有机肥等氮替代化肥对水稻土壤性质、细菌群落和产量的影响
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1.沈阳农业大学农学院;2.辽宁农业职业技术学院;3.辽宁省盐碱地利用研究所;4.辽宁省农业科学院

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沈阳市科技计划项目(24-217-2-06)、辽宁省科技厅项目(2025JH5/10400012)与国家重点研发计划项目 (2016YFD0300104)资助


Effects of Equal Replacement of Chemical Fertilizer by Organic Fertilizer on Soil Properties, Bacterial Community, and Rice Yield
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Affiliation:

1.College of Agronomy, Shenyang Agricultural University;2.Liaoning Agriculture Vocational and Technical College, Yingkou;3.Liaoning Institute of Saline-Alkali Land Utilization, Panjin;4.Liaoning Academy of Agricultural Sciences

Fund Project:

Supported by the Science and Technology Plan Project of Shenyang, Liaoning Province, China (No. 24-217-2-06), the Project of Department of Science and Technology of Liaoning Province, , China (No. 2025JH5/10400012) and the National Key Research and Development Program of China (No. 2016YFD0300104)

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    摘要:

    为探明有机肥等氮替代化肥对稻田土壤微生物群落及水稻产量的影响,于2019—2023年在辽宁稻区开展定位试验,选用2个常规种植品种沈稻47(SD47)和沈稻505(SD505),在等氮、磷、钾条件下,设置全化肥处理(CF)、10%有机肥氮(N)替代化肥N(OR10)、20%有机肥N替代化肥N(OR20)、30%有机肥N替代化肥N(OR30)4个肥料处理。结果表明:(1)有机肥等氮替代通过增加有效穗数、结实率与千粒重实现水稻增产,以OR20处理产量最高;(2)有机肥等氮替代显著提升土壤耕层(0~20 cm)有机质、全氮及速效养分(碱解氮、有效磷、速效钾)含量,改善土壤肥力;(3)有机肥等氮替代显著提高根际与非根际土壤脲酶、蛋白酶、蔗糖酶和硝酸还原酶活性,并提高根际土壤细菌群落Chao1指数与香农(Shannon)指数;(4)门水平上,有机肥等氮替代通过提高变形菌门、拟杆菌门等碳、氮循环相关功能菌群的相对丰度,降低酸杆菌门等贫营养型菌门丰度,优化根际与非根际土壤的细菌群落结构;(5)功能预测分析结果表明,有机肥处理提升了非根际土中转录、碳水化合物转运代谢功能,增强了根际土壤中氨基酸转运代谢、无机离子转运代谢、脂肪转运代谢等代谢途径。综上所述,在相同氮、磷、钾施用量下,有机肥等氮替代通过改变非根际与根际土壤微环境,增强碳、氮循环关键酶活性,优化土壤微生物群落结构,从而提升土壤养分有效性和供给能力,最终实现水稻增产。

    Abstract:

    【Objective】This study aimed to investigate the effects of equal replacement of chemical fertilizer by organic fertilizer on rice microbial community and yield. 【Method】 A long-term field experiment was conducted in Liaoning from 2019 to 2023. In this experiment, two rice cultivars, Shendao47 (SD47) and Shendao505 (SD505), were grown in the field with four fertilization treatments at same N, P, K rate: CF (100% chemical fertilizer), OR10 (10% organic fertilizer + 90% chemical fertilizer), OR20 (20% organic fertilizer + 80% chemical fertilizer), OR30 (30% organic fertilizer + 70% chemical fertilizer). 【Results】The results revealed the following: (1) Organic fertilizer substitution increased rice yield mainly by enhancing effective panicles, grain filling rate, and 1000-grain weight, with OR20 treatment achieving the highest yield; (2) Organic fertilizer substitution significantly improved soil fertility by increasing organic matter, total nitrogen, and available nutrient content (alkali-hydrolyzable nitrogen, available phosphorus, and available potassium) in plow layer (0-20 cm); (3) Organic fertilizer substitution significantly enhanced the activity of urease, protease, sucrase, and nitrate reductase in both rhizosphere and bulk soil; (4) Organic fertilizer substitution significantly increased the Chao1 index (richness) and Shannon index (diversity) of bacterial communities in the rhizosphere, whereas its effect on bulk soil bacterial diversity was not statistically significant; (5) At the phylum level, organic fertilizer substitution improved the relative abundance of carbon and nitrogen cycling bacterial phyla such as Proteobacteria, Bacteroidetes, reduced the abundance of oligotrophic bacterial phyla such as Acidobacteria, and optimized the bacterial community structure in bulk and rhizosphere soil; (6) Functional prediction analysis indicated that organic fertilizer treatments enhanced transcription and carbohydrate transport and metabolism in bulk soil, and strengthened metabolism pathways such as amino acid transport and metabolism, inorganic ion transport and metabolism, and lipid transport and metabolism in rhizosphere soil.【Conclusion】In conclusion, under equivalent nutrient input, partial substitution of chemical fertilizer with organic fertilizer could improve the soil microenvironment, enhance key enzyme activities, and optimize the structure and function of soil microbial communities. These changes synergistically promote soil nutrient availability and supply capacity, ultimately increasing rice yield. This practice represents a sustainable fertilization strategy suitable for paddy fields in Northeast China.

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郭诗梦,李漪濛,刘佳欣,王悦,吴周周,王术,周婵婵,牟静怡,刘俊峰,梁超.有机肥等氮替代化肥对水稻土壤性质、细菌群落和产量的影响[J].土壤学报,DOI:10.11766/trxb202507300365,[待发表]
GUO Shimeng, LI Yimeng, LIU Jiaxin, WANG Yue, WU Zhouzhou, WANG Shu, ZHOU Chanchan†,MU Jingyi, LIU Junfeng, LIANG Chao. Effects of Equal Replacement of Chemical Fertilizer by Organic Fertilizer on Soil Properties, Bacterial Community, and Rice Yield[J]. Acta Pedologica Sinica, DOI:10.11766/trxb202507300365,[In Press]

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  • 收稿日期:2025-07-30
  • 最后修改日期:2026-02-24
  • 录用日期:2026-03-18
  • 在线发布日期: 2026-03-19
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