On the African continent, the population is expected to expand fourfold in
the next century, which will increasingly impact the global carbon cycle
and biodiversity conservation. Therefore, it is of vital importance to
understand how carbon stocks and community assembly recover after
slash-and-burn events in tropical second-growth forests. We inventoried a
chronosequence of 15 1-hectare plots in lowland tropical forest of the
central Congo Basin and evaluated changes in aboveground and soil organic
carbon stocks and in tree species diversity, functional composition and
community-weighted functional traits with succession. We aimed to track
long-term recovery trajectories of species and carbon stocks in secondary
forests, comparing 5 to 200+ year old secondary forest with reference
primary forest. Along the successional gradient, the functional
composition followed a trajectory from resource acquisition to resource
conservation, except for nitrogen-related leaf traits. Despite a fast
initial recovery of species diversity and functional composition, there
were still important structural and carbon stock differences between
old-growth secondary and pristine forest, which suggests that a full
recovery of secondary forests might take much longer than currently shown.
As such, the aboveground carbon stocks of 200+ year old forest were only
57% of those in the pristine reference forest, which suggests a slow
recovery of aboveground carbon stocks, although more research is needed to
confirm this observation. The results of this study highlight the need for
more in-depth studies on forest recovery in Central Africa, to gain
insight into the processes that control biodiversity and carbon stock
recovery. Supplementary
InformationRaw data underlying the
analyses in the publication.