Use of hierarchical designs to detect scales of heterogeneity in the invasive species Sargassum muticum
DOI:
https://doi.org/10.3989/scimar.2009.73n3507Keywords:
spatial scale, morphology, fertility, distribution, invasion success, Galician coast, Sargassum muticumAbstract
Invasion of alien species poses serious threats to many ecosystems. Despite the potential of Sargassum muticum to spread and invade new areas, no attention has been given to the study of variability of structural or morphological features across different spatial scales. We employed a hierarchical sampling design to examine patterns of spatial variability of fertility and morphological variables of S. muticum over different spatial scales (quadrats, sites, locations, rias) ranging from metres to tens of kilometres We repeated the sampling in March, April and July to test for the consistency of patterns through time. There was no variability between rias (tens of kilometres apart), but substantial differences occurred at the other scales examined. Fertility and percent cover varied between locations (1.5-3 km apart), whereas morphological variables varied between sites (tens of metres apart) and quadrats (metres apart). Furthermore, patterns of variation were not consistent over time. The study demonstrated the importance of a multi-scale sampling programme for monitoring seaweed invasion.
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References
Airoldi, L. and S.J. Hawkins. – 2007. Negative effects of sediment deposition on grazing activity and survival of the limpet Patella vulgata. Mar. Ecol. Prog. Ser., 332: 235-240. doi:10.3354/meps332235
Alvarez-Salgado, X.A., G. Rosón, F.F. Pérez and Y. Pazos. – 1993. Hydrographic variability off the Rías Baixas (NW Spain) during the upwelling season. J. Geophys. Res., 98: 14447-14455. doi:10.1029/93JC00458
Andrew, N.L. and R.M. Viejo. – 1998. Effects of wave exposure and intraspecific density on the growth and survivorship of Sargassum muticum (Sargassaceae: Phaeophyta). Eur. J. Phycol., 33: 251-258. doi:10.1080/09670269810001736753
Arenas, F. and C. Fernández. – 1998. Ecology of Sargassum muticum (Phaeophyta) on the North coast of Spain III. Reproductive ecology. Bot. Mar., 41: 209-216.
Arenas, F., C. Fernández, J.M. Rico, E. Fernández and D. Haya. – 1995. Growth and reproductive strategies of Sargassum muticum (Yendo) Fensholt and Cystoseira nodicaulis (Whit.) Roberts. Sci. Mar., 59: 1-8.
Arenas, F., R.M. Viejo and C. Fernández. – 2002. Density-dependent regulation in an invasive seaweed: responses at plant and modular levels. J. Ecol., 90: 820-829. doi:10.1046/j.1365-2745.2002.00720.x
Britton-Simmons, K.H. – 2004. Direct and indirect effects of the introduced alga, Sargassum muticum (Yendo), in subtidal kelp communities of Washington State, USA. Mar. Ecol. Prog. Ser., 277: 61-78. doi:10.3354/meps277061
Dayton, P.K. and M.J. Tegner. – 1984. Catastrophic storms, El Niño, and patch stability in a southern California kelp community. Science, 224: 283-285. doi:10.1126/science.224.4646.283 PMid:17734914
Engelen, A.H., P. Åberg, J.L. Olsen, W.T. Stam and A.M. Breeman. – 2005. Effects of wave exposure and depth on biomass, density and fertility of the fucoid seaweed Sargassum polyceratium (Phaeophyta, Sargassaceae). Eur. J. Phycol., 40 (2): 149-158. doi:10.1080/09670260500109210
Fernández, C. – 1999. Ecology of Sargassum muticum (Phaeophyta) on the north coast of Spain: IV. Sequence of colonization on a shore. Bot. Mar., 42: 553-562. doi:10.1515/BOT.1999.062
Fletcher, D.J. and A.J. Underwood. – 2002. How to cope with negative estimates of components of variance in ecological field studies. J. Exp. Mar. Biol. Ecol., 273: 89-95. doi:10.1016/S0022-0981(02)00142-9
Harries, D.B., S. Harrow, J.R. Wilson, J.M. Mair and D.W. Donnan. – 2007. The establishment of the invasive alga Sargassum muticum on the west coast of Scotland: a preliminary assessment of community effects. J. Mar. Biol. Ass. U.K., 87: 1057-1067. doi:10.1017/S0025315407057633
Hoffmann, A.J. and B. Santelices. – 1991. Banks of algal microscopic forms: hypotheses on their functioning and comparisons with seed banks. Mar. Ecol. Prog. Ser., 79: 185-194. doi:10.3354/meps079185
Horton, J.L. and H.S. Neufeld. – 1998. Photosynthetic responses of Microstegium vimineum (Trin.) A. Camus, a shade-tolerant C4 grass, to variable light environments. Oecologia, 114: 11-19. doi:10.1007/s004420050414
Isaeus, M., T. Malm, S. Persson and A. Svensson. – 2004. Effects of filamentous algae and sediment on recruitment and survival of Fucus serratus (Phaeophyceae) juveniles in the eutrophic Baltic Sea. Eur. J. Phycol., 39: 301-307. doi:10.1080/09670260410001714732
Jormalainen, V. and T. Honkanen. – 2004. Variation in natural selection for growth and phlorotannins in the brown alga Fucus vesiculosus. J. Evol. Biol., 17: 807-820. doi:10.1111/j.1420-9101.2004.00715.x PMid:15271080
Josenfson, A.B. and D.J. Conley. – 1997. Benthic response to a pelagic front. Mar. Ecol. Prog. Ser., 147: 49-62. doi:10.3354/meps147049
Lüning, K. – 1993. Environmental and internal control of seasonal growth in seaweeds. Hydrobiologia, 260: 1-14. doi:10.1007/BF00048997
Menge, B.A. – 1995. Indirect effects in marine rocky intertidal interaction webs: patterns and importance. Ecol. Monogr., 65: 21-74. doi:10.2307/2937158
Mooney, J.A. and J.A. Drake. – 1986. Ecology of biological invasions of North America and Hawaii. Ecol. Stud., 58: 1-321.
