生物质炭与硅藻土调控滨海盐渍土硝化及氨氧化微生物机制
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1. 养分资源高效利用全国重点实验室,山东省农业科学院,济南 250100;2. 植物干细胞定向育种烟台市工程研究中心/功能作物种质创新与栽培利用山东省工程研究中心/烟台市蚕桑功能物质评价与利用重点实验室,山东省蚕业研究所,山东烟台 264002;3. 国家盐碱地综合利用技术创新中心,山东东营 257347

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国家重点研发计划项目(2021YFD1900900)和国家自然科学基金项目(41807083)资助


Regulatory Mechanisms of Biochar and Diatomite on Nitrification Processes and Ammonia-Oxidizing Microorganisms in Coastal Saline Soils
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1. State Key Laboratory of Nutrient Use and Management, Shandong Academy of Agricultural Sciences, Jinan 250100, China;2. Yantai Engineering Research Center for Plant Stem Cell Targeted Breeding / Shandong Engineering Research Center of Functional Crop Germplasm Innovation and Cultivation Utilization / Yantai Key Laboratory of Evaluation and Utilization of Silkworm Functional Substances, Shandong Institute of Sericulture, Yantai, Shandong 264002, China;3. National Center of Technology Innovation for Comprehensive Utilization of Saline-Alkali Land, Dongying, Shandong 257347, China

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Supported by the National Key Research and Development Program of China (No. 2021YFD1900900) and the National Natural Science Foundation of China (No. 41807083)

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    摘要:

    生物质炭和硅藻土作为土壤改良剂备受关注,但其对滨海盐渍土硝化过程及氨氧化古菌(AOA)和氨氧化细菌(AOB)的影响及作用机制尚不清楚。本研究选取黄河三角洲典型滨海盐渍化土壤,进行42 d的室内培养试验,设置不施肥对照(CK)、尿素(U)、尿素+双氰胺(DCD)、尿素+硅藻土(DE)和尿素+生物质炭(BC)5个处理,探究其对土壤硝化作用的影响,并采用定量PCR和高通量测序技术分析AOA和AOB的丰度及群落结构。结果表明,DCD在短期内显著抑制了硝化过程,抑制率达73.1%,但其抑制效果随时间逐渐减弱;生物质炭在短期内也表现出硝化抑制作用,但后期促进了AOA丰度;而硅藻土对硝化抑制不显著,却显著提高了AOB丰度。相关性分析表明,AOA和AOB的amoA基因丰度对硝化过程呈现显著相反的调控作用:AOA与铵态氮(NH??-N)含量和硝化抑制率(NIR)呈显著正相关,与硝态氮(NO??-N)含量呈显著负相关;而AOB与NH??-N含量和NIR呈显著负相关,与NO??-N含量、净硝化速率(NNR)呈极显著正相关,且AOB与NNR的相关性显著强于AOA。聚类分析显示,BC和DCD处理的AOA和AOB群落结构更为相似,这可能与两者均通过调控土壤氮素转化过程和微生物活动有关。本研究揭示了生物质炭和硅藻土在滨海盐渍土中对氨氧化微生物群落的差异化调控机制,为盐渍土改良提供了新的理论依据。

    Abstract:

    【Objective】 Biochar and diatomite have gained considerable attention as soil amendments; however, their effects and underlying mechanisms on nitrification processes as well as ammonia-oxidizing archaea (AOA) and ammonia-oxidizing bacteria (AOB) in coastal saline soils remain poorly understood. 【Method】 A 42-day indoor incubation experiment was conducted using typical coastal saline soil from the Yellow River Delta. Five treatments were applied: control without fertilizer (CK), urea (U), urea with dicyandiamide (DCD), urea with diatomite (DE), and urea with biochar (BC). The effects of these treatments on soil nitrification were evaluated, and the abundance and community structure of AOA and AOB were analyzed using quantitative PCR and high-throughput sequencing. 【Result】 The results demonstrated that DCD significantly inhibited nitrification in the short term, with an inhibition rate of 73.1%, however, its inhibitory effect diminished over time. Biochar also showed short-term nitrification inhibition but subsequently promoted AOA abundance. In contrast, diatomite did not significantly inhibit nitrification but notably enhanced AOB abundance. Correlation analysis revealed that the amoA gene abundances of AOA and AOB exhibited significantly opposite regulatory effects on the nitrification process. AOA showed significant positive correlations with ammonium nitrogen (NH??-N) content and nitrification inhibition rate (NIR), but a significant negative correlation with nitrate nitrogen (NO??-N) content. Conversely, AOB demonstrated significant negative correlations with NH??-N content and NIR, but highly significant positive correlations with NO??-N content and net nitrification rate (NNR). Notably, the correlation between AOB and NNR was significantly stronger than that of AOA. Cluster analysis indicated that the community structures of AOA and AOB in the BC and DCD treatments were more similar, which may be related to the fact that both regulate the soil nitrogen transformation process and microbial activity. 【Conclusion】 This study elucidates the differential regulatory mechanisms of biochar and diatomite on ammonia-oxidizing microbial communities in coastal saline soils, offering a novel theoretical foundation for the amelioration of saline soils.

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马兰,王洁,单燕,王向誉,宋延静,李俊林.生物质炭与硅藻土调控滨海盐渍土硝化及氨氧化微生物机制[J].土壤学报,DOI:10.11766/trxb202501170036,[待发表]
Ma Lan, Wang Jie, Shan Yan, Wang Xiangyu, Song Yanjing, Li Junlin. Regulatory Mechanisms of Biochar and Diatomite on Nitrification Processes and Ammonia-Oxidizing Microorganisms in Coastal Saline Soils[J]. Acta Pedologica Sinica, DOI:10.11766/trxb202501170036,[In Press]

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  • 收稿日期:2025-01-17
  • 最后修改日期:2025-06-09
  • 录用日期:2025-07-16
  • 在线发布日期: 2025-07-18
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