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应用生态学报 ›› 2026, Vol. 37 ›› Issue (7): 2178-2186.doi: 10.13287/j.1001-9332.202607.002

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粤北石漠化区石生苔藓群落空间格局及其影响因素

郑会森, 陈梓宜, 叶骏霖, 吴永彬*   

  1. 华南农业大学林学与风景园林学院, 广州 510642
  • 收稿日期:2026-03-23 接受日期:2026-05-19 出版日期:2026-07-18 发布日期:2027-01-18
  • 通讯作者: *E-mail: ybwu@scau.edu.cn
  • 作者简介:郑会森, 男, 1998年生, 博士研究生。主要从事生物多样性和生态修复研究。E-mail: 339278543@qq.com
  • 基金资助:
    中央财政林业科技推广示范项目(〔2019〕GDTK-06)和中央财政国家公园建设专项资金项目(F25015,F25082)资助。

Spatial pattern and influencing factors of epilithic bryophyte communities in rocky desertification areas of northern Guangdong, China

ZHENG Huisen, CHEN Ziyi, YE Junlin, WU Yongbin*   

  1. College of Forestry and Landscape Architecture, South China Agricultural University, Guangzhou 510642, China
  • Received:2026-03-23 Accepted:2026-05-19 Online:2026-07-18 Published:2027-01-18

摘要: 粤北是我国石漠化问题突出的地区。石生苔藓作为裸岩基质上的先锋类群,在改善生境和促进植被恢复中具有重要作用。本研究以广东白湾自然保护区为对象,基于48个样地的调查,结合聚类分析与典范对应分析(CCA),探讨石生苔藓群落特征及其与环境因子的关系。结果表明:共记录石生苔藓植物23科38属69种,其中藓类占绝对优势,共计64种,优势科为丛藓科、青藓科和真藓科,生活型以交织型和丛集型为主,合计占76.8%。聚类分析将群落划分为7个类型,林缘的Patrick丰富度指数最高,为7.36;而在局部极端高湿生境中,强烈的环境过滤效应使群落结构趋于单一,易形成卷叶湿地藓单优势群落。CCA分析及层次分割共同显示,海拔和灌木郁闭度是影响群落分布的主要环境因子,其独立效应分别为1.6%和0.9%。海拔梯度的水热分配与适宜的林冠遮荫相互耦合,共同构建了支持苔藓生存与多样化的“微气候避难所”。在干旱贫瘠的裸岩环境中,苔藓群落主要依托丛藓科等耐旱优势群丛,结合交织型与丛集型生活型的组合,实现了对不同微生境的生态适应。在未来的石漠化生态修复实践中,应突破单一造林思维,重视“乔-灌-藓”立体协同恢复,通过合理调控群落郁闭度来维持底层湿润微生境,提升整体植被群落的稳定性与恢复力。

关键词: 石生苔藓, 组成特征, 多样性格局, 生活型, 群落分类, 典范对应分析

Abstract: Northern Guangdong is suffering from severe rocky desertification. As pioneer taxa on bare rock substrates, epilithic bryophytes play a crucial role in improving habitat quality and facilitating vegetation restoration. Taking the Baiwan Nature Reserve in Guangdong Province as the study area, we investigated 48 plots and employed cluster analysis alongside canonical correspondence analysis (CCA) to explore the characteristics of epilithic bryophyte communities and their relationships with environmental factors. The results showed that a total of 69 epilithic bryophyte species belonging to 38 genera and 23 families were recorded, with mosses exhibiting absolute dominance (64 species). The dominant families were Pottiaceae, Brachytheciaceae, and Bryaceae, while the life forms were dominated by wefts and turfs, accounting for 76.8% together. Cluster analysis classified the communities into seven types. The Patrick richness index peaked at the forest edge (7.36). Under the strong environmental filtering effect of extreme high-humidity, community structure tended to be simplified, facilitating the formation of a single-dominant community of Hyophila involuta. CCA and hierarchical partitioning collectively demonstrated that elevation and shrub canopy closure were the primary environmental factors affecting community distribution, with independent effects of 1.6% and 0.9%, respectively. The coupling of hydrothermal distribution along the altitude gradient and suitable canopy shading collectively constructs a “microclimate refugium” that supports the survival and diversification of bryophytes. In arid and barren exposed-rock environments, moss communities were dominated by drought-tolerant dominant taxa (e.g., Pottiaceae), coupled with a combination of weft and turf life forms, to achieve ecological adaptation across diverse microhabitats. For future ecological restoration practices, it is crucial to overcome the traditional single-afforestation mindset and prioritize a “tree-shrub-moss” three-dimensional synergistic restoration in rocky desertification areas. By rationally regulating community canopy closure to maintain a moist understory microhabitat, the stability and resilience of the overall vegetation community can be effectively enhanced.

Key words: epilithic bryophyte, composition characteristic, diversity pattern, life form, community classification, canonical correspondence analysis