Publication | Closed Access
Edaphic Factors are a More Important Control on Surface Fine Roots than Stand Age in Secondary Tropical Dry Forests
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Citations
61
References
2012
Year
EngineeringBotanyLand UseForestryAgricultural EconomicsForest ProductivityLand DegradationEdaphic FactorsRoot-soil InteractionDead RootsDead Fine RootsForest MeteorologyForest SoilBiogeochemistrySurface Fine RootsForest BiomassFine RootsStand AgeRoot MorphologyTree Growth
Abstract Although there are generalized conceptual models that predict how above and belowground biomass increase during secondary succession after abandonment from agriculture, there are few data to test these models for fine roots (defined as ≤2 mm diameter) in tropical forests. We measured live and dead fine roots (0–10 cm depth) in 18 plots of regenerating tropical dry forest in C osta R ica that varied in age from 5 to 60 yrs, as well as in soil properties. We predicted that both stand age and soil fertility would affect fine roots, with greater values in older forests on low fertility soils. Across two sampling dates and locations, live fine roots varied from 0.35 to 3.53 Mg/ha and dead roots varied from 0.15 to 0.93 Mg/ha. Surprisingly, there was little evidence that surface fine roots varied between sampling dates or in relation to stand age. By contrast, total, live, and dead fine roots averaged across sampling dates within plots were negatively correlated with a multivariate index of soil fertility ( P earson correlations coefficients were −0.64, −0.58, and −0.68, respectively; P < 0.01) and other individual edaphic variables including pH , silt, calcium, magnesium, nitrogen, and phosphorus. These results suggest that soil fertility is a more important determinant of fine roots than forest age in tropical dry forests in C osta R ica, and that one‐way these plant communities respond to low soil fertility is by increasing fine roots. Thus, simple conceptual models of forest responses to abandonment from agriculture may not be appropriate for surface fine roots.
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