[1] SAGAR R, RAGHUBANSHI A S, SINGH J S. Tree species composition, dispersion and diversity along a disturbance gradient in a dry tropical forest region of India[J]. For Ecol Manage, 2003, 186(1/3):61-71.
[2] ZHU Jiaojun, MAO Zhihong, HU Lile, et al. Plant diversity of secondary forests in response to anthropogenic disturbance levels in montane regions of northeastern China[J]. J For Res, 2007, 12(6):403-416.
[3] LAMB D, ERSKINE P D, PARROTTA J A. Restoration of degraded tropical forest landscapes[J]. Science, 2005, 310(5754):1628-1632.
[4] 苏日古嘎, 张金屯, 王永霞.北京松山自然保护区森林群落物种多样性及其神经网络预测[J].生态学报, 2013, 33(11):3394-3403.

Suriguga, ZHANG Jintun, WANG Yongxia. Species diversity of forest communities and its forecasting by neural network in the Songshan National Nature Reserve, Beijing[J]. Acta Ecol Sin, 2013, 33(11):3394-3403.
[5] 鲁庆彬, 游卫云, 赵昌杰, 等.旅游干扰对青山湖风景区植物多样性的影响[J].应用生态学报, 2011, 22(2):295-302.

LU Qingbin, YOU Weiyun, ZHAO Changjie, et al. Effects of tourism disturbance on plant diversity in Qingshan Lake scenic area of Zhejiang Province[J]. J Appl Ecol, 2011, 22(2):295-302.
[6] 陈芙蓉, 程积民, 刘伟, 等.不同干扰对黄土区典型草原物种多样性和生物量的影响[J].生态学报, 2013, 33(9):2856-2866.

CHEN Furong, CHENG Jimin, LIU Wei, et al. Effects of different disturbances on diversity and biomass of communities in the typical steppe of loess region[J]. Acta Ecol Sin, 2013, 33(9):2856-2866.
[7] 王海梅, 李政海, 王珍.气候和放牧对锡林郭勒地区植被覆盖变化的影响[J].应用生态学报, 2013, 24(1):156-160.

WANG Haimei, LI Zhenghai, WANG Zhen. Effects of climate and grazing on the vegetation cover change in Xilinguole League of Inner Mongolia, North China[J]. Chin J Appl Ecol, 2013, 24(1):156-160.
[8] 周伶, 上官铁梁, 郭东罡, 等.晋、陕、宁、蒙柠条锦鸡儿群落物种多样性对放牧干扰和气象因子的响应[J].生态学报, 2012, 32(1):111-122.

ZHOU Ling, SHANGGUAN Tieliang, GUO Donggang, et al. Response of species diversity in Caragana korshinskii communities to climate factors and grazing disturbance in Shanxi, Shaanxi, Ningxia and Inner Mongolia[J]. Acta Ecol Sin, 2012, 32(1):111-122.
[9] SAEKI I. Effects of tree cutting and mowing on plant species composition and diversity of the wetland ecosystems dominated by the endangered maple, Acer pycnanthum[J]. For Ecol Manage, 2007, 242(2/3):733-746.
[10] ANITHA K, JOSEPH S, CHANDRAN R J, et al. Tree species diversity and community composition in a human-dominated tropical forest of Western Ghats biodiversity hotspot, India[J]. Ecol Complex, 2010, 7(2):217-224.
[11] MUTHULINGAM U, THANGAVEL S.Density, diversity and richness of woody plants in urban green spaces:a case study in Chennai Metropolitan City[J]. Urban For Urban Green, 2012, 11(4):450-459.
[12] 吴甘霖, 黄敏毅, 段仁燕, 等.不同强度旅游干扰对黄山松群落物种多样性的影响[J].生态学报, 2006, 26(12):3924-3930.

