Linking the chemical nature of soil organic carbon and biological binding agent in aggregates to soil aggregate stability following biochar amendment in a rice paddy
文献类型: 外文期刊
作者: Situ, Gaoming 1 ; Zhao, Yuanlai 1 ; Zhang, Lei 1 ; Yang, Xingqi 1 ; Chen, De 2 ; Li, Songhao 3 ; Wu, Qifeng 3 ; Xu, Qiufang 1 ; Chen, Junhui 1 ; Qin, Hua 1 ;
作者机构: 1.Zhejiang A&F Univ, State Key Lab Subtrop Silviculture, Hangzhou 311300, Peoples R China
2.Zhejiang Acad Agr Sci, Inst Qual & Stand Agroprod, Hangzhou 310021, Peoples R China
3.Linan Municipal Bur Agr, Agr Technol Extens Ctr, Hangzhou 311300, Peoples R China
关键词: Soil aggregation; Microbial abundance; Glomalin; Solid-state C-13 NMR
期刊名称:SCIENCE OF THE TOTAL ENVIRONMENT ( 影响因子:10.753; 五年影响因子:10.237 )
ISSN: 0048-9697
年卷期: 2022 年 847 卷
页码:
收录情况: SCI
摘要: Changes in soil aggregation with biochar amendment have been investigated extensively, but how biochar affects the chemical composition of organic carbon (C) and biological binding agents in aggregates and their linkage with soil aggregate stability remains unclear. Soil samples were collected in a rice paddy treated with O (CO, control), 10 t ha(-1) (C10), 20 t ha(-1) (C20) and 40 t ha(-1) (C40) biochar for twenty months. The amount and chemical composition of soil organic C (SOC), microbial abundances and glomalin-related soil protein (GRSP) were determined in bulk soil and four fractions: large macroaggregates (>2000 mu m), small macroaggregates (250-2000 mu m), microaggregates (53-250 mu m), and silt + clay (<53 mu m). Our results showed that the proportion of >250 mu m water-stable aggregates and mean weight diameter were gradually increased with increasing biochar addition rate. The concentrations of SOC, readily oxidizable C and microbial biomass C increased most in the small macroaggregates, followed by microaggregates under biochar amendment. Increasing biochar addition rate gradually decreased the relative contents of alkyl C, O-alkyl C and carbonyl C, but increased those of aromatic C across the aggregates, resulting in a higher aromaticity and hydrophobicity of SOC with respect to the control. The abundances of bacteria, fungi and archaea and the content of GRSP were significantly enhanced in the large and small macroaggregates under the C40 treatment. The proportion of >250 mu m aggregates was significantly correlated with the contents of soil organic C fractions, GRSP and microbial abundance. Structural equation modeling further revealed that changes in SOC hydrophobicity and GRSP content under biochar amendment had significant and direct effects on the soil aggregate size distribution. In summary, our findings suggest that biochar amendment in rice paddy could improve soil aggregation through altering the chemical composition of soil organic C and the abundance of biological binding agents.
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