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生态学杂志 ›› 2026, Vol. 45 ›› Issue (3): 884-892.doi: 10.13292/j.1000-4890.202603.018

• 研究报告 • 上一篇    下一篇

不同土地利用类型下蚯蚓生态型的分布及蚓粪对土壤性质的影响

马凯,黄财德,郭铭,黄杰,孙晓然,王铭健,乔玉辉*   

  1. (中国农业大学资源与环境学院, 北京 100193)

  • 出版日期:2026-03-10 发布日期:2026-09-01

Distribution of earthworm ecological groups and the effects of their casts on soil properties across different land-use types.

MA Kai, HUANG Caide, GUO Ming, HUANG Jie, SUN Xiaoran, WANG Mingjian, QIAO Yuhui*   

  1. (College of Resources and Environment, China Agricultural University, Beijing 100193, China).

  • Online:2026-03-10 Published:2026-09-01

摘要: 为探明不同土地利用类型对蚯蚓生态型分布的影响,本研究在北京顺义典型有机农场内,选取菜地、林地、果园和草地4种土地利用类型,调查蚯蚓种群分布特征,同时分析不同生态型蚯蚓通过蚓粪对土壤理化性质的影响。结果表明:不同土地利用类型单位面积蚯蚓数量分别为果园57条·m-2,菜地54条·m-2,林地37条·m-2,草地19条·m-2。土地利用类型显著影响蚯蚓生态型的分布,菜地和草地主要以内栖型蚯蚓(湖北远盲蚓Amynthas hupeiensis)为主,占比分别为46.30%和47.00%。果园和林地均以深栖型蚯蚓(多肉远盲蚓Amynthas carnosus,直隶腔蚓Metaphire tschiliensis)为主,占比分别为52.60%、43.24%。表栖型蚯蚓(日本杜拉蚓Drawida japonica,天锡杜拉蚓Drawida gisti gisti)在4种土地利用类型中占比均不明显。土壤有机质、氮和磷及人为扰动是影响蚯蚓生态型分布的主要因素。林地中蚯蚓3种生态型分布相比其他3种土地利用类型相对更均衡,蚓种生态位分离明显,蚓粪对林地土壤性质潜在影响最大,土壤阳离子交换量、全氮和有机质分别增加19.79%、154.43%、373.14%(P≤0.05)。内栖型蚯蚓对土壤大团聚体(d>2 mm)形成影响最强,且对土壤性质的影响高于其他生态型。本研究明确了不同土地利用类型对蚯蚓生态型的影响以及蚯蚓生态型差异产生的蚓粪对土壤理化性质的影响,为优化土地管理措施和土壤生物资源利用提供了理论依据。

关键词: 土地利用类型, 土壤肥力, 蚯蚓生态型, 有机质, 农业管理措施

Abstract: To elucidate the effects of varying land-use types on the spatial distribution of earthworm ecological groups in a typical organic farm in Shunyi, Beijing, we investigated the distribution characteristics of earthworm populations across four land use types (vegetable fields, woodlands, orchards, and grasslands). We further analyzed the effects of different earthworm ecological groups on soil physicochemical properties through their casts. The results showed that the earthworm densities per unit area across land use types were 57 individuals·m-2 in orchards, 54 individuals·m-2 in vegetable fields, 37 individuals·m-2 in woodlands, and 19 individuals·m-2 in grasslands. Land use type significantly influenced the distribution of earthworm ecological groups. Vegetable fields and grasslands were dominated by endogeic earthworms (Amynthas hupeiensis), accounting for 46.30% and 47.00%, respectively. Orchards and woodlands were dominated by anecic earthworms (Amynthas carnosus, Metaphire tschiliensis), with proportions of 52.60% and 43.24%, respectively. Epigeic earthworms (Drawida japonica, Drawida gisti gisti) did not exhibit dominance in any of the four land-use types. Soil organic matter, nitrogen, phosphorus content, and human disturbance were the main factors shaping the distribution of earthworm ecological groups. In woodlands, the three ecological groups of earthworms exhibited a more balanced distribution than in the other three land use types, with clear ecological niche separation. Earthworm casts had the greatest effect on woodland soil properties, increasing cation exchange capacity, total nitrogen, and soil organic matter by 19.79%, 154.43%, and 373.14%, respectively (P≤0.05). Endogeic earthworms exerted the strongest influence on the formation of large soil aggregates (d>2 mm), with their effects on soil properties being higher than those of the other ecological groups. By elucidating the effects of different land use types on earthworm ecological groups and the impacts of their ecological group-specific casts on soil physicochemical properties, this study provides a theoretical basis for optimizing land management practices and the utilization of soil biological resources.


Key words: land use type, soil fertility, earthworm ecological group, organic matter, agricultural management practice