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首页> 外文期刊>Acta Agriculturae Scandinavica. Section B, Soil and Plant Science >Changes in soil organic carbon fractions and bacterial community composition under different tillage and organic fertiliser application in a maize-wheat rotation system
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Changes in soil organic carbon fractions and bacterial community composition under different tillage and organic fertiliser application in a maize-wheat rotation system

机译:不同耕作与有机肥的土壤有机碳级分和细菌群落组成的变化玉米小麦旋转系统

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摘要

The objective of this study was to assess the impact of different tillage and organic fertiliser regimes on soil carbon fractions and bacterial community composition within a maize-wheat cropping system. We conducted a six-year experiment on the Huang-Huai-Hai Plain of China. Six treatments were established: deep tillage (DT), shallow tillage (ST), no-tillage (NT), deep tillage with organic fertiliser (DTF), shallow tillage with organic fertiliser (STF), and no-tillage with organic fertiliser (NTF). Results indicated that during the winter wheat growing season, the highest contents of soil organic carbon (SOC) and easily-oxidised organic carbon (EOC) were in the STF treatment. During the summer maizegrowing season, the DTF treatment had the highest SOC and EOC contents. Compared with the other treatments, the NTF treatment had higher Chao1 and Shannon indices for bacteria; however, the relative abundance of Proteobacteria is highest in all treatments. A redundancy analysis (RDA) revealed that bacterial community composition was correlated with variation of the SOC, DOC, EOC, and microbial biomass carbon (MBC). Our results showed that combining the two components of the SOC fractions and bacterial community composition, STF practice in a maize-wheat rotation was a sustainable approach to optimising soil structure and improving soil quality.
机译:本研究的目的是评估不同耕作和有机肥制度对玉米 - 小麦种植体系中土壤碳分数和细菌群落组成的影响。我们对中国黄淮海平原进行了六年的实验。建立了六种治疗方法:深耕(DT),浅耕作(ST),无耕作(NT),深耕与有机肥(DTF),浅耕作,有机肥(STF),与有机肥的无耕作( NTF)。结果表明,在冬小麦生长季节期间,土壤有机碳(SOC)和易氧化有机碳(EOC)的最高含量在STF处理中。在夏季大山泽季节期间,DTF治疗具有最高的SOC和EOC内容。与其他治疗相比,NTF治疗具有更高的Chao1和Shannon索引的细菌;然而,在所有治疗中,植物的相对丰度最高。冗余分析(RDA)显示,细菌群落组合物与SoC,Doc,EoC和微生物生物质碳(MBC)的变异相关。我们的研究结果表明,组合SOC分数和细菌群落组成的两种组分,STF实践在玉米小麦旋转中是优化土壤结构和改善土壤质量的可持续方法。

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