1
Return

Stage-dependent associations between leaf litter chemistry and decomposition under nitrogen deposition and reduced precipitation in a subtropical forest

delete2026-07-26
delete0
delete
OA
AI
周世兴 cover
周世兴 (Shixing Zhou)
X
Xingcheng Zou
R
Renping Wan
Z
ZL Zhengchuan Liang
L
LX Lin Xiao
K
KP Kaiwen Pan *
J
JH Junxi Hu *
C
Congde Huang
DOI:10.3389/ffgc.2026.1923667delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Litter decomposition regulates carbon sequestration and nutrient cycling in forest ecosystems and is sensitive to nitrogen deposition and drought. As decomposition proceeds; litter chemistry changes and the decomposition rate decrease; likely with a change in rate-regulating factors. However; the effects of nitrogen deposition and reduced precipitation on litter decomposition over time and the stage-dependent associations between leaf litter chemistry and decomposition remain poorly understood. Here; we conducted a 2-year in situ manipulation experiment in a subtropical evergreen broad-leaved forest to examine how simulated nitrogen deposition (150 kg N ha−1 yr.−1) and 10% throughfall reduction altered temporal patterns of litter chemistry and decomposition dynamics. Both nitrogen deposition and reduced precipitation significantly inhibited leaf litter decomposition in the early and late decomposition stages. The litter chemistry parameters that explained variation in cumulative mass loss differed among treatments. However; litter phosphorus; manganese and iron concentrations; together with the carbon-to-phosphorus ratio; were among the best predictors of cumulative mass loss across treatments in the early decomposition stage; whereas manganese concentration was the best predictor in the late stage. These results indicate that nitrogen deposition and reduced precipitation inhibited leaf litter decomposition throughout the study period. Often overlooked litter chemical traits; including manganese and iron; may be important predictors of decomposition dynamics and should be incorporated more explicitly into biogeochemical models to improve understanding of litter-driven carbon and nutrient cycling under increasing nitrogen deposition and changing precipitation regimes.
Keywords:
global change
drought
litter quality
acid deposition
decomposition stage

Journal

F
Frontiers in Forests and Global Change
IF:
3.2
Papers:
373
Citations:
4.0K

Organization

C
College of Forestry
Scholars:
1.1K
Papers: 321
Citations: 0
Cited Papers

Cited Papers

Citing Papers

Citing Papers