| Title: |
Aboveground production and nutrient circulation along a flooding gradient in a South Carolina Coastal Plain forest |
| Author(s): |
Burke, Marianne K.; Lockaby, B. Graeme; Conner, William H. |
| Date: |
1999 |
| Source: |
Canadian Journal of Forest Research.29: 1402-1418. |
| Description: |
Relative to effects of flooding, little is known about the influence of hydrology-nutrient interactions on aboveground net primary production (NPP) in forested wetlands. The authors found that nutrient circulation and NPP were closely related along a complex physical, chemical, and hydrologic gradient in a bottomland hardwood forest with four distinct communities. Aboveground biomass, NPP, biomass partitioning to stem production, growth efficiency, and soil macronutrient availability were greatest in the flooded zone, possibly because of the stable hydrologic regime. In the wet transition zone, trees were least productive, nutrient use efficiency was highest, and N retranslocation from foliage before abscission was "complete." Wet and dry transition zones had the lowest litterfall quality. Soil organic matter was negatively correlated with extractable NH4-N plus NO3-N before in situ incubations and positively correlated with litterfall lignin/N ratios. Lignin/P and C/N ratios were positively correlated with exchangeable soil Ca and Mg, cation exchange capacity, and clay content, and negatively correlated with extractable soil P. The scientists concluded that periodic flooding and associated widely fluctuating soil chemistry resulted in disequilibrium between the plant community and environmental conditions, which led to nutrient deficiency and low NPP in the transition zones compared with the continuously flooded and mesic zones. |
| Key Words: |
|
![[ PDF Icon ] [ PDF Icon ]](../images/pdficonarrow.gif) |
View and Print this Publication (951 KB) |
| Pristine Version |
An uncaptured or "pristine" version of this publication is available. It has not been subjected to OCR (Optical Character Recognition) and therefore does not have any errors in the text. However it is a larger file size and some people may experience long download times. The "pristine" version of this publication is available here:
View and Print the PRISTINE copy of this Publication (6.7 MB)
|
| Publication Notes: |
- We recommend that you also print this page and attach it to the printout of the article, to retain the full citation information.
- This article was written and prepared by U.S. Government employees on official time, and is therefore in the public domain.
- Our on-line publications are scanned and captured using Adobe Acrobat. During the capture process some typographical errors may occur. Please contact the SRS Webmaster, srswebmaster@fs.fed.us if you notice any errors which make this publication unuseable.
|
![[ Get Acrobat ]](/images/getacro.gif) |
Get the latest version of the Adobe Acrobat reader or Acrobat Reader for Windows with Search and Accessibility |