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极端干旱条件下亚热带杉木人工混交林林木受损特征及影响因素

王旭 郭昊 宝音满达 周光益 陈跃华 李党仁

林业科学2025,Vol.61Issue(5):12-22,11.
林业科学2025,Vol.61Issue(5):12-22,11.DOI:10.11707/j.1001-7488.LYKX20240252

极端干旱条件下亚热带杉木人工混交林林木受损特征及影响因素

Damaged Characteristics and Influencing Factors of Cunninghamia lanceolata Mixed Plantations in Subtropics under Extreme Drought Conditions

王旭 1郭昊 2宝音满达 1周光益 1陈跃华 3李党仁3

作者信息

  • 1. 中国林业科学研究院热带林业研究所 广州 510520||南岭北江源国家森林生态系统观测站 广州 510520
  • 2. 中国林业科学研究院热带林业研究所 广州 510520||南岭北江源国家森林生态系统观测站 广州 510520||海南大学 海口 570100
  • 3. 湖南省临武县西山国有林场 临武 424300
  • 折叠

摘要

Abstract

[Objective]Global climate change has altered precipitation patterns,and tree mortality caused by drought is a magnitude threat to global forest ecosystems.The impact of severe seasonal drought on Cunninghamia lanceolata plantations in southern China has become a hot topic in ecological research.However,the investigation into the damage characteristics and influencing factors of extreme drought on subtropical Chinese fir mixed forests remains limited.This article aims to explore which types of forest stands are more susceptible to the impact of drought,the key influencing factors of tree damage or death caused by drought,in order to provide theoretical support for subtropical forest management in the context of global change.[Method]An extreme drought event occurred in southern China in 2022,with the opportunity,this study targeted at mixed plantations of C.lanceolata and Phoebe bournei with similar age.Three plant plots were set up in each of two types of slopes of steep slope and gentle slope,and two types of mixed patterns of mixed plantations with two tree species and mixed plantations with three or more than three tree species.The species composition,diameter at breast height(DBH),tree height,damage rate of individual trees and soil physical properties in the plots were investigated,the characteristics of the extreme drought climate occurred in southern China in 2022,the stand damage rate at various slopes,the composition of damaged trees,and the influencing factors were analyzed.[Result]Slope had a greater effect on soil aggregates,while the mixed type of plantations had no effect on soil aggregates.The mixed type had a significant effect on surface(0-20 cm)soil porosity,soil bulk density,maximum water holding capacity,capillary water holding capacity and minimum water holding capacity,and the effect decreased with the increase of soil depth.Different slopes had no significant effect on above these indexes.The drought resulted in varying degrees of damage to trees,with an average damage rate of 29.18%.Among them,mild damage accounted for 15.46%,moderate damage for 2.42%,and severe damage for 11.3%.The severely damaged trees mainly consisted of dominant species in the canopy and understory regeneration layers,with broadleaf trees being more severely impacted than coniferous trees,and planted species more affected than natural regenerating species.Slope gradient and position had the greatest impact on tree damage rates,along with factors such as stand density,soil bulk density,soil aggregate stability index(SASI),elevation,total porosity of the 20 cm soil layer,maximum water holding capacity of soil,and capillary water holding capacity.[Conclusion]The extreme drought occurred in southern China in 2022 has demonstrated the characteristics of altered precipitation patterns under global climate change.The mixed plantations with multiple advantageous species are beneficial for improving the drought resistance of forests.Steep slopes and uphill areas are more susceptible to drought,and the impact of drought on forests is the result of multiple factors interacting.In future management of subtropical forests,priority should be given to constructing mixed forests with multiple tree species,determining reasonable stand density,and strengthening surface soil management.

关键词

降水格局/林分结构/土壤物理性质/林木受损/混交林

Key words

precipitation pattern/stand structure/soil physical properties/damage to trees/mixed forest

分类

生物科学

引用本文复制引用

王旭,郭昊,宝音满达,周光益,陈跃华,李党仁..极端干旱条件下亚热带杉木人工混交林林木受损特征及影响因素[J].林业科学,2025,61(5):12-22,11.

基金项目

南岭北江源森林生态系统国家定位观测研究站建设项目(林规批字[2023]10号). (林规批字[2023]10号)

林业科学

OA北大核心

1001-7488

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