欢迎访问《生态学杂志》官方网站,今天是

生态学杂志 ›› 2026, Vol. 45 ›› Issue (7): 2137-2146.doi: 10.13292/j.1000-4890.202607.035

• ·矿区生态过程与生态修复专栏· (专栏组织专家: 伍松林、王少锋、王美娥、刘允佳) • 上一篇    下一篇

露采矿山植被修复区优势树种根际土壤特性与微生物群落特征

赵立云*,李杰三,汪平,陈海良,管瑞哲


  

  1. (浙江省地质院, 杭州310007)

  • 出版日期:2026-07-10 发布日期:2026-07-08

Rhizosphere soil characteristics and microbial community structure of dominant tree species in vegetation restoration areas of openpit mines.

ZHAO Liyun*, LI Jiesan, WANG Ping, CHEN Hailiang, GUAN Ruizhe   

  1. (Zhejiang Institute of Geosciences, Hangzhou 310007, China).

  • Online:2026-07-10 Published:2026-07-08

摘要: 植被修复对废弃露采矿山生态恢复极为重要。本研究以浙江绍兴复绿矿山的优势树种刺柏(Juniperus formosana)、女贞(Ligustrum lucidum)和油桐(Vernicia fordii)的根际土为对象,分析根际土壤理化性质、土壤酶活和土壤微生物群落结构,探究优势树种对露采矿山复绿过程中土壤理化性质和土壤微生物群落结构的影响。结果表明,女贞根际土壤pH值最低,但含水率最高;刺柏根际土壤粉粒含量最高,有机碳、全氮和有效氮含量均显著高于女贞和油桐。3个树种根际土壤的酸性磷酸酶活性之间无显著差异,但女贞根际土壤的N-乙酰-β-D-葡萄糖苷酶、亮氨酸氨基肽酶和β葡萄糖苷酶活性显著高于刺柏和油桐。3个树种根际土壤真菌群落的优势菌门为担子菌门(Basidiomycota)和子囊菌门(Ascomycota),细菌优势菌门为假单胞菌门(Pseudomonadota)、放线菌门(Actinomycetota)和酸杆菌门(Acidobacteriota);油桐根际土壤真菌物种操作分类单元(OTU)数量最高,女贞根际土壤细菌OTU数量最高,而刺柏的根际细菌和真菌OTU数量均最低;油桐根际细菌和真菌多样性的Chao1、Shannon和Simpson指数最高,刺柏最低。土壤含水率、土壤有机质、有机碳、全氮和有效磷等指标影响细菌群落结构,土壤有机碳、全氮和有效磷影响土壤真菌群落结构。可见,刺柏根际土壤养分恢复效果更好,根际土壤微生物群落多样性虽低但结构更稳定,招募的特定微生物假单胞菌门有助于土壤修复;油桐能招募更多土壤微生物群落来改善土壤微环境。研究结果可为矿山复绿过程中合适树种的筛选策略提供理论依据,为矿山生态修复土壤质量的提升提供科学参考。


关键词: 矿山修复, 植被恢复, 优势树种, 土壤理化性质, 土壤微生物

Abstract: Vegetation restoration is crucial for the ecological restoration of abandoned mines. To explore the effects of dominant tree species on soil physicochemical properties and microbial community structure during the restoration of open-pit mines, we collected soil samples from the rhizosphere of Juniperus formosana, Ligustrum lucidum, and Vernicia fordii in a recovered mine in Shaoxing, Zhejiang Province. We analyzed the impacts of different plant species on the improvement of soil quality. The results showed that pH of the rhizosphere soil of L. lucidum was the lowest, while soil water content was the highest. Silt soil content was the highest in the rhizosphere soil of J. formosana, with organic carbon, total nitrogen, and available nitrogen contents being higher than those of L. lucidum and V. fordii. There were no significant differences in acid phosphatase (ACP) activity of rhizosphere soils among the three tree species. The activities of N-acetyl-β-D-glucosidase (NAG), leucine aminopeptidase (LAP) and β-glucosidase in the rhizosphere soil of L. lucidum were significantly higher than those of J. formosana and V. fordii. The dominant fungal phyla in the rhizosphere soils of the three tree species were Basidiomycota and Ascomycota, while the dominant bacterial phyla were Pseudomonadota, Actinomycetota, and Acidobacteriota. The highest abundance of fungal operational taxonomic units (OTUs) was recorded in the rhizosphere soil of V. fordii, while the highest abundance of bacterial OTUs was recorded in the rhizosphere soil of L. lucidum. In contrast, the lowest abundance of bacterial OTUs and fungal OTUs were found in J. formosana. The Chao1, Shannon, and Simpson indices of bacterial and fungal diversity were the highest in the rhizosphere soil of V. fordii and the lowest in the rhizosphere soil of J. formosana. Soil water content, soil organic carbon, total nitrogen and available phosphorus affected bacterial community structure, while organic carbon, total nitrogen and available phosphorus affected soil fungal community structure. J. formosana was more conducive to the recovery of soil nutrients. The structure of the microbial community in rhizosphere soils of J. formosana was more stable though the diversity of the microbial community was lower. The specific Pseudomonadota recruited may contribute to soil remediation. V. fordii could recruit more soil microorganisms to improve soil microenvironment. These findings provide a theoretical basis for selecting appropriate tree species during mine revegetation and offer scientific reference for enhancing soil quality during the ecological restoration of mine.


Key words: mine restoration, vegetation restoration, dominant tree species, soil physicochemical property, soil microorganisms