Biological Sciences
The ecology of congeneric resprouters and reseeders (Hypericum spp.) along fire-frequented pine savanna ecoclines
Abstract
dc:description.abstractResprouting and reseeding shrubs are predicted to be restricted to habitats with long and short return intervals of natural disturbances, respectively. Nonetheless, resprouters and reseeders co-occur along Gulf of Mexico coastal ecoclines where lightning-ignited fires were historically frequent. In this collection of studies, I examine fire responses, habitat associations, distribution limits, and seedling recruitment of <i>Hypericum</i> species along ecoclines in pine savannas of the St. Joe Bay State Buffer Preserve in Gulf County of Florida. In this area, ecoclines are characterized by topographic, soil moisture, and fire heterogeneity gradients. <i>Hypericum microsepalum</i>, an obligate resprouter, primarily resprouts following disturbances that remove aboveground stems. It is associated with upland, dry habitats that frequently burn, but can survive over a wide range of habitats along ecoclines. <i>Hypericum chapmanii</i>, an obligate reseeder, is killed by fires and recruits with a pulse of seedlings. <i>Hypericum brachyphyllum</i>, a facultative reseeder/resprouter, both reseeds and resprouts after low intensity disturbances, but only reseeds after high intensity disturbances. <i>Hypericum brachyphyllum</i> and <i>H. chapmanii</i> are associated with intermediate, mesic areas along ecoclines where fires become increasingly heterogeneous to rare as they move down slopes. These species have low survival outside of their original habitats. Direct effects of fire, specifically removal of aboveground biomass and litter, increase seedling recruitment of <i>H. brachyphyllum</i> and <i>H. chapmanii</i>. Fires have no direct effect on the growth of <i>H. brachyphyllum</i> to juvenile and reproductive adult stages, but indirectly increase growth of <i>H. chapmanii</i>. This is likely the result of fire facilitating regeneration of associated nurse plants. Therefore, fires are important for seedling recruitment and growth of <i>Hypericum</i> species. Time to reproduction is longer for <i>H. chapmanii</i> (3+ years) and <i>H. brachyphyllum</i> (3 years) than <i>H. microsepalum</i> (2 years). Differences in time to reproduction should cause species to segregate along a fire frequency gradient. I thus conclude that heterogeneous fires within a high fire frequency landscape may increase persistence of <i>Hypericum</i> resprouters and reseeders in higher and lower areas along ecoclines, respectively. It should also allow plants with different life histories to co-occur in intermediate areas along ecoclines where fires are patchy and vary in intensity.
Degree
thesis:*- Name thesis:degree_name
- Doctor of Philosophy (PhD)
- Level thesis:degree_level
- Dissertation
- Grantor
- Biological Sciences
- Year dc:date.available
- 2011
Author and committee
dc:creator, dc:contributor.*- Author dc:creator
-
- Crandall, Raelene Marie
Subjects
dc:subject × 5Rights
dc:rights- Statement dc:rights
-
- unrestricted
- Release the entire work immediately for access worldwide.
Identifiers
dc:identifier.*- Identifier
-
etd-01202011-180121
https://repository.lsu.edu/gradschool_dissertations/150 - OAI identifier oai:identifier
- oai:repository.lsu.edu:gradschool_dissertations-1149