Litter chemical traits strongly drove the carbon fractions loss during decomposition across an alpine treeline ecotone

被引:33
作者
Wang, Lifeng [1 ]
Chen, Yamei [2 ]
Zhou, Yu [1 ]
Zheng, Haifeng [3 ]
Xu, Zhenfeng [1 ]
Tan, Bo [1 ]
You, Chengming [1 ]
Zhang, Li [1 ]
Li, Han [1 ]
Guo, Li [4 ]
Wang, Lixia [1 ]
Huang, Youyou [2 ]
Zhang, Jian [1 ]
Liu, Yang [1 ]
机构
[1] Sichuan Agr Univ, Inst Ecol & Forestry,Long Term Res Stn Alpine For, Natl Forestry & Grassland Adm Key Lab Forest Reso, Sichuan Prov Key Lab Ecol Forestry Engn Upper Rea, Chengdu 611130, Peoples R China
[2] China West Normal Univ, Key Lab Southwest China Wildlife Resources Conser, Minist Educ, Nanchong 637009, Sichuan, Peoples R China
[3] Univ Copenhagen, Dept Geosci & Nat Resource Management, Rolighedsvej 23, DK-1958 Frederiksberg C, Denmark
[4] Sichuan Agr Univ, Coll Landscape Architecture, Chengdu 611130, Peoples R China
基金
中国国家自然科学基金;
关键词
Alpine treeline ecotone; Litter decomposition; Carbon fractions; Litter chemistry; Vegetation type; PLANT-SPECIES TRAITS; SOIL ORGANIC-MATTER; LEAF-LITTER; NITROGEN; LIGNIN; FOREST; CELLULOSE; DYNAMICS; QUALITY; MODEL;
D O I
10.1016/j.scitotenv.2020.142287
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The decomposition of litter carbon (C) fraction is a major determinant of soil organic matter pool and nutrient cycling. However, knowledge of litter chemical traits regulate C fractions release is still relatively limited. A litter-bag experiment was conducted using six plant functional litter types at two vegetation type (coniferous forest and alpine shrubland) in a treeline ecotone. We evaluated the relative importance of litter chemistry (i.e. Nutrient, C quality, and stoichiometry) on the loss of littermass, non-polar extractables (NPE), water-soluble extractables (WSE), acid-hydrolyzable carbohydrates (ACID), and acid-unhydrolyzable residue (AUR) during decomposition. Litter nutrients contain nitrogen (N), phosphorus (P), potassium (K), calcium (Ca), sodium (Na), magnesium (Mg), aluminium (Al), manganese (Mn), zinc (Zn), iron (Fe) and copper (Cu), litter C quality contains C, WSE, NPE, ACID, and AUR, and stoichiometry was defined by C:N, C:P; N:P, ACID:N, and AUR:N. The results showed single exponential model fitted decomposition rates of litter mass and C fractions better than double exponential or asymptotic decomposition, and the decomposition rates of C fractions were strongly correlated with initial litter nutrients, especially K, Na, Ca. Furthermore, the temporal dynamics of litter nutrients (Ca, Mg, Na, K, Zn, and Fe) strongly regulated C fractions loss during the decomposition process. Changes in litter C quality had an evident effect on the degradation of ACID and AUR, supporting the concept of "priming effect" of soluble carbon fraction. The significant differences were found in the release of NPE, WSE, and ACID rather than AUR among coniferous forest and alpine shrubland, and the vegetation type effects largely depend on the changes in litter stoichiometry, which is an important implication for the change in plant community abundance regulate decay. Collectively, elucidating the hierarchical drivers of litter chemistry on decomposition is critical to soil C sequestration in alpine ecosystems. (C) 2020 Elsevier B.V. All rights reserved.
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页数:12
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