高级检索+

马尾松林间伐改造对林分结构及生态功能的影响

Effect of Thinning and Transformation on Stand Structure and Ecological Functions of Pinus massoniana Forests in Suichang County

  • 摘要: 松材线虫病严重威胁亚热带马尾松(Pinus massoniana)林,在此背景下通过科学经营提升其生态功能成为关键的研究课题。本研究以浙江省遂昌县松材线虫感染区马尾松林为对象,于2017年设置松林与松阔混交林两种林型共20个固定监测样地,实施不同强度(松林40%、松阔混交林30%)的间伐改造,以未干预样地为对照。通过8 a长期定位监测,系统评估改造措施对林分结构、生物多样性、碳汇功能及土壤性质的影响。研究结果表明:(1)改造后,松林与松阔混交林乔木总密度分别显著提升至2149株·hm−2和2590株·hm−2,优势树种由马尾松更替为壳斗科(Fagaceae)树种柯(Lithocarpus glaber),群落向针阔混交林方向演替,物种丰富度与均匀度同步提高;(2)改造样地乔木平均胸径、树高、枝下高及冠幅均显著优于对照,林内光照条件得到改善;(3)林下灌草层物种组成明显丰富,新增芒萁(Dicranopteris pedata)、石斑木(Rhaphiolepis indica)、香花鸡血藤(Callerya dielsiana)等多种植物;(4)生态系统碳储量显著增加,松林与松阔混交林改造样地碳储量分别达112.68 t·hm−2与126.95 t·hm−2,增幅分别为26.3%和32.7%;(5)土壤酸化得到缓解,有机碳、全氮及有效磷等养分含量显著提升,土壤生态功能改善。因此,适度间伐改造可有效优化林分结构,促进生物多样性恢复,协同增强碳汇能力与土壤肥力,为亚热带松林近自然经营与生态恢复提供科学依据。

     

    Abstract: Based on the background of pine wilt disease posing a serious threat to subtropical Pinus massoniana forests, enhancing their ecological functions through scientific management has become a key research topic. This study focused on P. massoniana stands infected by pine wood nematode in Suichang County, Zhejiang Province. In 2017, 20 permanent monitoring plots were established in two forest types: pure pine forest and pine-broad-leaved mixed forest. Thinning and transformation were implemented at different intensities (40% for pure pine forest and 30% for pine-broad-leaved mixed forest), with untreated plots as the control. Through 8-year monitoring, the effects of thinning on stand structure, biodiversity, carbon sequestration and soil properties were systematically evaluated. The results showed that: (1) After thinning, the total tree density in two forest types significantly increased to 2 149 and 2 590 trees·hm−2, respectively. The dominant species shifted from P. massoniana to Lithocarpus glaber (Fagaceae), indicating a successional trend toward mixed pine-broad-leaved forest with simultaneous improvements in species richness and evenness; (2) The average diameter at breast height, tree height, height to the first live branch and crown width of trees in the thinned plots were significantly greater than those of the control, reflecting the improved light conditions within the forest; (3) The species composition of the understory shrub and herb layers became notably richer with the addition of species such as Dicranopteris pedata, Rhaphiolepis indica and Callerya dielsiana; (4) The ecosystem carbon storage increased significantly, reaching 112.68 t·hm−2 in the transformed pure pine forest and 126.95 t·hm−2 in the mixed forest, representing increases of 26.3% and 32.7%, respectively; (5) Soil acidification was alleviated, and the contents of nutrients such as organic carbon, total nitrogen and available phosphorus were significantly increased, indicating the improvement of soil ecological functions.Therefore, moderate thinning and transformation can effectively optimize stand structure, promote biodiversity recovery, and synergistically enhance carbon sequestration capacity and soil fertility, which provides a scientific basis for close-to-nature management and ecological restoration of subtropical pine forests.

     

/

返回文章
返回