Page 36 - 《广西植物》2025年第8期
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1 4 0 2                                广  西  植  物                                         45 卷
            响叶杨表现为聚集分布模式ꎬ各自形成了不同的                                species exhibit complex patterns of distribution in bottomland
            生境斑块ꎬ因此在大尺度范围内物种之间相互隔                                hardwood forests [ J]. Annals of Forest Scienceꎬ 70(8):
            离或无相关性ꎮ 森林群落中物种间的相互作用和                               813-823.
            动态变化ꎬ有益于群落的演替和稳定群落结构的                              DU DLꎬ LIU YCꎬ LI Rꎬ 1995. Studies on the Interspecific
                                                                 association of dominant species in a subtropical Catanopsis
            形成 (Yao et al.ꎬ2022)ꎮ
                                                                 fargesii forest of Jinyun Mountainꎬ China [ J ]. Acta
                 总之ꎬ对演替早期的云南鸡足山云南松林 1
                                                                 phytoecologica Sinica Journal of Plant Ecologyꎬ 19(2):
            hm 动态监测样地物种组成、优势树种云南松和不
               2
                                                                 149-157. [杜道林ꎬ 刘玉成ꎬ 李睿ꎬ 1995. 缙云山亚热带
            同叶习性木本植物径级结构和空间分布格局的研
                                                                 栲树林优势种群间联结性研究 [J]. 植物生态学报ꎬ
            究ꎬ有助于认识火后演替初期云南松林的形成和                                19(2): 149-157.]
            维持机制ꎮ 随着演替的进行ꎬ云南松可能会被亚                             ERFANIFARD Yꎬ SHEIKHOLESLAMI Nꎬ 2017. Competitive
            热带半湿润常绿阔叶林的优势种所替代ꎬ从而形                                interactions of Persian oak coppice trees ( Quercus brantii
            成区域地带性的顶级群落ꎮ 为促进火干扰后的森                               var. persica) in a pure dry woodland revealed through point
            林自我修复ꎬ建议采取如移栽演替中后期半湿润                                pattern analysis [J]. Folia Geobotanicaꎬ 52: 113-127.
            常绿阔叶林的幼苗、人工促进云南松自疏、抚育幼                             FU ZGꎬ LI LFꎬ 2021. Short term effects of compound and
                                                                 phosphate fertilizer on the growth of juvenile Pinus
            苗等人工辅助措施ꎬ以促进云南松林群落快速向
                                                                 yunnanensis plantation [ J]. Forest Resources Management
            亚热带半湿润常绿阔叶林方向的发展ꎮ
                                                                 (1): 189-196. [付志高ꎬ 李莲芳ꎬ 2021. 复合肥和磷肥混
                 致谢  大理市余金庵国有林场为样地建设提
                                                                 施对云南松幼林生长的短期效应分析 [J]. 林业资源管
            供后勤保障ꎬ马郎、马玖、魏兆喆、陈明苗、孙文娟、
                                                                 理 (1): 189-196.]
            姜凌生、高熙、罗仙舒等参与样地建设ꎬ特此感谢!
                                                               GAO Tꎬ XUE JLꎬ LI ZQꎬ et al.ꎬ 2018. Analysis of structure and
                                                                 spatial pattern of Pinus yunnanensis population in Chayu
            参考文献:                                                County [J]. Journal of Plateau Agricultureꎬ 2 (6): 669 -
                                                                 675. [高郯ꎬ 薛敬丽ꎬ 李照青ꎬ 等ꎬ 2018. 察隅县云南松种群
                                                                 结构与空间格局分析 [J]. 高原农业ꎬ 2(6): 669-675.]
            BEGON Mꎬ MORTOMER Mꎬ THOMPSON DJꎬ 1981.
                                                               GAO XMꎬ WANG Wꎬ DU XJꎬ et al.ꎬ 2001. Size structureꎬ
               Population ecology: a unified study of animal and plants
                                                                 ecological significance and population origin of Quercus
               [M]. Londonꎬ UK: Blackwell Science Ltd.
                                                                 wutaishanica forest in Beijing mountainous area [J]. Chinese
            CONDIT Rꎬ ASHTON PSꎬ BAKER Pꎬ et al.ꎬ 2000. Spatial
                                                                 Journal of Plant Ecologyꎬ 25(6): 673-678. [高贤明ꎬ 王巍ꎬ
               patterns in the distribution of tropical tree species [ J].
                                                                 杜晓军ꎬ 等ꎬ 2001. 北京山区辽东栎林的径级结构、种群起
               Scienceꎬ 288 (5470): 1414-1418.
                                                                 源及生态学意义 [J]. 植物生态学报ꎬ 25(6): 673-678.]
            CONNELL JHꎬ 1971. On the role of natural enemies in
                                                               GAVRIKOV Vꎬ STOYAN Dꎬ 1995. The use of marked point
               preventing competitive exclusion in some marine animals and
                                                                 processes in ecological and environmental forest studies
               in rain forest treesꎬ dynamics of population [ M]. The
                                                                 [J]. Environmental and Ecological Statisticꎬ 2(4): 331-344.
               Netherlands: Center  for  Agricultural  Publishing  and
               Documentationꎬ Wageningen: 298-312.             GUO ZLꎬ MA YDꎬ ZHENG JPꎬ et al.ꎬ 2004. Biodiversity of
            DAI CRꎬ GU BWꎬ LI JHꎬ 2011. The relationship between the  tree speciesꎬ their populations spatial distribution pattern and
                                                                 interspecific association in mixed deciduous broadleaved
               severely affected forest fire season in Yunnan and the
               abnormal change of the Pacific Ocean surface temperature  forest in Changbai Mountain [J]. Chinese Journal of Applied
               [ J ]. Journal of Yunnan University ( Natural Sciences  Ecologyꎬ 15(11): 2013-2018. [郭忠玲ꎬ 马元丹ꎬ 郑金萍ꎬ
               Edition)ꎬ 33(Suppl.1): 188-191. [戴丛蕊ꎬ 顾本文ꎬ 李金     等ꎬ 2004. 长白山落叶阔叶混交林的物种多样性、种群空
               槐ꎬ 2011. 云南林火重灾年与太平洋海温异常变化关系的                     间分布格局及种间关联性研究 [J]. 应用生态学报ꎬ

               研究 [J]. 云南大学学报(自然科学版)ꎬ 33(增刊 1):                  15(11): 2013-2018.]
               188-191.]                                       HAN Jꎬ YING LXꎬ LI GXꎬ et al.ꎬ 2016. Spatial patterns of
            DEYA DCꎬ HARTMAN GWꎬ 2005. Returning fire to ozark   species diversity in the herb layer of early post ̄fire
               highland forestecosystems: effects on advance regeneration  regeneration in mixed Pinus yunnanensis forests [J]. Chinese
               [J]. Forest Ecology and Managementꎬ 217(1): 37-53.  Journal of Plant Ecologyꎬ 40(3): 200-211. [韩杰ꎬ 应凌
            DIMOV LDꎬ CHAMBERS JLꎬ LOCKHART BRꎬ 2013. Tree       霄ꎬ 李贵祥ꎬ 等ꎬ 2016. 云南松混交林火烧迹地更新早期
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