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生态学杂志 ›› 2026, Vol. 45 ›› Issue (4): 1160-1171.doi: 10.13292/j.1000-4890.202604.023

• 研究报告 • 上一篇    下一篇

间伐强度对林下植物多样性和群落稳定性的影响及驱动因素

陈文举1,2,3,刘蓝鑫4,王得祥1,2,3*,张江涛3


  

  1. 1西北农林科技大学林学院, 陕西杨凌 712100; 2黄土高原林木培育国家林业和草原局重点实验室, 陕西杨凌 712100; 3甘肃小陇山森林生态系统国家定位观测研究站, 甘肃天水 741000; 4赣州市林业局, 江西赣州 341000)

  • 出版日期:2026-04-10 发布日期:2026-04-10

Effects of thinning intensity on understory plant diversity and community stability and the driving factors.

CHEN Wenju1,2,3, LIU Lanxin4, WANG Dexiang1,2,3*, ZHANG Jiangtao3   

  1. (1College of Forestry, Northwest A&F University, Yangling 712100, Shaanxi, China; 2Key Laboratory of Forest Cultivation on Loess Plateau, State Forestry Administration, Yangling 712100, Shaanxi, China; 3National Positioning Observation Station of Forest Ecosystem at Xiaolongshan in Gansu, Tianshui 741000, Gansu, China; 4Ganzhou Bureau of Forestry, Ganzhou 341000, Jiangxi, China).

  • Online:2026-04-10 Published:2026-04-10

摘要: 间伐对植物多样性和群落稳定性发挥着重要作用,但间伐对植物群落的长期动态影响尚不明确。探究不同间伐强度下植物多样性和群落稳定性差异及其随时间的变化,为区域森林确定合适的间伐强度提供理论参考。本试验建立于2013年,以秦岭火地塘次生林为研究对象,分别于2013年(未间伐)、2017年(间伐4年后)和2021年(间伐8年后)采样,运用显著性分析、回归分析和偏最小二乘路径模型(PLS-PM),分析不同间伐强度(CK: 0%,T1: 15%,T2: 30%,T3: 45%,T4: 60%)下植物多样性、群落稳定性差异及二者之间的关系和影响因素。结果表明,除Pielou均匀度指数外,各间伐强度下植物(灌木和草本)多样性指数在间伐4年后达到最高,随后下降。间伐4年后,灌木层群落的多样性指数均表现为T4>T1>T2>T3>CK;草本层群落的多样性指数均表现为T1>T4>T2>T3>CK;且T1和T4处理草本层的Patrick丰富度指数、Simpson多样性指数和Shannon多样性指数的增加量分别显著高于CK 88.0%、54.7%、73.8%和100.0%、187.0%、121.2%。间伐后4~8年间,相较于CK(0.03),T1(0.14)、T2(0.28)和T4(0.18)的灌木层群落稳定性有显著提高。间伐后仅T4处理的稳定性持续增长(灌木层:0.26;草本层:0.11)。4种植物多样性指数中仅ΔPielou均匀度指数与群落稳定性呈显著正相关(灌木层:R2=0.64;草本层:R2=0.21)。间伐强度仅在间伐后4年间对群落稳定性有显著负影响,土壤有机碳和全氮含量是间伐后影响群落稳定性的主要土壤因素。在本实验的5个间伐强度中,T4处理(间伐60%)持续提高林下灌草层群落稳定性,是实现该区域森林生态系统稳定和可持续经营的最优间伐强度。


关键词: 间伐强度, 植物多样性, 群落稳定性, 土壤养分, 偏最小二乘路径模型

Abstract: Thinning plays a vital role in maintaining plant diversity and community stability. However, the long-term effects of thinning on plant communities remain unclear. Exploring the differences in plant diversity and community stability as well as their temporal variations under different thinning intensities can provide theoretical references for determining appropriate thinning intensities for forests. We established a thinning experiment in a secondary forest of Huoditang in the Qinling Mountains in 2013, with four thinning intensities (CK: 0%, T1: 15%, T2: 30%, T3: 45%, and T4: 60%). We analyzed the differences in plant diversity and community stability, their relationships, and the influencing factors under different thinning intensities using significance analysis, regression and partial least squares path modeling (PLSPM), based on data from sampling in 2013 (no thinning), 2017 (4 years after thinning), and 2021 (8 years after thinning). The results showed that the diversity indices of plants (shrubs and herbs) under all thinning intensities peaked in 4 years after thinning and then declined, except for the Pielou evenness index. Four years after thinning, the diversity indices of shrub and herb communities followed the order of T4>T1>T2>T3>CK and T1>T4>T2>T3>CK, respectively. The increases of Patrick richness, Simpson and Shannon diversity indices in the herb layer of T1 and T4 were significantly higher by 88.0%, 54.7%, 73.8%, and 100.0%, 187.0%, 121.2% compared with CK, respectively. In the shrub layer, community stabilities in T1 (0.14), T2 (0.28), and T4 (0.18) were significantly higher than that in CK (0.03) between 4 and 8 years after thinning. Notably, only the T4 treatment showed a sustained increase in community stability after thinning (shrub layer: 0.26; herb layer: 0.11). Among the four plant diversity indices, only the ΔPielou evenness index was significantly positively correlated with community stability (shrub layer: R2=0.64; herb layer: R2=0.21). Thinning intensity negatively affected community stability only within four years after thinning. Soil organic carbon and total nitrogen contents were the main soil factors affecting community stability after thinning. The T4 treatment (60% thinning intensity) continuously improved the stability of understory shrub and herb communities, making it the optimal thinning intensity for achieving forest ecosystem stability and sustainable management in the region.

Key words: thinning intensity, plant diversity, community stability, soil nutrient, partial least squares path modeling