Foliar and Wood Traits Covary along a Vertical Gradient within the Crown of Long-Lived Light-Demanding Species of the Congo Basin Semi-Deciduous Forest

Plant functional traits have shown to be relevant predictors of forest functional responses to climate change. However, the trait-based approach to study plant performances and ecological strategies has mostly been focused on trait comparisons at the interspecific and intraspecific levels. In this s...

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Autores principales: Kafuti, C., Bourland, N., Mil, T. de, Meeus, S., Rousseau, M., Toirambe, B., Bolaluembe, P-C., Ndjele, L., Beeckman, H.
Formato: Journal Article
Lenguaje:Inglés
Publicado: MDPI 2020
Materias:
Acceso en línea:https://hdl.handle.net/10568/112785
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author Kafuti, C.
Bourland, N.
Mil, T. de
Meeus, S.
Rousseau, M.
Toirambe, B.
Bolaluembe, P-C.
Ndjele, L.
Beeckman, H.
author_browse Beeckman, H.
Bolaluembe, P-C.
Bourland, N.
Kafuti, C.
Meeus, S.
Mil, T. de
Ndjele, L.
Rousseau, M.
Toirambe, B.
author_facet Kafuti, C.
Bourland, N.
Mil, T. de
Meeus, S.
Rousseau, M.
Toirambe, B.
Bolaluembe, P-C.
Ndjele, L.
Beeckman, H.
author_sort Kafuti, C.
collection Repository of Agricultural Research Outputs (CGSpace)
description Plant functional traits have shown to be relevant predictors of forest functional responses to climate change. However, the trait-based approach to study plant performances and ecological strategies has mostly been focused on trait comparisons at the interspecific and intraspecific levels. In this study, we analyzed traits variation and association at the individual level. We measured wood and leaf traits at different height locations within the crown of five individuals of Pericopsis elata (Harms) Meeuwen (Fabaceae) from the northern tropical forest of the Democratic Republic of the Congo. All traits varied between and within individuals. The between-individual variation was more important for leaf traits (23%–48%) than for wood traits (~10%) where the within-individual variation showed to be more important (33%–39%). The sample location height within the crown was found to be the driving factor of this within-individual variation. In a gradient from the base to the top of the crown, theoretical specific hydraulic conductivity and specific leaf area decreased while the stomatal density increased. We found significant relationships among traits and between wood and leaf traits. However, these relationships varied with the position within the crown. The relationship between vessel size and vessel density was negative at the bottom part of the crown but positive upward. Also, the negative relationship between stomatal density and stomatal size became stronger with increasing height within the crown. Finally, the positive relationship between specific leaf area and theoretical specific hydraulic conductivity became stronger in higher parts of the crown, suggesting that P. elata constantly adapts its water use with respect to its water supply, more strongly at the top of the crown where the environment is more extreme and less buffered against environmental fluctuations.
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spelling CGSpace1127852025-02-19T13:42:06Z Foliar and Wood Traits Covary along a Vertical Gradient within the Crown of Long-Lived Light-Demanding Species of the Congo Basin Semi-Deciduous Forest Kafuti, C. Bourland, N. Mil, T. de Meeus, S. Rousseau, M. Toirambe, B. Bolaluembe, P-C. Ndjele, L. Beeckman, H. wood rain forests climate change biodiversity forestry Plant functional traits have shown to be relevant predictors of forest functional responses to climate change. However, the trait-based approach to study plant performances and ecological strategies has mostly been focused on trait comparisons at the interspecific and intraspecific levels. In this study, we analyzed traits variation and association at the individual level. We measured wood and leaf traits at different height locations within the crown of five individuals of Pericopsis elata (Harms) Meeuwen (Fabaceae) from the northern tropical forest of the Democratic Republic of the Congo. All traits varied between and within individuals. The between-individual variation was more important for leaf traits (23%–48%) than for wood traits (~10%) where the within-individual variation showed to be more important (33%–39%). The sample location height within the crown was found to be the driving factor of this within-individual variation. In a gradient from the base to the top of the crown, theoretical specific hydraulic conductivity and specific leaf area decreased while the stomatal density increased. We found significant relationships among traits and between wood and leaf traits. However, these relationships varied with the position within the crown. The relationship between vessel size and vessel density was negative at the bottom part of the crown but positive upward. Also, the negative relationship between stomatal density and stomatal size became stronger with increasing height within the crown. Finally, the positive relationship between specific leaf area and theoretical specific hydraulic conductivity became stronger in higher parts of the crown, suggesting that P. elata constantly adapts its water use with respect to its water supply, more strongly at the top of the crown where the environment is more extreme and less buffered against environmental fluctuations. 2020-01-13 2021-03-08T08:54:12Z 2021-03-08T08:54:12Z Journal Article https://hdl.handle.net/10568/112785 en Open Access MDPI Kafuti, C. Bourland, N. De Mil, T. Meeus, S. Rousseau, M. Toirambe, B. Bolaluembe, P-C. Ndjele, L. Beeckman, H, 2020. Foliar and Wood Traits Covary along a Vertical Gradient within the Crown of Long-Lived Light-Demanding Species of the Congo Basin Semi-Deciduous Forest. Forests, 11 (1): 35. https://doi.org/10.3390/f11010035
spellingShingle wood
rain forests
climate change
biodiversity
forestry
Kafuti, C.
Bourland, N.
Mil, T. de
Meeus, S.
Rousseau, M.
Toirambe, B.
Bolaluembe, P-C.
Ndjele, L.
Beeckman, H.
Foliar and Wood Traits Covary along a Vertical Gradient within the Crown of Long-Lived Light-Demanding Species of the Congo Basin Semi-Deciduous Forest
title Foliar and Wood Traits Covary along a Vertical Gradient within the Crown of Long-Lived Light-Demanding Species of the Congo Basin Semi-Deciduous Forest
title_full Foliar and Wood Traits Covary along a Vertical Gradient within the Crown of Long-Lived Light-Demanding Species of the Congo Basin Semi-Deciduous Forest
title_fullStr Foliar and Wood Traits Covary along a Vertical Gradient within the Crown of Long-Lived Light-Demanding Species of the Congo Basin Semi-Deciduous Forest
title_full_unstemmed Foliar and Wood Traits Covary along a Vertical Gradient within the Crown of Long-Lived Light-Demanding Species of the Congo Basin Semi-Deciduous Forest
title_short Foliar and Wood Traits Covary along a Vertical Gradient within the Crown of Long-Lived Light-Demanding Species of the Congo Basin Semi-Deciduous Forest
title_sort foliar and wood traits covary along a vertical gradient within the crown of long lived light demanding species of the congo basin semi deciduous forest
topic wood
rain forests
climate change
biodiversity
forestry
url https://hdl.handle.net/10568/112785
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