Plant internal oxygen concentrations can drop well below ambient even when the plant grows under optimal conditions. Using pea (Pisum sativum) roots, we show how amenable respiration adapts to hypoxia to save oxygen when the oxygen availability decreases. The data cannot simply be explained by oxygen being limiting as substrate but indicate the existence of a regulatory mechanism, because the oxygen concentration at which the adaptive response is initiated is independent of the actual respiratory rate. Two phases can be discerned during the adaptive reaction: an initial linear decline of respiration is followed by a nonlinear inhibition in which the respiratory rate decreased progressively faster upon decreasing oxygen availability. In cont...
Background and Aims: Plants regulate cellular oxygen partial pressures (pO2), together with reductio...
Plants are obligate aerobic organisms and, therefore, need oxygen for survival. However, unlike anim...
Complex multicellular organisms evolved on Earth in an oxygen-rich atmosphere1; their tissues, inclu...
Plant internal oxygen concentrations can drop well below ambient even when the plant grows under opt...
Oxygen can fall to low concentrations within plant tissues, either because of environmental factors ...
Low oxygen stress often occurs during the life of green organisms, mostly due to the environmental c...
Low oxygen stress often occurs during the life of green organisms, mostly due to the environmental c...
Low oxygen stress often occurs during the life of green organisms, mostly due to the environmental c...
Plants are obligate aerobic organisms and, therefore, need oxygen for survival. However, unlike anim...
Low oxygen stress often occurs during the life of green organisms, mostly due to the environmental c...
Low oxygen stress often occurs during the life of green organisms, mostly due to the environmental c...
Low oxygen stress often occurs during the life of green organisms, mostly due to the environmental c...
Oxygen can fall to low concentrations within plant tissues, either because of environmental factors ...
A mechanism by which plants detect and respond to oxygen starvation has been known for some years. T...
A mechanism by which plants detect and respond to oxygen starvation has been known for some years. T...
Background and Aims: Plants regulate cellular oxygen partial pressures (pO2), together with reductio...
Plants are obligate aerobic organisms and, therefore, need oxygen for survival. However, unlike anim...
Complex multicellular organisms evolved on Earth in an oxygen-rich atmosphere1; their tissues, inclu...
Plant internal oxygen concentrations can drop well below ambient even when the plant grows under opt...
Oxygen can fall to low concentrations within plant tissues, either because of environmental factors ...
Low oxygen stress often occurs during the life of green organisms, mostly due to the environmental c...
Low oxygen stress often occurs during the life of green organisms, mostly due to the environmental c...
Low oxygen stress often occurs during the life of green organisms, mostly due to the environmental c...
Plants are obligate aerobic organisms and, therefore, need oxygen for survival. However, unlike anim...
Low oxygen stress often occurs during the life of green organisms, mostly due to the environmental c...
Low oxygen stress often occurs during the life of green organisms, mostly due to the environmental c...
Low oxygen stress often occurs during the life of green organisms, mostly due to the environmental c...
Oxygen can fall to low concentrations within plant tissues, either because of environmental factors ...
A mechanism by which plants detect and respond to oxygen starvation has been known for some years. T...
A mechanism by which plants detect and respond to oxygen starvation has been known for some years. T...
Background and Aims: Plants regulate cellular oxygen partial pressures (pO2), together with reductio...
Plants are obligate aerobic organisms and, therefore, need oxygen for survival. However, unlike anim...
Complex multicellular organisms evolved on Earth in an oxygen-rich atmosphere1; their tissues, inclu...