$\bullet$ Continued problems in regenerating oak forests has led to a need for more basic information on oak seedling biology. $\bullet$ In the present study, carbon allocation and morphology were compared between cherrybark oak (Quercus pagoda Raf.) seedlings and sprouts at 1-Lag grown in full, 47%, and 20% sunlight. $\bullet$ Results indicated that cherrybark oak seedling carbon allocation and morphology responded plastically to light availability. In full light, roots were sinks for $^{14}$C, while shoots were sinks for $^{14}$C under reduced light availability. Cherrybark oak sprouts exhibited similar carbon allocation patterns in response to light availability, but displayed stronger shoot sinks than seedlings when grown underr...
A semi-closed 13CO2 labelling system (1.5% 13C) was used to assess both carbon uptake and allocatio...
Sprouting by woody plants can increase species resilience to disturbance and foster regeneration dur...
Sprouting by woody plants can increase species resilience to disturbance and foster regeneration dur...
We used 14C tracers to determine photosynthate distribution in cherrybark oak (Quercus pagoda Raf.) ...
Cherrybark oak (Quercrrs pagoda Raf.) seedlings were established and raised in the field under four ...
$\bullet$ The combined effect of water stress and light on seedlings of forest species is a key fact...
Sprouting by woody plants can increase species resilience to disturbance and foster regeneration dur...
Sprouting by woody plants can increase species resilience to disturbance and foster regeneration dur...
Sprouting by woody plants can increase species resilience to disturbance and foster regeneration dur...
To better understand the regeneration ecology of northern red oak (Quercus rubra L.) in mesic forest...
A semi-closed 13CO2 labelling system (1.5% 13C) was used to assess both carbon uptake and allocatio...
To better understand the regeneration ecology of northern red oak (Quercus rubra L.) in mesic forest...
Sprouting by woody plants can increase species resilience to disturbance and foster regeneration dur...
A semi-closed 13CO2 labelling system (1.5% 13C) was used to assess both carbon uptake and allocatio...
Sprouting by woody plants can increase species resilience to disturbance and foster regeneration dur...
A semi-closed 13CO2 labelling system (1.5% 13C) was used to assess both carbon uptake and allocatio...
Sprouting by woody plants can increase species resilience to disturbance and foster regeneration dur...
Sprouting by woody plants can increase species resilience to disturbance and foster regeneration dur...
We used 14C tracers to determine photosynthate distribution in cherrybark oak (Quercus pagoda Raf.) ...
Cherrybark oak (Quercrrs pagoda Raf.) seedlings were established and raised in the field under four ...
$\bullet$ The combined effect of water stress and light on seedlings of forest species is a key fact...
Sprouting by woody plants can increase species resilience to disturbance and foster regeneration dur...
Sprouting by woody plants can increase species resilience to disturbance and foster regeneration dur...
Sprouting by woody plants can increase species resilience to disturbance and foster regeneration dur...
To better understand the regeneration ecology of northern red oak (Quercus rubra L.) in mesic forest...
A semi-closed 13CO2 labelling system (1.5% 13C) was used to assess both carbon uptake and allocatio...
To better understand the regeneration ecology of northern red oak (Quercus rubra L.) in mesic forest...
Sprouting by woody plants can increase species resilience to disturbance and foster regeneration dur...
A semi-closed 13CO2 labelling system (1.5% 13C) was used to assess both carbon uptake and allocatio...
Sprouting by woody plants can increase species resilience to disturbance and foster regeneration dur...
A semi-closed 13CO2 labelling system (1.5% 13C) was used to assess both carbon uptake and allocatio...
Sprouting by woody plants can increase species resilience to disturbance and foster regeneration dur...
Sprouting by woody plants can increase species resilience to disturbance and foster regeneration dur...