Norton, T.A. – 1977. Ecological experiments with Sargassum muticum. J. Mar. Biol. Ass. U.K., 57: 33-43.
Norton, T.A., A.C. Mathieson and M. Neushul. – 1981. Morphology and environment. In: S. Lobban and M. Wynne (eds.), The biology of seaweeds, pp. 421-451. Blackwell Scientific Publications, Oxford.
Pauchard, A., P. Alaback and E. Edlund. – 2003. Plant invasions in protected areas at multiple scales: Linaria vulgaris (Scrophulariaceae) in the West Yellowstone area. West. N. Am. Nat., 63: 416-428.
Pérez-Cirera, J.L., J. Cremades and I. Bárbara. – 1989. Precisiones sistemáticas y sinecológicas sobre algunas algas nuevas para Galicia o para las costas atlánticas de la Península Ibérica. An. Jard. Bot. Madrid, 46: 35-45.
Piazzi, L., D. Balata, M. Pertusati and F. Cinelli. – 2004. Spatial and temporal variability of Mediterranean macroalgal coralligenous assemblages in relation to habitat and substratum inclination. Bot. Mar., 47: 105-115. doi:10.1515/BOT.2004.010
Plouguerné, E., K. Le Lann, S. Connan, G. Jechoux, E. Deslandes and V. Stiger-Pouvreau. – 2006. Spatial and seasonal variation in density, reproductive status, length and phenolic content of the invasive brown macroalga Sargassum muticum (Yendo) Fensholt along the coast of Western Brittany (France). Aquat. Bot., 85: 337-344. doi:10.1016/j.aquabot.2006.06.011
Rejmanek, M. and D. M. Richardson. – 1996. What attributes make some plant species more invasive? Ecology, 77 (6): 1655-1661. doi:10.2307/2265768
Sánchez, I. and C. Fernández.- 2006. Resource availability and invisibility in an intertidal macroalgal assemblage. Mar. Ecol. Prog. Ser., 313: 85-94. doi:10.3354/meps313085
Schaffelke, B. and D.W. Klump. – 1997. Growth of germling of the macroalga Sargassum baccularia (Phaeophyta) is stimulated by enhanced nutrients. Proceeding of the 8th International Coral Reef Symposium, 2: 1839-1842.
Spector, T. and F.E. Putz. – 2006. Biomechanical plasticity facilitates invasion of maritime forests in the southern USA by Brazilian pepper (Schinus terebinthifolius). Biol. Inv., 8: 255-260. doi:10.1007/s10530-004-5571-x
Stæhr, P.A., F.M. Pedersen, M.S. Thomsen, Wernberg, T. and D. Krause-Jensen. – 2000. Invasion of Sargassum muticum in Limfjorden (Denmark) and its possible impact on the indigenous macroalgal community. Mar. Ecol. Prog. Ser., 207: 79-88. doi:10.3354/meps207079
Stohlgren, T.J., D. Binkley, G.W. Chong, M.A. Kalkhan, L.D. Schell, K.A. Bull, Y. Otsuki, G. Newman, M. Bashkin and Y. Son. – 1999. Exotic plant species invade hotspots of native diversity. Ecol. Monogr., 68: 25-46.
Underwood, A.J. – 1997. Experiments in ecology: their logical design and interpretation using analysis of variance. Cambridge University Press.
Underwood, A.J. and M.G. Chapman. – 1998. Spatial analyses of intertidal assemblages on sheltered rocky shores. Aust. J. Ecol., 23: 138-157. doi:10.1111/j.1442-9993.1998.tb00712.x
Verlaque, M. – 2001. Checklist of the macroalgae of Thau lagoon (Hérault, France), a hot spot of marine species introduction in Europe. Oceanol. Acta., 24: 29-49.
Viejo, R.M., J. Arrontes and N.L. Andrew. – 1995. An experimental evaluation of the effect of wave action on the distribution of Sargassum muticum in northern Spain. Bot. Mar., 38: 437-441.
Vilas, F., A. Bernabeu and G. Méndez. – 2005. Sediment distribution pattern in the Rias Baixas (NW Spain): main facies and hydrodynamic dependence. J. Mar. Syst., 54: 261-276. doi:10.1016/j.jmarsys.2004.07.016
Vitousek, P.M., H.A. Mooney, J. Lubchenco and J. Melillo. – 1997. Human domination of Earth’s ecosystem. Science, 277: 494-499. doi:10.1126/science.277.5325.494
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