›› 2026, Vol. 50 ›› Issue (预发表): 0-.DOI: 10.17521/cjpe.2025.0226

• •    下一篇

全球变化因子多样性对菌根植物性状的影响

段建林, 孟晟, 陈仁利, 熊林峰, 卢春洋, 席念勋   

  1. 海南大学热带农林学院, 海南 570228 中国
    中国林业科学研究院热带林业研究所, 广东 510520 中国
    海南大学生态学院国家生态质量综合监测站海南热带雨林站(森林), 海南 570228 中国
  • 收稿日期:2025-06-16 修回日期:2026-01-14 接受日期:2026-01-15 出版日期:2026-04-20
  • 基金资助:
    海南省自然科学基金(425MS035)

The impact of multiple global change factors on traits of mycorrhizal plants

XI Nian-Xun   

  1. , School of Tropical Agriculture and Forestry, Hainan University 570228, China
    , Research Institute of Tropical Forestry, CAF 510520, China
    Hainan Baoting Tropical Rainforest Ecosystem Observation and Research Station, School of Ecology, Hainan University 570228, China
  • Received:2025-06-16 Revised:2026-01-14 Accepted:2026-01-15 Online:2026-04-20

摘要: 随着人类活动的不断增加,影响全球生态系统的环境因子的强度逐渐增强,且多个因子常常在同一生态系统中同时出现,共同影响植物的表现。然而,随着全球变化因子数量的增加,菌根植物关键功能性状的变化趋势仍知之甚少。本研究旨在探讨多种全球变化因子共同作用对外生菌根和丛枝菌根植物功能性状的影响。本研究采用盆栽控制试验的方法,选择当地常见的六种菌根植物幼苗为对象,探究不同数量的全球变化因子对两种类型菌根植物功能性状的影响。实验设定了对照处理(0个因子)和8个因子的四个处理梯度:1个因子、2个因子、4个因子和8个因子组合的不同处理。经过一年处理后,测量植物的光合速率、叶片和根系的性状指标,以评估全球变化因子数目对植物功能性状的影响。结果显示,随着全球变化因子数量的增加,不同菌根类型和不同物种植物的光合速率、地上和地下的部分功能性状表现出线性或非线性变化,不同菌根类型和不同物种的变化趋势亦不相同。植物功能性状与全球变化因子数目的关系中,线性关系可能反映了多因子作用的加性效应,而非线性关系则可能由因子间的非加性相互作用(协同或拮抗)所引起。这些结果揭示了全球变化因子对植物功能性状的复杂影响,以及不同物种对这些环境压力的独特响应,为理解植物在全球变化背景下的性状响应规律提供了实验依据,同时也为应对全球变化的加剧提供了有益的研究思路。

关键词: 全球变化因子多样性, 植物功能性状, 外生菌根植物, 丛枝状菌根植物

Abstract: Aims As human activities continue to intensify, the strength of environmental factors affecting global ecosystems has gradually increased, and multiple factors often change simultaneously within a single ecosystem, collectively influencing plant performance. However, with the increasing number of global change factors, the trend of changes in key functional traits of mycorrhizal plants remains poorly understood. This study aimed to investigate the combined effects of multiple global change factors on the functional traits of ectomycorrhizal and arbuscular mycorrhizal plants. Methods This study employed a pot-controlled experimental approach, using seedlings of six locally common mycorrhizal plant species as subjects to investigate the effects of varying numbers of global change factors on the functional traits of two types of mycorrhizal plants. The experiment included a control treatment (0 factors) and four treatment gradients consisting of combinations of 1, 2, 4, and 8 factors. After one year of treatment, measurements were taken of plant photosynthetic rate, as well as leaf and root trait indicators, to evaluate the impact of the number of global change factors on plant functional traits. Important findings The results showed that, with increasing numbers of global change factors, photosynthetic, aboveground, and belowground functional traits exhibit linear or nonlinear changes depending on mycorrhizal types and plant species. The linear relationship between plant functional traits and the number of global change factors may reflect additive effects of multi-factor interactions, while nonlinear relationships likely result from non-additive interactions (synergistic or antagonistic effects) among the factors. These findings highlight the complex influence of global change factors on plant functional traits, as well as the unique responses of different species to environmental pressures. The results provide valuable experimental insights into the response patterns of plant traits under increasing numbers of global change factors, offering a basis for understanding and mitigating the impacts of intensified global change.

Key words: Richness of Global Change Factors, Plant functional traits, Ecto-mycorrhizal Plants, Arbuscular Mycorrhizal plants