Use este identificador para citar ou linkar para este item: http://www.alice.cnptia.embrapa.br/alice/handle/doc/1188919
Título: Aboveground similarity, belowground dominance: biomass allocation in Cerrado sensu stricto and Carrasco vegetation in the Brazilian Semi-Arid.
Autoria: OLIVEIRA, K. N.
MIGUEL, E. P.
REZENDE, A. V.
AZEVEDO, G. B. de
MARTINS, M. S.
MATRICARDI, E. A. T.
SCARIOT, A. O.
SANTOS, J. A. dos
STANGERLIN, D. M.
Afiliação: KENNEDY NUNES OLIVEIRA, UNIVERSITY OF BRASÍLIA (UNB); EDER PEREIRA MIGUEL, UNIVERSITY OF BRASÍLIA (UNB); ALBA VALÉRIA REZENDE, UNIVERSITY OF BRASÍLIA (UNB); GILENO BRITO DE AZEVEDO, FEDERAL UNIVERSITY OF MATO GROSSO DO SUL (UFMS); MATHEUS SANTOS MARTINS, BRAZILIAN FOREST SERVICE (SFB); ERALDO APARECIDO TRONDOLI MATRICARDI, UNIVERSITY OF BRASÍLIA (UNB); ALDICIR OSNI SCARIOT, CENARGEN; JUSCELINA ARCANJO DOS SANTOS, UNIVERSITY OF BRASÍLIA (UNB); DIEGO MARTINS STANGERLIN, UNIVERSITY OF BRASÍLIA (UNB).
Ano de publicação: 2026
Referência: Diversity, v. 18, n. 6, 348, 2026.
Conteúdo: This study quantified total biomass stocks in Carrasco (CAR, n = 12), a dense tropical deciduous vegetation type from the Brazilian semi-arid region for which biomass information remains scarce. We also evaluated differences in floristic composition, diversity, structure, and biomass allocation patterns relative to Cerrado sensu stricto (CSS, n = 40). Forest inventories were conducted in southeastern Brazil. Woody biomass was estimated using a regional allometric equation. Roots were sampled in a position adjacent to the plots, and litter was collected at the center of each plot using a frame. Necromass was assessed along a linear transect corresponding to the length of each plot using the line-intersect method. Biomass differences between vegetation types were assessed using generalized linear and mixed-effects models (GLMs and GLMMs). Total biomass reached 45.24 Mg ha−1 in CSS and 59.01 Mg ha−1 in CAR. In CSS, woody biomass predominated (20.47 Mg ha−1; 45%), followed by roots (18.47 Mg ha−1; 41%), litter (5.49 Mg ha−1; 12%), and necromass (0.81 Mg ha−1; 2%). In CAR, roots were the dominant component (32.37 Mg ha−1; 55%), followed by woody biomass (16.57 Mg ha−1; 28%), litter (8.39 Mg ha−1; 14%), and necromass (1.68 Mg ha−1; 3%). CSS and CAR shared only 10% of their species and showed significant differences in total biomass (TB) and belowground biomass (BGB), while aboveground biomass (AGB), aboveground woody biomass (AGWB), litter, and necromass did not differ significantly (α = 0.05). The BGB/AGWB ratio was <1 in CSS and >1 in CAR, resembling global patterns of savanna/shrubland and grassland formations, respectively. Considering the sampling design adopted, despite the higher stem density in CAR, larger individuals in CSS compensated for structural differences, resulting in similar aboveground biomass stocks. Our findings reinforce the floristic and structural distinctiveness of Carrasco and reveal contrasting biomass allocation strategies, with a strong dominance of belowground biomass in CAR. These results demonstrate that aboveground-based assessments can substantially underestimate total biomass in semi-arid transitional vegetation and highlight the need to incorporate non-forest ecosystems into biomass inventories, conservation planning, and climate change mitigation strategies.
NAL Thesaurus: Necromass
Roots
Savannas
Shrubs
Trees
Palavras-chave: Litter
Digital Object Identifier: https://doi.org/10.3390/d18060348
Tipo do material: Artigo de periódico
Acesso: openAccess
Aparece nas coleções:Artigo em periódico indexado (CENARGEN)

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