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菌藻-植物联合修复提升矿山渣土功能并重组微生物群落

马莉 郭芸 黄永庭 包琼 贾雪梅 周自强

山西农业大学学报(自然科学版)2026,Vol.46Issue(3):138-149,12.
山西农业大学学报(自然科学版)2026,Vol.46Issue(3):138-149,12.DOI:10.13842/j.cnki.issn1671-8151.202512022

菌藻-植物联合修复提升矿山渣土功能并重组微生物群落

Combined remediation by cyanobacteria-microbial agents and plants enhances the function of mine waste soil and reorganizes the microbial community

马莉 1郭芸 1黄永庭 1包琼 2贾雪梅 1周自强1

作者信息

  • 1. 甘肃省科学院 地质自然灾害防治研究所,甘肃 兰州 730000
  • 2. 甘肃省土地开发整理中心,甘肃 兰州 730000
  • 折叠

摘要

Abstract

[Objective]The utilization of microorganisms and plants to improve mine waste soil has certain potential.This study aimed to investigate the effects of microbial inoculants and cyanobacterial solutions under different plant colonization conditions on soil fertility,enzyme activities,and microbial communities,and to provide a scientific basis for the biological amelioration of nutrient-poor mining substrates.[Methods]Using mine waste soil as the object,nine treatment combinations were established in a pot experiment:Nostoc+Gramineous plants(NG),compound microbial agent(Arbuscular mycorrhizal fungi+Tricho-derma harzianum)+Gramineous plants(MG),microbial agent-cyanobacteria(compound microbial agent+Nostoc)+Gramin-eous plants(MNG),Nostoc+Leguminous plants(NL),compound microbial agent+Leguminous plants(ML),compound microbial agent-cyanobacteria+Leguminous plants(MNL),Nostoc+Gramineae-Leguminosae mixed sowing(NGL),com-pound microbial agent+Gramineae-Leguminosae mixed sowing(MGL),and compound microbial agent-cyanobacteria+Gra-mineae-Leguminosae mixed sowing(MNGL).A no-planting treatment served as the control(CK).Soil nutrient contents,soil enzyme activities,and the community structure and diversity of fungi and bacteria were systematically analyzed under differ-ent treatments.[Results]Compared with the CK,the MNG and MNGL treatments significantly increased soil organic matter content by 9.4%~13.1%.The MNG treatment significantly enhanced the contents of available phosphorus and available po-tassium.Sucrase activity under the NL,ML,and MNL treatments was significantly higher than that in other treatments,in-creasing by 2.06~2.87 times compared with the CK.Alkaline phosphatase activity showed the largest increase under the MNL treatment,significantly increasing by 96.6%compared with the CK.A total of 3985 fungal ASVs were detected,of which only 1.65%were shared core taxa,while 9729 bacterial ASVs were detected,with shared core taxa accounting for 8.82%.Under the MNL and MNGL treatments,the primary dominant fungal phylum in the soil was Ascomycota,and the primary dominant bacterial phyla included Proteobacteria and Bacteroidota.The cyanobacteria-microbial agent treatments resulted in lower fungal community richness and diversity indices than the CK,and driven their community structures to converge under different plant configuration conditions,while bacterial community diversity and structural changes were minor.These shifts were closely asso-ciated with soil physicochemical properties and enzyme activities,with a more pronounced influence observed on fungal commu-nities.In the comprehensive soil quality evaluation,the MGL,MNGL,and NGL treatments ranked as the top three.[Conclu-sion]The synergistic colonization of compound microbial agents,cyanobacteria,,and different plants had significant effects on the nutrients,enzyme activities,and microbial communities of mine waste soil.Among them,the"compound microbial agent-cyanobacteria+Gramineae-Leguminosae mixed sowing"model showed the optimal effect for improving mine waste soil.

关键词

微生物菌剂/念珠藻/草本植物/矿山渣土/微生物群落

Key words

Microbial agents/Nostoc/Herbaceous plants/Mine waste soil/Microbial community

分类

农业科技

引用本文复制引用

马莉,郭芸,黄永庭,包琼,贾雪梅,周自强..菌藻-植物联合修复提升矿山渣土功能并重组微生物群落[J].山西农业大学学报(自然科学版),2026,46(3):138-149,12.

基金项目

甘肃省科学院引进人才科研启动经费项目(QD2024-05) (QD2024-05)

甘肃省科技重大专项计划项目(22ZD6FA042) (22ZD6FA042)

自然资源部黄河上游战略性矿产资源重点实验室开放基金课题(YSMRKF202307) (YSMRKF202307)

山西农业大学学报(自然科学版)

1671-8151

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