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1.
Sci Adv ; 6(51)2020 12.
Artigo em Inglês | MEDLINE | ID: mdl-33355136

RESUMO

Tropical forests have played an important role as a carbon sink over time. However, the carbon dynamics of Brazilian non-Amazon tropical forests are still not well understood. Here, we used data from 32 tropical seasonal forest sites, monitored from 1987 to 2020 (mean site monitoring length, ~15 years) to investigate their long-term trends in carbon stocks and sinks. Our results highlight a long-term decline in the net carbon sink (0.13 Mg C ha-1 year-1) caused by decreasing carbon gains (2.6% by year) and increasing carbon losses (3.4% by year). The driest and warmest sites are experiencing the most severe carbon sink decline and have already moved from carbon sinks to carbon sources. Because of the importance of the terrestrial carbon sink for the global climate, policies are needed to mitigate the emission of greenhouse gases and to restore and protect tropical seasonal forests.

2.
Acta sci., Biol. sci ; 40: e39466, 20180000. ilus, map, tab, graf
Artigo em Inglês | LILACS-Express | LILACS, VETINDEX | ID: biblio-1460832

RESUMO

Our objective was to evaluate the floristic and structural relationships between Canga tree communities and other vegetation types inserted in the physiognomic units set, in order to test the hypothesis that these communities have unique characteristics due to their specific environmental conditions. For this, we compared the structural and floristic attributes of Canga vegetation with adjacent semideciduous seasonal forest, Savanna and ecotone areas, evaluating the similarity in its behavior. Our results demonstrate the existence of distinct relationships among vegetation types in relation to different perspectives, related to macro-scale environmental attributes and to the phytogeographic context. In general, Canga tree vegetation has its structure associated with open vegetation types, such as the Cerrado (Savanna) and its composition associated with forest vegetation types, constituted by a community with specific ecological characteristics. Our results suggest the presence of ferruginous soils as a factor that contributes to environmental and ecological heterogeneity in vegetation matrices.


Nosso objetivo foi avaliar as relações florísticas e estruturais entre comunidades arbóreas de Canga e outros tipos vegetacionais inseridos no conjunto de unidades fisionômicas para testar a hipótese de que estas comunidades apresentam características singulares devido às suas condições ambientais especificas. Para isso, comparamos atributos estruturais e florísticos deste tipo vegetacional com outras adjacentes tais como floresta estacional semidecídua, Cerrado e áreas ecotonais, avaliando a similaridade em seu comportamento. Nossos resultados demonstram a existência de relações distintas entres os tipos vegetacionais com relação às diferentes perspectivas, relacionadas à atributos ambientais de macro escala e ao contexto fitogeográfico. No geral, vegetação de canga tem sua estrutura associada a tipos vegetacionais de menor porte como Cerrado e sua composição associada a tipos vegetacionais florestais, consistindo em uma comunidade com características ecológicas específicas. Nossos resultados sugerem a presença de solos ferruginosos como um fator que contribui para a heterogeneidade ambiental e ecológica em matrizes vegetacionais.

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