Fine roots play a key role in carbon, nutrient, and water biogeochemical cycles in forest ecosystems. However, inter-annual dynamics of fine root production, mortality, and turnover on the basis of long-term measurement have been less studied. Here, field scanning rhizotrons were employed for tracking fine root by branch order over a 6 years period in a larch plantation. For total fine roots, from the first- to the fifth-order roots, annual root length production, length mortality, standing crops, and turnover rate varied up to 3.4, 2.3, 1.5, and 2.3-folds during the study period, respectively. The inter-annual variability of those roots indices in the first-order and the second-order roots were greater than that of the higher order (t...
Fine root dynamics control a dominant flux of carbon from plants and into soils and mediate potentia...
International audienceIntroduction Fine root dynamics control plant growth and development and play ...
Characterization of decomposition dynamics of fine roots is essential for understanding vegetation–s...
The timing of fine root production and turnover strongly influences both the seasonal potential for ...
Development of direct and indirect methods for measuring root turnover and the status of knowledge o...
Graduation date: 1982Fine roots are a dynamic component of Douglas-fir ecosystems. Changes in standi...
1. Root life span regulates the quantity and quality of root-derived organic matter transferred to t...
Fine roots constitute an interface between plants and soils and thus play a crucial part in forest c...
Long-term minirhizotron observations of absorptive fine roots provide insights into seasonal pattern...
Minirhizotrons were used to observe fine root (≤1 mm) production, mortality, and longevity over 2 ye...
Absorptive fine roots are an important driver of soil biogeochemical cycles. Yet, the spatio-tempora...
Root respiration (R-r) plays a crucial role in the global carbon balance, because R-r accounts for a...
Aims: We aim to show the seasonality of fine root dynamics and examine the relationship between root...
Fine root dynamics control a dominant flux of carbon from plants and into soils and mediate potentia...
Summary We used an inadvertent whole-ecosystem 14 C label at a temperate forest in Oak Ridge, Tenne...
Fine root dynamics control a dominant flux of carbon from plants and into soils and mediate potentia...
International audienceIntroduction Fine root dynamics control plant growth and development and play ...
Characterization of decomposition dynamics of fine roots is essential for understanding vegetation–s...
The timing of fine root production and turnover strongly influences both the seasonal potential for ...
Development of direct and indirect methods for measuring root turnover and the status of knowledge o...
Graduation date: 1982Fine roots are a dynamic component of Douglas-fir ecosystems. Changes in standi...
1. Root life span regulates the quantity and quality of root-derived organic matter transferred to t...
Fine roots constitute an interface between plants and soils and thus play a crucial part in forest c...
Long-term minirhizotron observations of absorptive fine roots provide insights into seasonal pattern...
Minirhizotrons were used to observe fine root (≤1 mm) production, mortality, and longevity over 2 ye...
Absorptive fine roots are an important driver of soil biogeochemical cycles. Yet, the spatio-tempora...
Root respiration (R-r) plays a crucial role in the global carbon balance, because R-r accounts for a...
Aims: We aim to show the seasonality of fine root dynamics and examine the relationship between root...
Fine root dynamics control a dominant flux of carbon from plants and into soils and mediate potentia...
Summary We used an inadvertent whole-ecosystem 14 C label at a temperate forest in Oak Ridge, Tenne...
Fine root dynamics control a dominant flux of carbon from plants and into soils and mediate potentia...
International audienceIntroduction Fine root dynamics control plant growth and development and play ...
Characterization of decomposition dynamics of fine roots is essential for understanding vegetation–s...