Most vascular plants acclimate respiration to changes in ambient temperature, but explicit tests of these responses in field settings are rare, and how acclimation responses vary in space and time is relatively unstudied, hindering our ability to predict respiratory release of carbon under future climatic conditions. We measured temperature response curves of leaf respiration for three deciduous tree species from 2009 to 2012 in a field warming experiment (+3.4 °C above ambient) in both open and understory conditions at two sites in the southern boreal forest in Minnesota, USA. We analyzed the effects of warming on leaf respiration, and how the effects varied among species, times of season (early, middle and late parts of the growing season...
Rising mean annual temperatures due to climate change have intensified the need to understand the ef...
Given the contrasting short-term temperature dependences of gross primary production (GPP) and autot...
We measured the responses of leaf respiration to temperature and leaf characteristics of Quercus rub...
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...
Global air temperatures are predicted to rise 1° to 4.5° Celsius by the year 2100. This climatic cha...
Short-term temperature response curves of leaf dark respiration (R–T) provide insights into a critic...
Acclimation of plant respiration rates (R) to climate warming is highly variable and many results ap...
The forests of the northeastern US are globally, one of the fastest growing terrestrial carbon sinks...
Understanding physiological acclimation of photosynthesis and respiration is important in elucidatin...
Quantifying the adjustments of leaf respiration in response to seasonal temperature variation and cl...
Summary: 1. Leaf respiratory temperature responses and general leaf properties of Quercus rubra were...
Rising temperatures caused by climate change could negatively alter plant ecosystems if temperatures...
Although it has long been recognized that physiological acclimation of photosynthesis and respiratio...
Evergreen species are widespread across the globe, representing two major plant functional forms in ...
Rising mean annual temperatures due to climate change have intensified the need to understand the ef...
Given the contrasting short-term temperature dependences of gross primary production (GPP) and autot...
We measured the responses of leaf respiration to temperature and leaf characteristics of Quercus rub...
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...
Global air temperatures are predicted to rise 1° to 4.5° Celsius by the year 2100. This climatic cha...
Short-term temperature response curves of leaf dark respiration (R–T) provide insights into a critic...
Acclimation of plant respiration rates (R) to climate warming is highly variable and many results ap...
The forests of the northeastern US are globally, one of the fastest growing terrestrial carbon sinks...
Understanding physiological acclimation of photosynthesis and respiration is important in elucidatin...
Quantifying the adjustments of leaf respiration in response to seasonal temperature variation and cl...
Summary: 1. Leaf respiratory temperature responses and general leaf properties of Quercus rubra were...
Rising temperatures caused by climate change could negatively alter plant ecosystems if temperatures...
Although it has long been recognized that physiological acclimation of photosynthesis and respiratio...
Evergreen species are widespread across the globe, representing two major plant functional forms in ...
Rising mean annual temperatures due to climate change have intensified the need to understand the ef...
Given the contrasting short-term temperature dependences of gross primary production (GPP) and autot...
We measured the responses of leaf respiration to temperature and leaf characteristics of Quercus rub...