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a Oregon State Univ., Corvallis, OR 97331
b Virginia Tech, Blacksburg, VA 24061
c USDA-ARS ASFRC, Beaver, WV 25813
d Virginia Tech, Southern Piedmont Agric. Res. and Ext. Center, Blackstone, VA 23824
* Corresponding author (jfike{at}vt.edu)
Received for publication July 1, 2005. Incorporating trees into pastures may alter forage nutritive value. The objective of this study was to determine nutritive value in response to trees and slope position in an emulated (no animals) silvopasture. In 1995, black walnut (Juglans nigra L.) and honey locust (Gleditsia triacanthos L.) trees were planted within three block plots of predominantly tall fescue (Lolium arundinaceum (Schreb.) Darbysh.) pasture. Soils on the site, (Unison and Braddock) are fine, mixed mesic Typic Hapludults, well drained, with moderately steep slopes (1025%). Trees were planted down slopes in rows to create low-, medium-, and high-tree densities at shoulder-, mid-, and toe-slope positions. Forage from sampling sites (n = 54) under field treatment combinations was harvested May, June, and July in 2002 and 2003. Concentrations of neutral and acid detergent fiber (NDF, ADF), acid detergent lignin (ADL), crude protein (CP), total nonstructural carbohydrate (TNC) and Ca, P, Mg, and K were determined. Few differences due to treatment were observed for NDF and ADF concentrations. Concentrations of TNC decreased with greater tree density and appeared to follow tree leaf growth. Crude protein concentrations were typically greater under honey locust trees. Forage mineral concentrations frequently were greater with increased tree density. Trees appear to have both positive and negative effects on forage nutritive value, and their effects on animal performance warrants further research.
Abbreviations: ADF, acid detergent fiber ADL, acid detergent lignin CP, crude protein NDF, neutral detergent fiber PAR, photosynthetically active radiation TNC, total nonstructural carbodydrate
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