The effects of straw returning and nitrogen fertilizer application on soil labile organic carbon fractions and carbon pool management index in a rice–wheat rotation system

IF 2 3区 农林科学 Q3 ECOLOGY Pedobiologia Pub Date : 2023-10-27 DOI:10.1016/j.pedobi.2023.150913
Quanyi Hu , Tianqi Liu , Huina Ding , Chengfang Li , Ming Yu , Juan Liu , Cougui Cao
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引用次数: 0

Abstract

Straw returning and nitrogen (N) fertilizer application are important agricultural measures to improve soil carbon pool. However, the combined effect of various straw-returning amounts and N-fertilizer application rates on soil carbon pool is still unclear. Therefore, a field experiment with three straw-returning amounts and three N-fertilizer application rates was conducted for 4 years in central China. The results revealed that the addition of N fertilizer clearly enhanced the contents of soil organic carbon (SOC) by 2.2%− 2.7%, dissolved organic carbon (DOC) by 20.1%− 39.2%, microbial biomass carbon (MBC) by 37.9%− 44.2%, and easily oxidizable carbon (EOC) by 18.4%− 23.6%. Moreover, it also enhanced the activities of invertin by 33.4%− 46.4%, cellulase by 23.5%− 32.4%, and polyphenol oxidase by 20.5%− 27.1%, as well as the carbon pool management index (CPMI) by 21.3%− 27.6%. The CPMI increased gradually as the N-fertilizer application rate increased. However, straw returning did not significantly change the contents of SOC, EOC, and MBC; invertin activity, or CPMI. Based on the structural equation model, it was observed that N fertilizer application enhances MBC and subsequently improves CPMI by increasing EOC. This highlights the vital role of soil microorganisms in the soil carbon cycle and the significance of supplementing N to improve and sustain agricultural soil carbon reservoirs. Additionally, this study indicates that the combined application of N fertilizer and straw returning has a more positive effect on improving the soil carbon pool.

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秸秆还田与氮肥施用对稻麦轮作系统土壤活性有机碳组分和碳库管理指标的影响
秸秆还田和施氮肥是改善土壤碳库的重要农业措施。不同秸秆还田量和施氮量对土壤碳库的综合影响尚不清楚。为此,在华中地区进行了为期4年的3种秸秆还田量和3种氮肥施用量的田间试验。结果表明,施氮显著提高了土壤有机碳(SOC)含量2.2% ~ 2.7%,溶解有机碳(DOC)含量20.1% ~ 39.2%,微生物生物量碳(MBC)含量37.9% ~ 44.2%,易氧化碳(EOC)含量18.4% ~ 23.6%。转化酶活性提高33.4% ~ 46.4%,纤维素酶活性提高23.5% ~ 32.4%,多酚氧化酶活性提高20.5% ~ 27.1%,碳库管理指数(CPMI)提高21.3% ~ 27.6%。CPMI随施氮量的增加而逐渐增大。秸秆还田对土壤SOC、EOC和MBC含量的影响不显著;转化蛋白活性,简称CPMI。结构方程模型表明,施氮增加了MBC,进而通过提高EOC提高CPMI。这凸显了土壤微生物在土壤碳循环中的重要作用,以及补氮对改善和维持农业土壤碳库的重要意义。此外,本研究表明,氮肥与秸秆还田配施对改善土壤碳库具有更积极的作用。
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来源期刊
Pedobiologia
Pedobiologia 环境科学-生态学
CiteScore
4.20
自引率
8.70%
发文量
38
审稿时长
64 days
期刊介绍: Pedobiologia publishes peer reviewed articles describing original work in the field of soil ecology, which includes the study of soil organisms and their interactions with factors in their biotic and abiotic environments. Analysis of biological structures, interactions, functions, and processes in soil is fundamental for understanding the dynamical nature of terrestrial ecosystems, a prerequisite for appropriate soil management. The scope of this journal consists of fundamental and applied aspects of soil ecology; key focal points include interactions among organisms in soil, organismal controls on soil processes, causes and consequences of soil biodiversity, and aboveground-belowground interactions. We publish: original research that tests clearly defined hypotheses addressing topics of current interest in soil ecology (including studies demonstrating nonsignificant effects); descriptions of novel methodological approaches, or evaluations of current approaches, that address a clear need in soil ecology research; innovative syntheses of the soil ecology literature, including metaanalyses, topical in depth reviews and short opinion/perspective pieces, and descriptions of original conceptual frameworks; and short notes reporting novel observations of ecological significance.
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