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Introduction: Plant functional traits are widely used to predict community productivity. However, they are rarely used to predict the performance (in terms of growth diameter, growth height, survival, and integral response index) of woody species planted in degraded soils. Objective: To evaluate the relationship between the functional traits and the performance of 25 woody species planted in disturbed soils affected by oil extraction activities in Ecuadorian Amazon. Methods: Eighteen permanent sampling plots were established and five 6-month-old seedlings of each 25 species were randomly planted in each plot (125 individuals per plot), at a distance of 4×4 m. Eight quantitative functional traits (leaf size, specific leaf area, leaf nitrogen concentration, leaf phosphorus concentration, leaf minimum unit, leaf dry matter content, stem specific density and leaf tensile strength) were determined for each species. Results: The woody species with high performance shows greater leaf size, specific leaf area and Stem Specific Density than those showing low performance. Leaf nitrogen concentration and stem specific density had a direct relationship with the integral response index. The leaf size, leaf phosphorus concentration, leaf dry matter content and leaf tensile strength sows a negative relationship with the integral response index. Conclusions: Our study showed that the performance of woody species o disturbed soils can be predicted satisfyingly by leaf and stem functional traits, presumably because these traits capture most of environmental and neighborhood conditions.
multiple regression model., Dry matter, Growing species, Organic chemistry, quantitative traits, Horticulture, growing species, Agricultural and Biological Sciences, Tree-Crop Interactions, Specific leaf area, Crecimiento de especies, Suelos perturbados, Agroforestry Systems and Biodiversity Enhancement, Soil water, modelo de regresión múltiple., Photosynthesis, Agroecology and Sustainable Agriculture, Woody plant, Rasgos cuantitativos, Biology, Índice de respuesta integral, índice de respuesta integral, Ecology, Modelo de regresión múltiple, Leaf size, disturbed soils, Quantitative traits, Botany, Disturbed soils, Life Sciences, Paleontology, integral response index, Forestry, Phosphorus, Agronomy, Multiple regression models, Earth and Planetary Sciences, Chemistry, FOS: Biological sciences, Biogeographic Regionalization of Neotropical and Mexican Regions, Physical Sciences, Leaf area index, suelos perturbados, rasgos cuantitativos, crecimiento de especies, Integral response index, General Agricultural and Biological Sciences
multiple regression model., Dry matter, Growing species, Organic chemistry, quantitative traits, Horticulture, growing species, Agricultural and Biological Sciences, Tree-Crop Interactions, Specific leaf area, Crecimiento de especies, Suelos perturbados, Agroforestry Systems and Biodiversity Enhancement, Soil water, modelo de regresión múltiple., Photosynthesis, Agroecology and Sustainable Agriculture, Woody plant, Rasgos cuantitativos, Biology, Índice de respuesta integral, índice de respuesta integral, Ecology, Modelo de regresión múltiple, Leaf size, disturbed soils, Quantitative traits, Botany, Disturbed soils, Life Sciences, Paleontology, integral response index, Forestry, Phosphorus, Agronomy, Multiple regression models, Earth and Planetary Sciences, Chemistry, FOS: Biological sciences, Biogeographic Regionalization of Neotropical and Mexican Regions, Physical Sciences, Leaf area index, suelos perturbados, rasgos cuantitativos, crecimiento de especies, Integral response index, General Agricultural and Biological Sciences
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