Aggregation controls the stability of lignin and lipids in clay-sized particulate and mineral associated organic matter

被引:169
作者
Angst, Gerrit [1 ,5 ,6 ]
Mueller, Kevin E. [2 ]
Koegel-Knabner, Ingrid [1 ,3 ]
Freeman, Katherine H. [4 ]
Mueller, Carsten W. [1 ]
机构
[1] Tech Univ Munich, Chair Soil Sci, Emil Ramann Str 2, D-85345 Freising Weihenstephan, Germany
[2] ARS, USDA, Rangeland Resources Res Unit, Ft Collins, CO 80526 USA
[3] Tech Univ Munich, Inst Adv Study, Lichtenbergstr 2a, D-85748 Garching, Germany
[4] Penn State Univ, Dept Geosci, University Pk, PA 16802 USA
[5] Czech Acad Sci, Ctr Biol, Inst Soil Biol, Sadkach 7, Ceske Budejovice 37005, Czech Republic
[6] Czech Acad Sci, Ctr Biol, SoWa RI, Sadkach 7, Ceske Budejovice 37005, Czech Republic
基金
美国国家科学基金会;
关键词
Incubation; Physical fractionation; GC/MS; C-13; NMR; CuO; Soil organic matter; STATE C-13 NMR; CHEMICAL-COMPOSITION; SUBSOIL HORIZONS; LITTER DECOMPOSITION; HUMIC SUBSTANCES; CUO OXIDATION; SOIL; CARBON; STABILIZATION; PLANT;
D O I
10.1007/s10533-017-0304-2
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Physical separation of soil into different soil organic matter (SOM) fractions is widely used to identify organic carbon pools that are differently stabilized and have distinct chemical composition. However, the mechanisms underlying these differences in stability and chemical composition are only partly understood. To provide new insights into the stabilization of different chemical compound classes in physically-separated SOM fractions, we assessed shifts in the biomolecular composition of bulk soils and individual particle size fractions that were incubated in the laboratory for 345 days. After the incubation, also the incubated bulk soil was fractionated. The chemical composition of organic matter in bulk soils and fractions was characterized by C-13-CPMAS nuclear magnetic resonance spectroscopy and sequential chemical extraction followed by GC/MS measurements. Plant-derived lipids and lignin were abundant in particulate organic matter (POM) fractions of sand-, silt-, and clay-size and the mineral-bound, clay-sized organic matter. These results indicate that recent conceptualizations of SOM stabilization probably understate the contribution of plant-derived organic matter to stable SOM pools. Although our data indicate that inherent recalcitrance could be important in soils with limited aggregation, organo-mineral interactions and aggregation were responsible for long-term SOM stabilization. In particular, we observed consistently higher concentrations of plant-derived lipids in POM fractions that were incubated individually, where aggregates were disrupted, as compared to those incubated as bulk soil, where aggregates stayed intact. This finding emphasizes the importance of aggregation for the stabilization of less 'recalcitrant' biomolecules in the POM fractions. Because also the abundance of lipids and lignin in clay-sized, mineral-associated SOM was substantially influenced by aggregation, the bioavailability of mineral-associated SOM likely increases after the destruction of intact soil structures.
引用
收藏
页码:307 / 324
页数:18
相关论文
共 86 条
[1]   Associations between organic matter fractions and the active soil microbial biomass [J].
Alvarez, CR ;
Alvarez, R ;
Grigera, S ;
Lavado, RS .
SOIL BIOLOGY & BIOCHEMISTRY, 1998, 30 (06) :767-773
[2]   COMBINING BIOMARKER WITH STABLE ISOTOPE ANALYSES FOR ASSESSING THE TRANSFORMATION AND TURNOVER OF SOIL ORGANIC MATTER [J].
Amelung, W. ;
Brodowski, S. ;
Sandhage-Hofmann, A. ;
Bol, R. .
ADVANCES IN AGRONOMY, VOL 100, 2008, 100 :155-250
[3]   Minimisation of organic matter disruption during particle-size fractionation of grassland epipedons [J].
Amelung, W ;
Zech, W .
GEODERMA, 1999, 92 (1-2) :73-85
[4]   Tracing the sources and spatial distribution of organic carbon in subsoils using a multi-biomarker approach [J].
Angst, Gerrit ;
John, Stephan ;
Mueller, Carsten W. ;
Koegel-Knabner, Ingrid ;
Rethemeyer, Janet .
SCIENTIFIC REPORTS, 2016, 6
[5]   The fate of cutin and suberin of decaying leaves, needles and roots - Inferences from the initial decomposition of bound fatty acids [J].
Angst, Gerrit ;
Heinrich, Lukas ;
Koegel-Knabner, Ingrid ;
Mueller, Carsten W. .
ORGANIC GEOCHEMISTRY, 2016, 95 :81-92
[6]   Spatial distribution and chemical composition of soil organic matter fractions in rhizosphere and non-rhizosphere soil under European beech (Fagus sylvatica L.) [J].
Angst, Gerrit ;
Koegel-Knabner, Ingrid ;
Kirfel, Kristina ;
Hertel, Dietrich ;
Mueller, Carsten W. .
GEODERMA, 2016, 264 :179-187
[7]   Assessing the extent of decomposition of natural organic materials using solid-state C-13 NMR spectroscopy [J].
Baldock, JA ;
Oades, JM ;
Nelson, PN ;
Skene, TM ;
Golchin, A ;
Clarke, P .
AUSTRALIAN JOURNAL OF SOIL RESEARCH, 1997, 35 (05) :1061-1083
[8]   Litter decomposition and organic matter turnover in northern forest soils [J].
Berg, B .
FOREST ECOLOGY AND MANAGEMENT, 2000, 133 (1-2) :13-22
[9]  
Berg B., 2008, PLANT LITTER DECOMPO, DOI DOI 10.1007/978-3-540-74923-3
[10]   Decoupled carbon and nitrogen mineralization in soil particle size fractions of a forest topsoil [J].
Bimueller, Carolin ;
Mueller, Carsten W. ;
von Luetzow, Margit ;
Kreyling, Olivia ;
Koelbl, Angelika ;
Haug, Stephan ;
Schloter, Michael ;
Koegel-Knabner, Ingrid .
SOIL BIOLOGY & BIOCHEMISTRY, 2014, 78 :263-273