Download critical data center12/16/2023 ![]() ![]() Darcy’s law predicts widespread forest mortality under climate warming. Systemic effects of rising atmospheric vapor pressure deficit on plant physiology and productivity. Limited-transpiration response to high vapor pressure deficit in crop species. Mechanisms of woody-plant mortality under rising drought, CO 2 and vapour pressure deficit. Nonlinear temperature effects indicate severe damages to US crop yields under climate change. Combined influence of soil moisture and atmospheric evaporative demand is important for accurately predicting US maize yields. Rigden, A., Mueller, N., Holbrook, N., Pillai, N. Greater sensitivity to drought accompanies maize yield increase in the US Midwest. Changes in the drought sensitivity of US maize yields. Nonlinear heat effects on African maize as evidenced by historical yield trials. Climate tipping points-too risky to bet against. Abrupt non-linear climate change, irreversibility and surprise. Early-warning signals for critical transitions. How close are we to the temperature tipping point of the terrestrial biosphere? Sci. Global non-linear effect of temperature on economic production. Higher temperatures increase suicide rates in the United States and Mexico. IPCC Climate Change 2022: Impacts, Adaptation, and Vulnerability (eds. Plant responses to rising vapor pressure deficit. Soil moisture dominates dryness stress on ecosystem production globally. Not so robust: Robusta coffee production is highly sensitive to temperature. Resilience potential of the Ethiopian coffee sector under climate change. Least concern to endangered: applying climate change projections profoundly influences the extinction risk assessment for wild Arabica coffee. Arabica-like flavour in a heat-tolerant wild coffee species. The impact of climate change on indigenous arabica coffee ( Coffea arabica): predicting future trends and identifying priorities. ![]() High extinction risk for wild coffee species and implications for coffee sector sustainability. Coffea arabica yields decline in Tanzania due to climate change: global implications. Global project needed to tackle coffee crisis. ![]()
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