Back to Search
Start Over
Contrasting dynamics and trait controls in first-order root compared with leaf litter decomposition
- Publication Year :
- 2018
- Publisher :
- National Academy of Sciences, 2018.
-
Abstract
- Decomposition is a key component of the global carbon (C) cycle, yet current ecosystem C models do not adequately represent the contributions of plant roots and their mycorrhizae to this process. The understanding of decomposition dynamics and their control by traits is particularly limited for the most distal first-order roots. Here we followed decomposition of first-order roots and leaf litter from 35 woody plant species differing in mycorrhizal type over 6 years in a Chinese temperate forest. First-order roots decomposed more slowly (k = 0.11 +/- 0.01 years(-1)) than did leaf litter (0.35 +/- 0.02 years(-1)), losing only 35% of initial mass on average after 6 years of exposure in the field. In contrast to leaf litter, nonlignin root C chemistry (nonstructural carbohydrates, polyphenols) accounted for 82% of the large interspecific variation in first-order root decomposition. Leaf litter from ectomycorrhizal (EM) species decomposed more slowly than that from arbuscular mycorrhizal (AM) species, whereas first-order roots of EM species switched, after 2 years, from having slower to faster decomposition compared with those from AM species. The fundamentally different dynamics and control mechanisms of first-order root decomposition compared with those of leaf litter challenge current ecosystem C models, the recently suggested dichotomy between EM and AM plants, and the idea that common traits can predict decomposition across roots and leaves. Aspects of C chemistry unrelated to lignin or nitrogen, and not presently considered in decomposition models, controlled first-order root decomposition; thus, current paradigms of ecosystem C dynamics and model parameterization require revision.
- Subjects :
- 0106 biological sciences
root tips
Nitrogen
trait coordination
long-term decomposition
Biology
Plant Roots
010603 evolutionary biology
01 natural sciences
CARBON
Soil
Species Specificity
Mycorrhizae
FINE ROOTS
Botany
ECONOMICS SPECTRUM
Ecosystem
Letters
ECTOMYCORRHIZAL COLONIZATION
plant-soil interactions
4112 Forestry
SOIL ORGANIC-MATTER
Multidisciplinary
Soil organic matter
Temperate forest
PLANT LITTER
Interspecific competition
15. Life on land
Plant litter
Biological Sciences
Decomposition
TERRESTRIAL ECOSYSTEMS
Plant Leaves
mycorrhizal fungi
Phenotype
FUNCTIONAL TRAITS
CHINESE TEMPERATE
FOREST SOILS
Terrestrial ecosystem
010606 plant biology & botany
Woody plant
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Accession number :
- edsair.doi.dedup.....0e457d974d90d0d6a7e9c89f4f242a46