2026/05/18 by Toby D. Jackson, Lucy V. J. Beese, Andy Hector +13 · 1 voice
Environmental Science · #Ecology and Vegetation Dynamics Studies #Seedling growth and survival studies #Forest ecology and management
paper · doi:10.1016/j.cub.2026.04.056
We urgently need to restore degraded tropical forests to mitigate the climate and biodiversity crises, but how to do so rapidly and cost-effectively remains an open question. Here, we provide a long-term, landscape-scale assessment of the effectiveness of enrichment tree planting and liana cutting, the two most common restoration interventions used across many tropical regions. Leveraging one of the world's largest and longest-running forest restoration experiments, we used repeated airborne laser scanning to track the 3D structural recovery of 500 ha of once-logged rainforest in Borneo. Over an 18-year period, enrichment planting increased mean canopy height by 1.6 m relative to unplanted controls. Remarkably, liana cutting increased canopy height more than four times faster (3.7 m over just 9 years). This recovery was jointly driven by accelerated tree growth and a 50% reduction in tree mortality. Given that liana cutting is around 10 times cheaper to implement than enrichment planting, our results suggest it provides a cost-effective, scalable solution to accelerate the structural recovery of logged tropical forests.