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Forests play a critical role in Bhutan’s climate mitigation strategy, sequestering atmospheric carbon at a rate that enables the country to boast a net negative emissions status. Understanding how the complex topography and climate of Bhutan constrain tree growth is essential for managing this resource and predicting future responses to climate change. This study utilised dendrochronological and allometric techniques to explore how elevation (2,200–3,000 m) and aspect (north/south) influence the climate sensitivity of socio-economically important blue pine ( Pinus wallichiana ) in Western Bhutan and providing the first investigation into their influence on annual biomass accumulation. Total aboveground biomass (TAGB) and carbon accumulation rates were greater at lower elevations (2,200–2,400 m). Predicted peaks in TAGB and carbon accumulation occurred at 2,350 m, averaging 24.5 and 11.5 kg tree -1 year -1 , respectively. Mean TAGB accumulation rates were significantly greater on south-facing slopes (14.8 ± 6.5 kg tree -1 year -1 ) compared to the north-facing slopes (11.9 ± 5.2 kg tree -1 year -1 ). Dendroclimatic analysis and regression trees revealed April precipitation and late-season (August-September) minimum temperature to be major drivers of blue pine growth. These findings highlight topographically driven growth patterns useful for proactive management of blue pine. • April precipitation is a major driver of blue pine at Chapcha, Bhutan. • Biomass and carbon accumulation were greater on south-facing aspects. • Lower elevations (2,200–2,400 m) accumulated biomass and carbon faster. • A predicted peak in growth rates occurred at 2,350 m. • Blue pine ( Pinus wallichiana ) is predicted to migrate upslope with climate change.
Dornan et al. (Tue,) studied this question.