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林业科学 ›› 2026, Vol. 62 ›› Issue (9): 73-81.doi: 10.11707/j.1001-7488.LYKX20260144

• 研究论文 • 上一篇    下一篇

温带森林外生菌根树种优势度对树种丰富度和林分地上部分生物量的调控作用

秦江环,李海奎,杨璐,和敬渊,刘宪钊*()   

  1. 中国林业科学研究院资源信息研究所 北京 100091
  • 收稿日期:2026-03-12 修回日期:2026-06-02 出版日期:2026-09-10 发布日期:2026-09-16
  • 通讯作者: 刘宪钊 E-mail:liuxianzhao@ifrit.ac.cn
  • 基金资助:
    中国林业科学研究院基本科研业务费专项资助(CAFYBB2023MA014);国家自然科学基金项目(3250149)。

Regulatory Effect of Ectomycorrhizal Tree Species Dominance on Tree Species Richness and Stand Aboveground Biomass in Temperate Forests

Jianghuan Qin,Haikui Li,Lu Yang,Jingyuan He,Xianzhao Liu*()   

  1. Institute of Forest Resource Information Techniques, Chinese Academy of Forestry Beijing 100091
  • Received:2026-03-12 Revised:2026-06-02 Online:2026-09-10 Published:2026-09-16
  • Contact: Xianzhao Liu E-mail:liuxianzhao@ifrit.ac.cn

摘要:

目的: 探究温带森林外生菌根树种优势度对树种丰富度和林分地上部分生物量的调控作用,为温带森林生态系统可持续经营提供科学依据。方法: 依托吉林省2 224块森林资源清查样地,计算样地中外生菌根树种胸高断面积比例表征外生菌根树种优势度,结合地形、气候和土壤等环境因子,运用广义线性混合效应模型和结构方程模型,探讨外生菌根树种优势度对树种丰富度和林分地上部分生物量的影响。结果: 1) 以外生菌根树种为主的林分,其树种丰富度相对较低,而在具有混合菌根策略(外生菌根树种占比约51.7%)的林分中树种丰富度最高。在树种丰富度>6种的林分中,外生菌根树种优势度对林分地上部分生物量具有更强的正效应。在外生菌根树种优势度较高(> 50%)的林分中,树种丰富度对林分地上部分生物量的积极影响高于外生菌根树种优势度低(≤50%)的森林。2) 广义线性混合效应模型分析结果表明,外生菌根树种优势度及其与树种丰富度的交互项和土壤有机碳密度对林分地上部分生物量具有显著(P < 0.05)负效应,外生菌根树种优势度平方、树种丰富度、林分平均年龄、坡度、土壤总氮含量和纬度对林分地上部分生物量有显著(P < 0.05)正效应。3) 结构方程模型分析结果表明,相较于环境因素,生物因素(如外生菌根树种优势度及其平方、树种丰富度、林分平均年龄)对林分地上部分生物量影响更大。树种丰富度和林分平均年龄对林分地上部分生物量的影响始终为正效应。随着树种丰富度升高,外生菌根树种优势度平方对林分地上部分生物量影响的总效应由负转变为正。结论: 温带森林生态系统中混合菌根策略利于提升树种丰富度,外生菌根树种优势度有益于林分地上部分生物量积累。外生菌根树种优势度可调控树种丰富度–林分地上部分生物量的关系。本研究强调外生菌根树种优势度对森林树种多样性和林分地上部分生物量积累方面的重要性,对温带森林生态系统功能的维持和提升至关重要。

关键词: 菌根优势度, 外生菌根, 生物量, 物种多样性–生物量关系, 温带森林

Abstract:

Objective: This study aims to explore the regulatory effects of ectomycorrhizal (EcM) tree species dominance on tree species richness and stand aboveground biomass, so as to provide scientific support for the sustainable management of temperate forest ecosystems. Method: Based on 2?224 forest inventory plots in Jilin Province, the basal-area proportion at breast height of EcM tree species was calculated to characterize EcM tree species dominance. Combined with topographic, climatic and edaphic environmental factors, generalized linear mixed-effects models (GLMMs) and structural equation models (SEMs) were applied to investigate the impact of EcM tree species dominance on tree species richness and stand aboveground biomass. Result: 1) The stands dominated by EcM tree species exhibited relatively low tree species richness, while the stands with mixed mycorrhizal strategies (EcM tree species proportion approximately 51.7%) had the highest species richness. For stands with tree species richness >?6, EcM tree species dominance exerted a stronger positive effect on stand aboveground biomass. Within stands with high EcM tree species dominance (>?50%), the positive influence of tree species richness on aboveground biomass was greater than that in forests with low EcM tree species dominance (≤?50%). 2) The analysis results with GLMMs showed that the dominance of EcM tree species, and its interaction with tree species richness, as well as soil organic carbon density exerted significant (P<0.05) negative effects on stand aboveground biomass. In contrast, the quadratic term of EcM tree species dominance, tree species richness, stand mean age, slope, soil total nitrogen content and latitude had significant (P?<?0.05) positive effects. 3) SEMs analysis indicated that biotic factors (i.e., EcM tree species dominance and its quadratic term, tree species richness, and stand mean age) imposed greater impacts on stand aboveground biomass than environmental factors. Tree species richness and stand mean age consistently showed positive effects on stand aboveground biomass. As tree species richness increased, the total effect of the quadratic term of EcM tree species dominance shifted from negative to positive. Conclusion: Mixed mycorrhizal strategies facilitate tree species richness in temperate forest ecosystems, and EcM tree species dominance promotes the accumulation of stand aboveground biomass. EcM tree species dominance modulates the relationship between tree species richness and stand aboveground biomass. This study highlights the importance of EcM tree species dominance for forest diversity and aboveground biomass accumulation, which is critical for maintaining and enhancing the functions of temperate forest ecosystems.

Key words: mycorrhizal dominance, ectomycorrhiza, biomass, species richness-biomass relationship, temperate forest

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