25.

    Article  Google Scholar 

  • Grahame, J., P. J. Mill, M. Double & S. Hull, 1992. Patterns of variation in Aat-1 allele frequencies in rough periwinkles (Littorina) suggest similar selection regimes rather than conspecificity. J. mar. biol. Ass. U. K. 72: 499–502.

    Article  Google Scholar 

  • Grahame, J., P. J. Mill, S. Hull & K. J. Caley, 1995. Littorina neglecta Bean: ecotype or species? J. nat. Hist., Lond. 29: 887–899.

    Article  Google Scholar 

  • Hull, S., 1994. Polymorphism, physiological ecology and the sys-tematics of Littorina. Unpublished Ph.D. thesis, University of Leeds.

    Google Scholar 

  • Janson, K., 1985. A morphologic and genetic analysis of Littorina saxatilis (Prosobranchia) from Venice, and on the problem of saxatilis-rudis nomenclature. Biol. J. linn. Soc. 24: 51–59.

    Article  Google Scholar 

  • Janson, K., 1987. Genetic drift in small and recently founded populations of the marine snail Littorina saxatilis. Heredity 58: 31–37.

    Article  Google Scholar 

  • Janson, K. & R. D. Ward, 1984. Microgeographic variation in allozyme and shell characters in Littorina saxatilis Olivi (Proso?branchia: Littorinidae). Biol. J. linn. Soc 22: 289–307.

    Article  Google Scholar 

  • Johannesson, K. & B. Johannesson, 1989. Differences in allele frequencies of Aat between high-and mid-rocky shore populations of Littorina saxatilis (Olivi) suggest selection in this enzyme locus. Genet. Res. 54: 7–11.

    Article  Google Scholar 

  • Johannesson, K. & B. Johannesson, 1990. Genetic variation within Littorina saxatilis (Olivi) and Littorina neglecta Bean: Is L. neglecta a good species? Hydrobiologia 193: 89–97.

    Article  Google Scholar 

  • Johannesson, K., B. Johannesson & U. Lundgren, 1995. Strong natural selection causes microscale allozyme variation in a marine snail. Proc. natn. Acad. Sci. U.S.A. 92: 2602–2606.

    Article  CAS  Google Scholar 

  • Knight, A. J., R. N. Hughes & R. D. Ward, 1987. A striking example of the founder effect in the mollusc Littorina saxatilis. Biol. J. linn. Soc. 32:417–426.

    Article  Google Scholar 

  • Knight, A. J. & R. D. Ward, 1991. The genetic relationships of three taxa in the Littorina saxatilis species complex (Prosobranchia: Littorinidae). J. moll. Stud. 57: 81–91.

    Article  Google Scholar 

  • Nei, M., 1978. Estimation of heterozygosity and genetic distance from a small number of individuals. Genetics 89: 583–590.

    PubMed  CAS  Google Scholar 

  • O’Connell, M., J. M. Fives & P. Ó Céidigh, 1992. Ecological studies of littoral fauna and flora on Inishmore, Aran Islands, Co. Galway. Proc. R. I. A. 92B: 91–107.

    Google Scholar 

  • Raymond, M. & F. Rousset, 1995. GENEPOP (version 1.2): A population genetics software for exact tests and ecumenicism. Users Manual (version 2). J. Hered. 86: 248–249.

    Google Scholar 

  • Reid, D. G., 1996. Systematics and evolution of Littorina. The Ray Society, London. 463 pp.

    Google Scholar 

  • Shaw, C. R. & R. Prasad, 1970. Starch gel electrophoresis of enzymes — a compilation of recipes. Biochem. Genet. 4: 297–320.

    Article  PubMed  CAS  Google Scholar 

  • Sundberg, P., A. J. Knight & R. D. Ward & K. Johannesson, 1990. Estimating the phylogeny in the mollusc Littorina saxatilis (Olivi) from enzyme data: methodological considerations. Hydrobiologia 193: 29–40.

    Article  Google Scholar 

  • Swofford, D. L. & R. B. Selander, 1981. Biosys-1. A Computer Program for the Analysis of Allelic Variation in Genetics. Users Manual, 1.7. Department of Genetics and Development, University of Illinois, Urbana-Champaign, IL.

    Google Scholar 

  • Ward, R. D. & K. Janson, 1985. A genetic analysis of sympatric subpopulations of the sibling species Littorina saxatilis (Olivi) and Littorina arcana Hannaford Ellis. J. moll. Stud. 51: 86–94.

    Google Scholar 

  • Ward, R. D. & T. Warwick, 1980. Genetic differentiation in the molluscan species Littorina rudis and Littorina arcana (Prosobranchia: Littorinidae). Biol. J. linn. Soc. 14: 417–428.

    Article  Google Scholar 

  • Ward, R. D., T. Warwick & A. J. Knight, 1986. Genetic analysis of ten polymorphic enzyme loci in Littorina saxatilis (Prosobranchia: Mollusca). Heredity 57: 233–241.

    Article  CAS  Google Scholar 

  • Ward, R. D., T. Warwick & A. J. Knight, 1987. Further genetic analysis of polymorphic enzyme loci in Littorina Saxatilis (Prosobranchia: Mollusca). Heredity 66: 151–158.

    Article  Google Scholar 

  • Wilkins, N. P. & D. O’Regan, 1980. Genetic variation in sympatric sibling species of Littorina. The Veliger 22: 355–359.

    Google Scholar 

  • Wilkins, N. P., D. O’Regan & E. Moynihan, 1978. Electrophoretic variability and temperature sensitivity of phosphoglucose isomerase and phosphoglucomutase in littorinids and other marine molluscs. In B. Battaglia & J. A. Beardmore (eds), Marine Organisms: Genetics, Ecology and Evolution. Plenum Press, New York & London.

    Google Scholar 

  • Wright, S., 1978. Variability Within and Among Natural Pop?ulations. Vol. 4, Evolution and the Genetics of Populations. University of Chicago Press, Chicago, 580 pp.

    Google Scholar 

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Ruth M. O’Riordan Gavin M. Burnell Mark S. Davies Neil F. Ramsay

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© 1998 Springer Science+Business Media Dordrecht

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Wilson, I.F., Gosling, E.M. (1998). Genetic variability in Littorina saxatilis from different habitats on an island in Galway Bay. In: O’Riordan, R.M., Burnell, G.M., Davies, M.S., Ramsay, N.F. (eds) Aspects of Littorinid Biology. Developments in Hydrobiology, vol 133. Springer, Dordrecht. https://doi.org/10.1007/978-94-011-5336-2_1

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  • DOI: https://doi.org/10.1007/978-94-011-5336-2_1

  • Publisher Name: Springer, Dordrecht

  • Print ISBN: 978-94-010-6243-5

  • Online ISBN: 978-94-011-5336-2

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