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应用生态学报 ›› 2026, Vol. 37 ›› Issue (8): 2793-2802.doi: 10.13287/j.1001-9332.202608.033

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火烧对亚热带-暖温带过渡带森林土壤线虫群落结构及微食物网能量流动的影响

齐新羽1,2,3, 王晨1,2,3, 田湘婷1,2,3, 颜莫涵1,2,3, 郭皓元1,2,3, 苗原1,2,3, 张冰1,2,3, 邱林4,5, 单燕祥4,5, 李月凤4,5, 王冬1,2,3*   

  1. 1河南大学生命科学学院全球变化生态学国际联合实验室, 河南开封 475004;
    2河南大别山森林生态系统国家野外科学观测研究站, 河南开封 475004;
    3河南省黄河流域小秦岭生态修复野外科学观测研究站, 河南开封 475004;
    4河南省信阳市林业科学研究所, 河南信阳 464031;
    5河南鸡公山森林生态系统国家定位观测研究站, 河南信阳 464031
  • 收稿日期:2026-04-22 修回日期:2026-07-04 出版日期:2026-08-18 发布日期:2027-02-18
  • 通讯作者: *E-mail: wangdong19882005@163.com
  • 作者简介:齐新羽, 女, 2004年生, 本科生。主要从事恢复生态学研究。E-mail: 2310140077@henu.edu.cn
  • 基金资助:
    河南省高等学校青年骨干教师培养计划项目(2024GGJS018)、河南省自然科学基金项目(242300421102)、信阳生态研究院开放基金项目(2023XYQN11)和河南省研究生教育改革与质量提升工程(YJS2025GZZ26)

Spatial correlation network characteristics and influencing factors of urban ecological vulnerability in the Yellow River Basin, China

QI Xinyu1,2,3, WANG Chen1,2,3, TIAN Xiangting1,2,3, YAN Mohan1,2,3, GUO Haoyuan1,2,3, MIAO Yuan1,2,3, ZHANG Bing1,2,3, QIU Lin4,5, SHAN Yanxiang4,5, LI Yuefeng4,5, WANG Dong1,2,3*   

  1. 1International Joint Research Laboratory of Global Change Ecology, College of Life Sciences, Henan University, Kaifeng 475004, Henan, China;
    2Henan Dabieshan National Field Observation and Research Station of Forest Ecosystem, Kaifeng 475004, Henan, China;
    3Henan Province Xiaoqinling Ecological Restoration Field Observation and Research Station of the Yellow River Basin, Kaifeng 475004, Henan, China;
    4Henan Province Xinyang Institute of Forestry Science, Xinyang 464031, Henan, China;
    5Henan Jigongshan Forest Ecosystem National Observation and Research Station, Xinyang 464031, Henan, China
  • Received:2026-04-22 Revised:2026-07-04 Online:2026-08-18 Published:2027-02-18

