Affiliation:
1. US Geological Survey, Louisiana Cooperative Fish and Wildlife Research Unit, 124 School of Renewable Natural Resources, LSU AgCenter, Baton Rouge, LA
2. Louisiana State University Agricultural Center, Baton Rouge, LA
Abstract
AbstractBottomland hardwoods are floodplain forests along rivers and streams throughout the southeastern United States. The interrelations among hydrology, soils, geomorphic landforms, and tree species composition are the foundation of forest management in bottomland hardwoods, and historically their correspondence has allowed for somewhat predictable forest responses based upon the hydrogeomorphic setting. However, extensive hydrologic and geomorphic modifications in floodplains have disrupted these interrelations and, on many sites, have created novel disturbance regimes resulting in unpredictable forest responses. Reduced or altered timing of surface flooding and groundwater declines are common in the region and have favored increases in stem densities, particularly of species less tolerant of flooding and more tolerant of shade. In these highly modified systems, more process-level understanding of floodplain hydrology, soil moisture dynamics, interspecific tree competition, and regeneration is needed to develop more effective management prescriptions and for forestry to be represented in integrated water-resource management decisions.
Funder
National Institute of Food and Agriculture
Publisher
Oxford University Press (OUP)
Cited by
18 articles.
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