Fine root decomposition represents a large carbon (C) cost to plants, and serves as a potential soil C source, as well as a substantial proportion of net primary productivity. Coarse roots differ markedly from fine roots in morphology, nutrient concentrations, functions, and decomposition mechanisms. Still poorly understood is whether a consistent global pattern exists between the decomposition of fine (<2?mm root diameter) and coarse (≥2?mm) roots. A comprehensive terrestrial root decomposition dataset, including 530 observations from 71 sampling sites, was thus used to compare global patterns of decomposition of fine and coarse roots. Fine roots decomposed significantly faster than coarse roots in middle latitude areas, but their decom...
Fine root decomposition is a physio-biochemical activity that is critical to the global carbon cycle...
Background and aims: Fine root decomposition contributes significantly to element cycling in terrest...
Background and aims: Fine root decomposition contributes significantly to element cycling in terrest...
Fine root decomposition constitutes a critical yet poorly understood flux of carbon and nutrients in...
Fine root decomposition constitutes a critical yet poorly understood flux of carbon and nutrients in...
Characterization of decomposition dynamics of fine roots is essential for understanding vegetation–s...
Characterization of decomposition dynamics of fine roots is essential for understanding vegetation–s...
Fine root decomposition constitutes a critical yet poorly understood flux of carbon and nutrients in...
Aim: As the two largest components of plant detritus input, leaf and root litter together determines...
Root quality is one of the main drivers of fine root decomposition, an important process controlling...
Root quality is one of the main drivers of fine root decomposition, an important process controlling...
1. Root quality is one of the main drivers of fine root decomposition, an important process controll...
1. Root quality is one of the main drivers of fine root decomposition, an important process controll...
Soils store more carbon (C) than vegetation and the atmosphere combined, thus small changes in the a...
A global data set of root biomass, rooting profiles, and nutrient concentrations in roots was compil...
Fine root decomposition is a physio-biochemical activity that is critical to the global carbon cycle...
Background and aims: Fine root decomposition contributes significantly to element cycling in terrest...
Background and aims: Fine root decomposition contributes significantly to element cycling in terrest...
Fine root decomposition constitutes a critical yet poorly understood flux of carbon and nutrients in...
Fine root decomposition constitutes a critical yet poorly understood flux of carbon and nutrients in...
Characterization of decomposition dynamics of fine roots is essential for understanding vegetation–s...
Characterization of decomposition dynamics of fine roots is essential for understanding vegetation–s...
Fine root decomposition constitutes a critical yet poorly understood flux of carbon and nutrients in...
Aim: As the two largest components of plant detritus input, leaf and root litter together determines...
Root quality is one of the main drivers of fine root decomposition, an important process controlling...
Root quality is one of the main drivers of fine root decomposition, an important process controlling...
1. Root quality is one of the main drivers of fine root decomposition, an important process controll...
1. Root quality is one of the main drivers of fine root decomposition, an important process controll...
Soils store more carbon (C) than vegetation and the atmosphere combined, thus small changes in the a...
A global data set of root biomass, rooting profiles, and nutrient concentrations in roots was compil...
Fine root decomposition is a physio-biochemical activity that is critical to the global carbon cycle...
Background and aims: Fine root decomposition contributes significantly to element cycling in terrest...
Background and aims: Fine root decomposition contributes significantly to element cycling in terrest...