植物生态学报

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热带云雾林宿主树皮粗糙度对附生维管植物多样性与孢子定殖的影响

胡光明, 欧旭, 龙文兴   

  1. 海南大学热带农林学院(农业农村学院、乡村振兴学院), 海南儋州 571737, 海南 571737 中国
    海南大学生态学院, 海南海口 570228, 海南 570228 中国
  • 收稿日期:2025-06-23 修回日期:2025-12-14 接受日期:2026-01-14
  • 基金资助:
    国家自然科学基金项目热带云雾林林冠附生维管植物繁殖体扩散及物种共存机制研究(31870508)

Effects of host bark roughness on vascular epiphytic diversity and spore colonization in a tropical cloud forest(Re-submit after revision)

HU Guang-Ming, OU Xu, LONG Wen-Xing   

  1. , College of Tropical Agriculture and Forestry, Hainan University (College of Agriculture and Rural Affairs, College of Rural Revitalization), Danzhou, Hainan 571737, China 571737, China
    , College of Ecology, Hainan University, Hainan, Haikou 570228, China 570228, China
  • Received:2025-06-23 Revised:2025-12-14 Accepted:2026-01-14
  • Supported by:
    Research on the Propagation and Species Coexistence Mechanism of Crown Associated Vascular Plants in Tropical Cloud and Mist Forests, funded by the National Natural Science Foundation of China(31870508)

摘要: 粗糙的树皮不仅为附生维管植物提供了必要的物理支持,还提供多样化的微生境,提高物种多样性。以海南热带雨林国家公园霸王岭片区热带云雾林中的附生维管植物为研究对象, 调查21个20m×20m样地内宿主树粗糙度、胸径与附生维管植物多样性,实施附生维管植物孢子定殖实验探究宿主树树皮粗糙度对附生维管植物多样性和孢子定殖的影响规律。结果显示,从幼树到成年树,不同生长阶段的宿主树树皮粗糙度显著增加;树皮粗糙度对附生维管植物丰富度和多度都有显著影响,解释方差比例为分别为79.4%和81.9%;宿主树生长阶段对附生维管植物多样性的解释方差比例接近0,但树皮粗糙度与宿主树生长阶段的交互作用对附生维管植物丰富度和多度的解释方差比例分别为4%和5.6%,说明宿主树生长阶段通过影响树皮粗糙度来影响附生植物多样性。宿主树皮粗糙度对附生维管植物孢子的定殖有显著影响,较高的树皮粗糙度提供了更适宜的微环境,显著增加了附着孢子数量。

关键词: 粗糙度, 附生维管植物, 宿主树, 生长阶段, 多样性, 定殖

Abstract: Aims The rough bark provides essential physical support for vascular epiphytic plants while also creating diverse microhabitats that enhance species diversity. Methods Vascular epiphyte diversity and spore colonization were studied in 21 20m×20m plots in the Bawangling area of Hainan Tropical Rainforest National Park, examining the effects of host tree bark roughness and diameter at breast height,the effects of bark roughness of host tree on the diversity and spore colonization of epiphytic vascular plants were studied. Important findings From sampling to adult trees, bark roughness of host trees significantly increased at different growth stages. Bark roughness significantly influenced the richness and abundance of vascular epiphytes, explaining 79.4% and 81.9% of the variance, respectively. The host tree growth stage had minimal effect on vascular epiphyte diversity, with a near-zero explained variance. However, the interaction between bark roughness and host tree growth stage explained 4% and 5.6% of the variance in epiphyte richness and abundance, respectively, suggesting that the host tree growth stage affects epiphytic plant diversity via bark roughness. Host bark roughness also significantly impacts the colonization of vascular epiphytic spores; greater roughness provides a more suitable microenvironment, significantly increasing spore attachment. In summary, rough bark provides physical support and diverse microhabitats, enhancing species diversity.

Key words: Roughness, Vascular epiphyte, Host tree, Growth stage, Diversity, Colonization