Explore how elevated CO2 levels trigger physiological, molecular and metabolic changes in Nannochloropsis oceanica microalgae, reshaping marine food webs through trophic transfer effects.
Discover how plant carbon transforms into stable soil carbon through microbial processes and physical protection mechanisms that could help mitigate climate change.
Explore how increasing atmospheric CO₂ reduces metabolic and physiological differences between isoprene-emitting and non-emitting poplars, reshaping forest ecology.
Exploring how poplar trees manage carbon-based secondary metabolites under climate change through groundbreaking FACE experiments
Discover how ancient plants survived Earth's most extreme climate shifts and what they can teach us about resilience in the face of environmental catastrophe.