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Integrated submerged aquatic vegetation management in an urban New Zealand river

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Abstract

A comprehensive overview of the waterway network in Christchurch City, New Zealand, classified the reaches of three rivers and numerous smaller waterways according to the values for which submerged aquatic vegetation should be managed. The priority values; drainage, recreation, fish habitat and native plants, were assigned according to Council's historical information on the river and with regard to comments they receive from the general public. The classification recognised that aquatic plants have positive and negative effects on the range of values that the waterway network supports, and that these values can be prioritised. In reaches selected on the basis of their value-based classification, field trials of modified management options were designed to establish seasonal growth patterns and the implications of a reduced level of maintenance. Results from trials that involved harvesting the central strip of deeper reaches of the Avon River, leaving submerged macrophyte habitat on either bank, and selective removal of Potamogeton crispusby hand raking in shallower areas, showed considerable seasonal and interannual variability in species dominance. This has implications for timing and frequency of harvesting. The long term aim is to establish management options that optimise for competing values, minimise maintenance costs and are based on a more comprehensive understanding of growth characteristics of the range of aquatic plant species in the river.

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References

  • Born, S. M. & W. C. Sonzogni, 1995. Integrated environmental management: Strengthening the conceptualisation. Envir. Mgmt 19: 167–181.

    Google Scholar 

  • Coffey, B. T., 1987. Submerged macrophytes: survey, conservation and control. Lake Managers Handbook. Water and Soil Misc. Publ. 103: 92–103.

    Google Scholar 

  • Eldon, G. A & G. R. Kelly, 1992. Fisheries survey of the Avon River 1991–1992. Fish. Envir. Rep. 137: 33 pp.

  • Howard-Williams, C., A.-M. Schwarz & V. Reid, 1996. Patterns of aquatic weed regrowth following mechanical harvesting in New Zealand hydro-lakes. Hydrobiologia 340 (Dev. Hydrobiol. 120): 229–234.

    Google Scholar 

  • Johnstone, I. M., 1986. Macrophyte management: an integrated perspective. New Zealand J. Mar. Freshwat. Res. 20: 599–614

    Google Scholar 

  • Johnstone, D. L., D L. Sutton, V. V. Vandiver, Jr. & K. A. Langeland, 1983. Replacement of Hydrilla by other aquatic plants in a pond with emphasis on growth of American Lotus. J. Aquat. Plant Mgmt 21: 41–43.

    Google Scholar 

  • Lillie, R. A. & J. Budd, 1992. Habitat architecture of Myriophyllum spicatum L. as an index to habitat quality for fish and macroinvertebrates. J. Freshwat. Ecol. 7: 113–125.

    Google Scholar 

  • Mitchell, D. S., 1979. Assessment of aquatic weed problems. J. Aquat. Plant Mgmt 17: 19–21.

    Google Scholar 

  • Mitchell, D. S., 1996. Interactions between national and local strategies for the management of aquatic weeds. Hydrobiologia 340 (Dev. Hydrobiol. 120): 153–156.

    Google Scholar 

  • Nichols, S. A., S. Engel & T. McNabb, 1988. Developing a plan to manage lake vegetation. Aquatics 10: 10–19.

    Google Scholar 

  • Petr, T., 1993. Aquatic weeds and fisheries production in developing regions of the world. J. Aquat. Plant Mgmt 31: 5–13.

    Google Scholar 

  • Robb, J. A., M. J. Manning, A. E. Marshall & A. McGil, 1994. A botanical survey of the Avon, Heathcote and Styx Rivers and their tributaries and the City Outfall Drain 1993–94. A report prepared for the Christchurch City Council: 143 pp.

  • Sabbatini, M. R. & K. J. Murphy, 1996. Response of Callitriche and Potamogeton to cutting, dredging and shade in English drainage channels. J. Aquat. Plant Mgmt 34: 8–12.

    Google Scholar 

  • Sand-Jensen, K., 1997. Macrophytes as biological engineers in the ecology of Danish streams. In Sand-Jensen, K. & O. Pedersen (eds), Freshwater Biology Priorities and Development in Danish Research: G.E.C. Gad Publishers Ltd., Copenhagen: 74–101.

    Google Scholar 

  • Snelder, T. & A. Schwarz, 1996. Aquatic vegetation management for Christchurch. NIWA Wat. & Atmos. 4: 22–24.

    Google Scholar 

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Schwarz, AM., Snelder, T. Integrated submerged aquatic vegetation management in an urban New Zealand river . Hydrobiologia 415, 235–241 (1999). https://doi.org/10.1023/A:1003839402075

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  • DOI: https://doi.org/10.1023/A:1003839402075

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