生物多样性

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矿区植被恢复初期植物多样性对土壤活性碳组分季节动态的影响

尉桐瑞1,2,3, 李苗苗4, 赵勇4, 刘彦涛4, 张乃莉1,2,3*, 曲来叶5*   

  1. 1. 北京林业大学林学院林木资源高效生产全国重点实验室,北京100083; 2. 植物次生代谢产物高效合成北京市重点实验室,北京 100083; 3. 国家林业和草原局黑龙江三江平原湿地生态观测研究站,黑龙江双鸭山 518000; 4. 国家电投集团内蒙古能源有限公司,内蒙古通辽 028000; 5. 中国科学院生态环境研究中心城市与区域生态学国家重点实验室,北京100085
  • 收稿日期:2026-04-21 修回日期:2026-08-12 接受日期:2026-08-22
  • 通讯作者: 张乃莉

Effects of plant diversity on seasonal dynamics of soil labile carbon fractions during the early stage of vegetation restoration in open-pit mining areas

Tongrui Yu1,2,3, Miaomiao Li4, Yong Zhao4, Yantao Liu4, Naili Zhang1,2,3*, Laiye Qu5*   

  1. 1 State Key Laboratory of Efficient Production of Forest Resources, College of Forestry, Beijing Forestry University, Beijing 100083, China; 

    2 Beijing Key Laboratory of Efficient Synthesis of Plant Secondary Metabolites, Beijing Forestry University, Beijing 100083, China; 

    3 Ecological Observation and Research Station of Heilongjiang Sanjiang Plain Wetlands, National Forestry and Grassland Administration, Shuangyashan, Heilongjiang 518000, China; 

    4 Inner Mongolia Energy Limited, The State Power Investment Corporation, Tongliao, Nei Mongol 028000, China 

    5 State Key Laboratory of Urban and Regional Ecology, Research Center for Eco-Environmental Science, Chinese Academy of Sciences, Beijing 100085, China

  • Received:2026-04-21 Revised:2026-08-12 Accepted:2026-08-22
  • Contact: Naili Zhang

摘要: 土壤有机碳库的动态变化是评价矿区重度退化生态系统功能修复的关键,其中活性有机碳是恢复初期土壤碳过程与功能恢复的重要方面。本研究依托内蒙古西乌珠穆沁旗白音华矿区植被重建实验,测定了关键物候期(5月、7月和8月)不同植物多样性配置下土壤的理化性质、可溶性有机碳(dissolved organic carbon, DOC)含量、微生物生物量碳(microbial biomass carbon, MBC)含量及微生物群落特征,旨在揭示植被重建初期土壤活性碳组分的季节演变机制。结果表明:(1)土壤DOC与MBC含量呈现显著的季节波动,且植物多样性对两者的影响在不同季节存在显著差异。DOC含量在5月随植物多样性增加呈下降趋势;但在8月随植物多样性增加显著上升,而MBC含量在8月随植物多样性增加显著下降。(2)真菌群落特征及其演替表现出强烈的季节性波动,8月真菌多样性及r-策略真菌丰富度均随植物多样性增加显著上升;深入分析发现真菌群落组成是调控DOC与MBC的重要生物因素之一。在植被重建初期,高多样性群落并非单纯依赖生物量的增加,可能是通过丰富根际碳源输入,促进了r-策略真菌的生长;此外,8月降水引起的干湿交替及养分竞争,共同导致MBC的短期消耗。本研究揭示了植被恢复早期的微生态演变规律,也为矿区生态重建提供了科学支撑。针对半干旱矿区生态恢复,我们建议在群落配置上推广多物种混播以促进碳循环;在旱期实施地表保墒以减少微生物碳损耗;并在生长旺季适时追施速效磷肥以缓解养分竞争,促进矿区退化生态系统地上-地下过程的协同修复。

关键词: 露天矿, 植被恢复, 植物多样性, 土壤微生物, 季节动态, 土壤活性碳组分, r-策略/K-策略

Abstract

Aims: The dynamic changes of soil organic carbon pools are critical for evaluating the functional restoration of severely degraded ecosystems in mining areas, among which labile organic carbon is a vital aspect of soil carbon processes and functional recovery during the early restoration stage. This study aims to reveal the seasonal evolution mechanisms of soil labile carbon components during the early stage of vegetation reconstruction. 

Method: Based on a vegetation reconstruction experiment in the Baiyinhua mining area of West Ujimqin Banner, Nei Mongol, we measured soil physicochemical factors, dissolved organic carbon (DOC), microbial biomass carbon (MBC), and microbial community characteristics under different plant diversity configurations at key phenological stages (May, July, and August). 

Results: (1) Soil DOC and MBC contents exhibited significant seasonal fluctuations, and the impact of plant diversity on both variables differed significantly across seasons. In May, DOC showed a decreasing trend with increased plant diversity; in August, DOC significantly increased while MBC significantly decreased with higher plant diversity. (2) Fungal community characteristics and succession exhibited strong seasonal fluctuations. In August, both fungal diversity and r-strategy fungal richness significantly increased with increasing plant diversity. Further analysis revealed that fungal community composition is one of the important biological factors regulating DOC and MBC. During the early stages of vegetation reconstruction, high-diversity communities do not merely rely on increased biomass; they likely promote the growth of r-strategy fungi by enriching rhizospheric carbon inputs. Additionally, dry-wet cycles caused by August rainfall, coupled with nutrient competition, jointly resulted in the short-term depletion of MBC. 

Conclusions: This study reveals the micro-ecological evolution patterns during early vegetation restoration, providing scientific support for ecological reconstruction in mining areas. For ecological restoration in semi-arid mining areas, we recommend: promoting multi-species mixed sowing in community configurations to enhance carbon cycling; implementing surface moisture conservation during dry periods to reduce microbial carbon loss; and timely topdressing with available phosphorus fertilizer during the peak growth season to alleviate nutrient competition, thereby promoting the synergistic restoration of above-ground and below-ground processes in degraded mining ecosystems.

Key words: open-pit mine, vegetation restoration, plant diversity, soil microorganisms, seasonal dynamics, soil labile organic carbon, r-strategy/K-strategy