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生态学杂志 ›› 2026, Vol. 45 ›› Issue (2): 483-490.doi: 10.13292/j.1000-4890.202602.001

• 研究报告 • 上一篇    下一篇

亚热带马尾松疫木伐除对林分空间结构和林下植被更新的影响

陈子熙1,2,3,罗超1,3*,李生1,3*,周雨飞1,4,邵慰忠5   

  1. 1中国林业科学研究院亚热带林业研究所, 杭州 311400; 2南京林业大学, 南京 210037; 3贵州普定石漠化生态系统国家定位观测研究站, 贵州普定 562100; 4西南林业大学, 昆明 650224; 5建德市林业局, 杭州 311600)

  • 出版日期:2026-02-10 发布日期:2026-08-01

Effects of removing infected Pinus massoniana on stand spatial structure and understory vegetation regeneration in a subtropical region.

CHEN Zixi1,2,3, LUO Chao1,3*, LI Sheng1,3*, ZHOU Yufei1,4, SHAO Weizhong5   

  1. (1Research Institute of Subtropical Forestry, Chinese Academy of Forestry, Hangzhou 311400, China; 2Nanjing Forestry University, Nanjing 210037, China; 3Guizhou Puding Rocky Desertification Ecosystem National Observation and Research Station, Puding 562100, Guizhou, China; 4Southwest Forestry University, Kunming 650224, China; 5Jiande City Forestry Bureau, Hangzhou 311600, China).

  • Online:2026-02-10 Published:2026-08-01

摘要: 马尾松林发生松材线虫病后需要伐除病株以阻止疫情扩散,明确马尾松疫木伐除对林分空间结构、林下群落更新和演替产生的影响,能够为受害马尾松林的生态恢复及群落构建提供科学参考。本研究选取受松材线虫病侵扰后不同疫木伐除强度的林分(轻度择伐Ⅰ、中度择伐Ⅱ、重度择伐Ⅲ和皆伐Ⅳ)和无干扰的马尾松次生林(对照CK)为研究对象,分析了马尾松不同强度伐除后的林分空间结构、林下更新物种组成、密度、多样性以及基径/高度分布的差异,探讨了林分空间结构与木本植物幼苗物种多样性和基径/高度分布之间的关系。结果表明:不同择伐强度的林分空间结构(除开敞度外)均有显著差异(P<0.05),随着马尾松伐除强度增加,林分内林木空间分布更均匀,混交度上升,竞争指数逐渐下降;CK和Ⅰ处理幼苗/幼树的基径和高度分布均匀,而Ⅱ、Ⅲ和Ⅳ处理幼苗/幼树的基径分布集中在0.15~1 cm,高度分布集中在0.2~1 m;Ⅳ处理的林下幼苗密度显著高于其他择伐强度(P<0.05),CK的幼苗物种多样性显著高于Ⅰ、Ⅱ、Ⅲ和Ⅳ(P<0.05);林下更新层物种多样性主要受林分水平结构和竞争态势的影响,而幼苗密度主要受竞争指数和开敞度的影响。马尾松疫木伐除有利于林分空间结构的优化,能促进幼苗向幼树过渡,推动受害马尾松林向针阔混交异龄林演替,提高对松材线虫病的抵御能力,但高强度的采伐使林下更新层物种多样性下降,建议在疫情早期对疫木进行适度动态伐除。


关键词: 马尾松, 疫木伐除, 林分结构, 更新幼苗, 物种多样性

Abstract: To prevent the spread of pine wilt disease caused by Bursaphelenchus xylophilus on Masson pine (Pinus massoniana), the infected trees should be removed. Clarifying the impacts of removing infected trees on stand spatial structure, understory regeneration, and community succession can provide scientific basis for ecological restoration and stand construction of Masson pine forests suffered the wilt disease. We investigated the differences in stand spatial structure, understory species composition, density, diversity, and basal diameter/height distribution across stands with varying intensities of infected tree removal (undisturbed stand (CK), light logging (I), moderate logging (II), heavy logging (III), and clearcutting (IV)). We further explored the relationship between stand spatial structure and the diversity and basal diameter/height distribution of woody plant seedlings. The results showed that stand spatial structure (except for opening degree) differed significantly among logging intensities (P<0.05). With increasing logging intensity, tree distribution became more uniform, mingling degree increased, and competition index decreased. Seedlings and saplings in the treatments CK and I had evenly distributed basal diameters and heights, whereas those in treatments II, III, and IV were concentrated in 0.15-1 cm and 0.2-1 m ranges, respectively. Seedling density in the treatment IV was significantly higher than that other stands (P<0.05), and species diversity of seedlings in CK was significantly higher than that in logged stands (P<0.05). Understory species diversity was mainly influenced by horizontal structure and competition, while seedling density was affected by competition index and opening degree. In conclusion, the removal of infected Masson pines optimizes stand spatial structure, promotes seedling-to-sapling transition, facilitates the succession of damaged Masson pine forest toward uneven-aged mixed conifer-broadleaf forests, and thereby enhances resistance to pine wilt disease. However, high-intensity logging reduces understory species diversity. Therefore, we recommend adopting moderate and dynamic thinning in early stages of infestation to get a balance between disease control and biodiversity conservation.


Key words: Pinus massoniana, infected tree removal, stand structure, regenerated seedling, species diversity