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The root profile depends on easily determined parameters, linked to stream dynamics, vegetation and soil characteristics.
The potential of Leucaena leucocephala as an erosion control plant was investigated in terms of its capacity of root reinforcement, root profile and root shear strength.
A function describing the vertical root profile has been analytically obtained by coupling a white shot noise representation of the river level variability to a description of the dynamics of root growth and decay.
Against this background, 30 rubber trees with a root profile of up to 2 m were destructively harvested and 882 rubber trees were measured non-destructively in 27 plots, covering rotation lengths of 4 35 years, elevation gradients of 621 1127 m, and locally used clone types (GT1, PRIM600, Yunyan77-4) in mountainous South Western China.
In the context of the local approaches to fatigue design of welded joints, the notch stress intensity factor (NSIF) approach assumes the weld toe as well as the weld root profile as sharp V-shaped notches, the V-notch opening angle being greater than zero at the toe side and equal to zero at the root side.
The plant function types influence the vertical distribution of SOC within the profile [56] where grasses have a shallow root profile while shrubs have a deeper root profile.
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In contrast, a lower river variability determines root profiles with higher mean root depths.
We propose a method for assessing root profiles by means of hydrological, pedological and above-ground vegetation information.
We conclude by briefly touching on available and developing technologies for quantitative root phenotyping from lab to field, from quantification of partial root profiles in the field to 3D reconstruction of whole root systems.
In lateral root profiles, a linear relationship was found between phosphatase activity and root hair length at 0 cm (7 nKat mm-2), 0.2 cm (48 nKat mm−2), and 2 cm (234 nKat mm−2) distance from the root tips (r = 0.9795, p < 0.0001); an algorithm designed to optimise estimates of phosphatase activity longitudinally confirmed this relationship (r = 0.9462, p < 0.0001).
Rudd, K, Alberton, J.A., and Ferrari, S. Optimal Root Profiles in Water-Limited Ecosystems, Advances in Water Resources, Vol. 71, pp. 16-22, 2014.
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