摘要: 为明确火烧对亚热带-暖温带过渡带不同林型土壤线虫群落结构及微食物网能量流动的影响,本研究选取亚热带-暖温带过渡带河南大别山森林生态系统国家野外科学观测研究站贤山林区阔叶林、针阔混交林和针叶林为研究对象,对比分析未火烧与火烧样地土壤线虫群落结构与微食物网能量流动,并探究其关键驱动因子。结果表明:与未火烧样地相比,3种林型火烧样地平均土壤线虫总丰度显著降低了30.3%,捕/杂食线虫相对丰度显著降低了58.9%,土壤线虫成熟度指数和通道指数分别显著降低了10.9%和22.6%,食微线虫、植食性线虫相对丰度及多样性指数无显著变化。与未火烧样地相比,阔叶林火烧样地土壤线虫Shannon多样性指数、丰富度指数和富集指数分别显著提高了9.5%、26.9%和44.5%,成熟度指数与通道指数分别显著降低了19.5%和41.3%,土壤有机质分解以食细菌通道为主,土壤线虫总丰度、各营养类群相对丰度无显著变化;针阔混交林火烧样地捕/杂食线虫相对丰度显著降低了61.9%,而食微线虫、植食性线虫相对丰度及生态指数无显著变化;针叶林火烧样地土壤线虫总丰度、各营养类群相对丰度、生态指数均无显著变化。区系分析表明,阔叶林火烧样地土壤线虫功能代谢足迹提高,而混交林与针叶林下降。针阔混交林火烧样地土壤线虫微食物网不同能量通道间的能流分配更为均匀;阔叶林与针叶林火烧样地土壤线虫微食物网有机质分解通道和捕食通道能流受到抑制,能流向植食通道集中,能量流动分配均匀度降低。凋落物质量、土壤速效氮含量和土壤含水量是影响线虫群落组成的关键环境因子。综上,不同林型土壤线虫群落对火烧的响应存在差异,其中阔叶林展现出较强的多样性恢复潜力和养分富集能力,混交林土壤线虫微食物网能流分配均匀性得到提升,针叶林则表现出功能抑制与代谢活性减弱特征。这一结果可为区域火烧迹地生态恢复与土壤健康评估提供科学支撑。

关键词: 土壤线虫, 火烧, 森林类型, 群落结构, 能量流动, 生态修复

Abstract: To elucidate the effects of fire on soil nematode community structure and energy flow within the soil micro-food web across different forest types in the subtropical-temperate transition zone, we investigated soil nematode communities in broadleaf forest, mixed coniferous-broadleaf forest, and coniferous forest in the Xianshan forest area near Henan Dabie Mountains National Forest Ecosystem Field Observation and Research Station. We analyzed soil nematode community structure and micro-food web energy flow between burned and unburned plots, and explored the key driving factors. The results showed that fire significantly reduced the average total soil nematode abundance and the relative abundance of omnivore-predator nematodes across the three forest types by 30.3% and 58.9%, respectively. Meanwhile, fire significantly decreased the soil nematode maturity index and channel index by 10.9% and 22.6%, respectively. There were no significant changes in the relative abundance of microbe-feeding nematodes, plant-parasitic nematodes, or diversity indices. For broadleaf forests, fire significantly increased the Shannon diversity index, richness index, and enrichment index of soil nematodes by 9.5%, 26.9%, and 44.5%, whereas the maturity index and channel index decreased by 19.5% and 41.3%, respectively. Post-fire soil organic matter decomposition was predominantly mediated by the bacterial channel, and no changes were found in total nematode abundance or the relative abundance of any trophic group. In mixed coniferous-broadleaf forests, fire significantly reduced the relative abundance of omnivore-predator nematodes by 61.9%, but did not affect the relative abundance of microbe-feeding nematodes, plant-parasitic nematodes, or ecological indices. For coniferous forests, fire did not alter total nematode abundance, the relative abundance of any trophic group, or ecological indices. Nematode faunal analysis showed that fire increased the functional metabolic footprint of soil nematodes in broadleaf forests, but reduced that in mixed coniferous-broadleaf and coniferous forests. Fire resulted in more uniform energy flow distribution among different energy channels in the micro-food web of mixed coniferous-broadleaf forests. In contrast, energy flow through organic matter decomposition channels and predation channels in the micro-food web was inhi-bited in broadleaf and coniferous forests, with energy concentrated in the plant-parasitic channel and energy flow uniformity decreasing. Litter quality, soil available nitrogen content, and soil water content were the key environmental factors affecting soil nematode community composition. In conclusion, soil nematode communities in different forest types exhibited divergent responses to fire. Broadleaf forests showed stronger potential for biodiversity recovery and nutrient enrichment, mixed forests had improved energy flow uniformity in the micro-food web, and coniferous forests exhibited characteristics of functional inhibition and reduced metabolic activity. These results provide a scientific basis for regional ecological restoration and soil health assessment of burned forests in the subtropical-temperate transition zone.

Key words: soil nematode, fire, forest type, community structure, energy flow, ecological restoration