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应用生态学报 ›› 2026, Vol. 37 ›› Issue (7): 2137-2145.doi: 10.13287/j.1001-9332.202607.018

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不同施肥模式毛竹林土壤活性有机碳组分、酶活性和微生物养分限制特征

倪惠菁*, 杨振亚, 赵建诚, 王波   

  1. 浙江省林业科学研究院, 浙江浙西北竹林生态系统定位观测研究站, 杭州 310023
  • 收稿日期:2025-11-25 接受日期:2026-05-27 出版日期:2026-07-18 发布日期:2027-01-18
  • 通讯作者: *E-mail: hjni0529@163.com
  • 作者简介:倪惠菁, 女, 1990年生, 助理研究员。主要从事竹林生态系统养分循环研究。E-mail: hjni0529@163.com
  • 基金资助:
    浙江省省院合作林业科技项目(2023SY12)资助。

Soil active organic carbon components, enzyme activities, and microbial nutrient limiting characteristics of Moso bamboo forests under different fertilization modes

NI Huijing*, YANG Zhenya, ZHAO Jiancheng, WANG Bo   

  1. Northwest Zhejiang Bamboo Forest Ecosystem Positioning Observation and Research Station, Zhejiang Academy of Forestry, Hangzhou 310023, China
  • Received:2025-11-25 Accepted:2026-05-27 Online:2026-07-18 Published:2027-01-18

摘要: 施肥是改善土壤质量、提高地上生产力的有效经营措施。本研究依托浙西北竹林生态系统定位观测研究站,设置复合肥(NPK)、蚕沙有机肥(SEOF)、微生物有机肥(MOF)、蚕沙有机肥和复合肥配施(SNPK)、微生物有机肥和复合肥配施(MNPK)5个施肥处理,以不施肥为对照(CK),研究连续2年不同施肥模式下毛竹林土壤基本性质、活性有机碳组分、酶活性和酶化学计量比变化特征及对土壤微生物养分限制的影响。结果表明:与CK相比,各施肥处理显著提高了土壤总有机碳(SOC)、全氮、全磷、碱解氮(AN)和有效磷含量,增幅分别为24.5%~85.4%、4.0%~59.0%、15.6%~75.0%、2.3%~37.7%和9.3%~1520.5%。SEOF、MOF、SNPK、MNPK处理显著提高了土壤溶解性有机碳和颗粒有机碳含量,增幅分别为16.5%~62.4%和10.6%~82.8%,SNPK、MNPK处理显著提高了土壤易氧化有机碳(ROC)含量,增幅为37.8%和10.5%,而SEOF、MOF处理显著降低了ROC含量。SNPK、MNPK处理显著提高了β-1,4-葡萄糖苷酶(BG)和酸性磷酸酶活性,SEOF、MOF处理显著提高了β-1,4-N-乙酰氨基葡萄糖苷酶+亮氨酸氨基肽酶活性。SNPK和MNPK处理显著提高了碳氮获取酶化学计量比(C∶NEEA)和碳磷获取酶化学计量比(C∶PEEA),显著降低了氮磷获取酶化学计量比(N∶PEEA),SEOF和MOF处理显著降低了C∶NEEA。各施肥处理均显著提高了新竹地上生物量,增幅61.1%~94.7%。酶计量矢量模型表明,NPK、SNPK和MNPK处理土壤微生物受碳和磷共同限制,CK、SEOF和MOF处理土壤微生物受磷限制,且SEOF和MOF较SNPK和MNPK显著减弱了微生物的碳和磷限制。相关分析和冗余分析表明,土壤SOC、ROC与BG、C∶NEEA、C∶PEEA呈显著正相关,与N∶PEEA呈显著负相关,AN是同时影响土壤活性有机碳组分和新竹生长的最重要因子。综上,单施有机肥和有机肥配施复合肥可以显著提高毛竹林土壤活性有机碳组分、养分含量和酶活性,缓解土壤微生物的碳、磷限制,其中蚕沙有机肥配施复合肥对毛竹的增产效果最好。

关键词: 施肥, 毛竹, 活性有机碳组分, 酶活性, 酶化学计量比

Abstract: Fertilization is an effective practice for improving soil fertility and enhancing aboveground productivity. We conducted an experiment with five fertilization treatments at the Northwest Zhejiang Bamboo Forest Ecosystem Positioning Observation and Research Station, including compound fertilizer (NPK), silkworm organic fertilizer (SEOF), microbial organic fertilizer (MOF), silkworm organic fertilizer combined with compound fertilizer (SNPK), and microbial organic fertilizer combined with compound fertilizer (MNPK), with no fertilization as control (CK). We investigated basic soil chemical properties, active organic carbon components, enzyme activities, and enzyme stoichiometric ratios, and identified the main factors affecting enzyme activities and stoichiometric ratios under different fertilization modes. The results showed that fertilization treatments significantly increased the contents of soil organic carbon (SOC), total nitrogen, total phosphorus, alkali-hydrolyzable nitrogen (AN), and available phosphorus by 24.5%-85.4%, 4.0%-59.0%, 15.6%-75.0%, 2.3%-37.7%, and 9.3%-1520.5%, respectively. SEOF, MOF, SNPK, and MNPK treatments significantly increased soil dissolved organic carbon and particulate organic carbon contents by 16.5%-62.4% and 10.6%-82.8%, respectively. SNPK and MNPK treatments significantly increased soil easily oxidizable organic carbon (ROC) content by 37.8% and 10.5%, respectively, while SEOF and MOF treatments significantly decreased ROC content. SNPK and MNPK treatments significantly enhanced the activities of β-1,4-glucosidase (BG) and acid phosphatase. SEOF and MOF treatments significantly increased the activities of β-1,4-N-acetylglucosamine glucosidase and leucine aminopeptidase. SNPK and MNPK treatments significantly increased the stoichiometric ratios of carbon- and nitrogen-acquiring enzymes (C:NEEA) and carbon- and phosphorus-acquiring enzymes (C:PEEA), while significantly decreased the stoichiometric ratio of nitrogen- and phosphorus-acquiring enzyme (N:PEEA). In contrast, SEOF and MOF significantly decreased the stoichiometric ratio of C:NEEA. All fertilization treatments significantly increased aboveground biomass of new bamboo by 61.1%-94.7%. The enzyme stoichiometry vector model revealed that soil microorganisms treated with NPK, SNPK, and MNPK were co-limited by C and P, while soil microorganisms treated with CK, SEOF, and MOF treatments were primarily limited by P. Moreover, the SEOF and MOF significantly alleviated microbial C and P limitations compared to the SNPK and MNPK treatments. Correlation analysis and redundancy analysis (RDA) demonstrated that SOC and ROC were significantly positively correlated with BG, C:NEEA, and C:PEEA, but significantly negatively correlated with N:PEEA. AN was identified as the most important factor driving soil active organic carbon fractions and new bamboo growth. In summary, the application of organic fertilizer alone and the combined application of organic fertilizer and compound fertilizer significantly increased soil active organic carbon components, nutrient contents, and enzyme activity, and alleviated microbial C and P limitations. Among all treatments, the combination of silkworm organic fertilizer with compound fertilizer (SNPK) achieved the optimal effect on bamboo yield.

Key words: fertilization, moso bamboo, active organic carbon component, enzyme activity, enzyme stoichiometric ratio