Evergreen species are widespread across the globe, representing two major plant functional forms in terrestrial models. We reviewed and analysed the responses of photosynthesis and respiration to warming in 101 evergreen species from boreal to tropical biomes. Summertime temperatures affected both latitudinal gas exchange rates and the degree of responsiveness to experimental warming. The decrease in net photosynthesis at 25 degrees C (A(net25)) was larger with warming in tropical climates than cooler ones. Respiration at 25 degrees C (R-25) was reduced by 14% in response to warming across species and biomes. Gymnosperms were more sensitive to greater amounts of warming than broadleaved evergreens, with A(net25) and R-25 reduced c. 30-40% w...
The temperature response of photosynthesis is one of the key factors determining predicted responses...
The temperature response of photosynthesis is one of the key factors determining predicted responses...
Climate warming is expected to increase respiration rates of tropical forest trees and lianas, which...
While trees can acclimate to warming, there is concern that tropical rainforest species may be less ...
Understanding physiological acclimation of photosynthesis and respiration is important in elucidatin...
Plant respiration constitutes a massive carbon flux to the atmosphere, and a major control on the ev...
Plant respiration constitutes a massive carbon flux to the atmosphere, and a major control on the ev...
Plant respiration constitutes a massive carbon flux to the atmosphere, and a major control on the ev...
Understanding physiological acclimation of photosynthesis and respiration is important in elucidatin...
Most vascular plants acclimate respiration to changes in ambient temperature, but explicit tests of ...
Plant respiration results in an annual flux of carbon dioxide (CO2) to the atmosphere that is six ti...
Plant respiration results in an annual flux of carbon dioxide (CO2) to the atmosphere that is six ti...
The temperature response of photosynthesis is one of the key factors determining predicted responses...
The temperature response of photosynthesis is one of the key factors determining predicted responses...
Climate warming is expected to increase respiration rates of tropical forest trees and lianas, which...
The temperature response of photosynthesis is one of the key factors determining predicted responses...
The temperature response of photosynthesis is one of the key factors determining predicted responses...
Climate warming is expected to increase respiration rates of tropical forest trees and lianas, which...
While trees can acclimate to warming, there is concern that tropical rainforest species may be less ...
Understanding physiological acclimation of photosynthesis and respiration is important in elucidatin...
Plant respiration constitutes a massive carbon flux to the atmosphere, and a major control on the ev...
Plant respiration constitutes a massive carbon flux to the atmosphere, and a major control on the ev...
Plant respiration constitutes a massive carbon flux to the atmosphere, and a major control on the ev...
Understanding physiological acclimation of photosynthesis and respiration is important in elucidatin...
Most vascular plants acclimate respiration to changes in ambient temperature, but explicit tests of ...
Plant respiration results in an annual flux of carbon dioxide (CO2) to the atmosphere that is six ti...
Plant respiration results in an annual flux of carbon dioxide (CO2) to the atmosphere that is six ti...
The temperature response of photosynthesis is one of the key factors determining predicted responses...
The temperature response of photosynthesis is one of the key factors determining predicted responses...
Climate warming is expected to increase respiration rates of tropical forest trees and lianas, which...
The temperature response of photosynthesis is one of the key factors determining predicted responses...
The temperature response of photosynthesis is one of the key factors determining predicted responses...
Climate warming is expected to increase respiration rates of tropical forest trees and lianas, which...