In restoration plantings in degraded pastures, initial soil nutrient status may lead to differential growth of tropical tree species with diverse life history attributes and capacity for N2fixation. In 2006, we planted 1,440 seedlings of 15 native tree species in 16 fenced plots (30 × 30 m) in a 60‐year‐old pasture in Los Tuxtlas, Veracruz, Mexico, in two planting combinations. In the first year, we evaluated bulk density,pH, the concentration of organic carbon (C), total nitrogen (N), ammonia ( ), nitrate ( ), and total phosphorus (P) in the upper soil profile (0–20 cm in depth) of all plots. The first two axes of two principal component analyses explained more than 60% of the variation in soil variables: The axes were related to increasing bulk density, , , total N concentration, andpH. Average relative growth rates in diameter at the stem base of the juvenile trees after 6 years were higher for pioneer (45.7%) and N2‐fixing species (47.6%) than for nonpioneer (34.7%) and nonfixing species (36.2%). Most N2‐fixing species and those with the slowest growth rates did not respond to soil attributes. Tree species benefited from higherpHlevels and existing litter biomass. The pioneersFicus yoponensis,Cecropia obtusifolia, andHeliocarpus appendiculatus, and the N2‐fixing nonpioneersCojoba arborea,Inga sinacae, andPlatymiscium dimorphandrumwere promising for forest restoration on our site, given their high growth rates.
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Martínez‐Garza et al. (2016) studied this question.
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