4.5 Article

Phosphorus Availability and Salinity Control Productivity and Demography of the Seagrass Thalassia testudinum in Florida Bay

期刊

ESTUARIES AND COASTS
卷 32, 期 1, 页码 188-201

出版社

SPRINGER
DOI: 10.1007/s12237-008-9116-x

关键词

Seagrass; Productivity; Demography; Phosphorus; Salinity; Long-term monitoring

资金

  1. National Science Foundation
  2. Florida Coastal Everglades Long-Term Ecological Research program [DBI-0620409, DEB-9910514]
  3. Everglades National Park [J5284-07-0029]
  4. Florida Sea [UF08029]
  5. Florida International University [408]

向作者/读者索取更多资源

Biomass, net primary productivity (NPP), foliar elemental content, and demography of Thalassia testudinum were monitored in populations from five sites across Florida Bay beginning in January 2001. Sites were selected to take advantage of the spatial variability in phosphorus (P) availability and salinity climates across the bay. Aboveground biomass and NPP of T. testudinum were determined five to six times annually. Short-shoot demography, belowground biomass, and belowground NPP were assessed from a single destructive harvest at each site and short-shoot cohorts were estimated from leaf scar counts multiplied by site-specific leaf production rates. Biomass, relative growth rate (RGR), and overall NPP were positively correlated with P availability. Additionally, a positive correlation between P availability and the ratio of photosynthetic to non-photosynthetic biomass suggests that T. testudinum increases allocation to aboveground biomass as P availability increases. Population turnover increased with P availability, evident in positive correlations of recruitment and mortality rates with P availability. Departures from seasonally modeled estimates of RGR were found to be influenced by salinity, which depressed RGR when below 20 psu or above 40 psu. Freshwater management in the headwaters of Florida Bay will alter salinity and nutrient climates. It is becoming clear that such changes will affect T. testudinum, with likely feedbacks on ecosystem structure, function, and habitat quality.

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