Seagrass planting in the southeastern United States: Methods for accelerating habitat development

Fonseca MS, Kenworthy WJ, Courtney FX, Hall MO. 1994. Seagrass planting in the southeastern United States: Methods for accelerating habitat development. Restoration Ecology: The Journal of the Society for Ecological Restoration. 2(3):198-212

Seagrass transplanting experiments were conducted in Back Sound, Carteret County, North Carolina, and Tampa Bay, Pinellas County, Florida. In Florida, we compared three planting methods (cores, stapled bare root, and peat-pot plugs) for shoot addition rate, coverage, and labor cost (harvest, fabrication, and deployment) using Halodule wrightii. Only planting methods and development rates were recorded for Syringdium filiforme. Fertilizer additions were made to peat-pot plantings of H. wrightii and Zostera marina in both North Carolina and Florida. Exclosure cages were tested to attempt to minimize bioturbation of H. wrightii and Z. marina in both North Carolina and Florida. Recovery from harvesting impacts to existing, natural beds of S. filiforme and H. wrightii were assessed in Florida. The peat-pot method was about 35 percent and 63 percent less expensive in work time than staples and core tubes, repectively. Response to fertilizer additions was masked by inconsistent release properties of the fertilizer, although some indication of positive response to phosphorus fertilizer in sediments with low carbonate content, and nitrogen in general, was detected. Complete loss of peat pots, largely ascribed to bioturbation, occured in a large planting (Tampa Bay) but not in nearby smaller ones where exclosure cages were used. Cages did not affect planting unit survival in North Carolina but did improve number of shoots per planting unit in one of three experiments. No detrimental effects of cages were noted. Existing natural beds used to harvest transplanting stock in Tampa Bay recovered from excavations as large as 0.5 m squared in one year. Significant cost savings were found to be possible through methodological improvement, including planting techniques, bioturbation exclusion, and possibly fertilizer additions. Abstract provided by author.

Type
Journal Article
Authors
Fonseca, Mark; Kenworthy, W.; Courtney, F.; Hall, M.
Units
BISC , BUIS
Keywords
Gulf Of Mexico, Halodule wrightii, Manatee grass, Research Methods, Restoration, Revegetation, Seagrass, Shoal grass, Syringodium filiforme, Transplanting, Zostera

Series

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