WU Ganlin, HUANG Minyi, DUAN Renyan, et al. Disturbing effects of tourism on species diversity in Pinus taiwanensis communities[J]. Acta Ecol Sin, 2006, 26(12):3924-3930.
[13] 邱扬, 李湛东, 张玉钧, 等.火干扰对大兴安岭北部原始林下层植物多样性的影响[J].生态学报, 2006, 26(9):2863-2869.

QIU Yang, LI Zhandong, ZHANG Yujun, et al. The effects of fire disturbance on the biodiversity of understory plant in virginal forest, northern region of Daxinganling Mountains, China[J]. Acta Ecol Sin, 2006, 26(9):2863-2869.
[14] FULBRIGHT T E. Disturbance effects on species richness of herbaceous plants in a semi-arid habitat[J]. J Arid Environ, 2004, 58(1):119-133.
[15] PHILLIPS O L, HALL P, GENTRY A H, et al. Dynamics and species richness of tropical rain forests[J]. Proc Natl Acad Sci USA, 1994, 91(7):2805-2809.
[16] SCHWILK D W, KEELEY J E, BOND W J. The intermediate disturbance hypothesis does not explain fire and diversity pattern in fynbos[J]. Plant Ecol, 1997, 132(1):77-84.
[17] WILSON S D, TILMAN D. Interactive effects of fertilization and disturbance on community structure and resource availability in an old-field plant community[J]. Oecologia, 1991, 88(1):61-71.
[18] PILLIOS O, HALL P, SAWYER S, et al. Species richness, tropical forest dynamics and sampling:response to Sheil[J]. Oikos, 1997, 79(1):183-187.
[19] 王建国.建德山区的常绿阔叶林生态效益分析[J].植物生态学与地植物学丛刊, 1985, 9(2):112-118.

WANG Jianguo. Analysis of the ecological benefits of the evergreen broad-leaved forests in the mountain area of Jiande County[J]. Acta Phytoecol Geobot Sin, 1985, 9(2):112-118.
[20] 刘伦辉, 刘文耀, 郑征.滇中山地主要植物群落水土保持效益比较[J].水土保持学报, 1990, 4(1):36-43.

LIU Lunhui, LIU Wenyao, ZHENG Zheng. Comparison of the effects on the soil and water conservation of main communities in Tonghai County of Yunnan[J]. Acta Conserv Soil Aquae Sin, 1990, 4(1):36-43.
[21] 陈平腾.福建南平市延平区常绿阔叶次生林林分结构和物种多样性研究[D].福州: 福建农林大学, 2009.

CHEN Pingteng. Studies on Stand Structure and Species Diversity of Evergreen Broad-leaved Forest in Yanping District, Nanping, Fujian[D]. Fuzhou: Fujian Agriculture and Forestry University, 2009.
[22] 杨青, 丁晖, 方炎明, 等.武夷山大安源甜槠常绿阔叶林群落物种组成及多样性分析[J].植物资源与环境学报, 2014, 23(1):44-50.

YANG Qing, DING Hui, FANG Yanming, et al. Analyses on species composition and diversity of evergreen broad-leaved forest community of Castanopsis eyrei at Da'anyuan in Wuyi Mountain[J]. J Plant Resour Environ, 2014, 23(1):44-50.
[23] 贺金生, 陈伟烈, 谢宗强, 等.福建龙栖山自然保护区的常绿阔叶林类型及其群落物种多样性分析[J].生态学杂志, 1998, 17(3):1-6.

HE Jinsheng, CHEN Weilie, XIE Zongqiang, et al. Types of the evergreen broadleaf forest and their community species diversity in Longqishan Nature Reserve, Fujian Province[J]. Chin J Ecol, 1998, 17(3):1-6.
[24] 丁晖, 杨云方, 徐海根, 等.武夷山典型常绿阔叶林物种组成与群落结构[J].生态学报, 2015, 35(4):1142-1154.

DING Hui, YANG Yunfang, XU Haigen, et al. Species composition and community structure of the typical evergreen broad-leaved forest in the Wuyi Mountains of Southeastern China[J]. Acta Ecol Sin, 2015, 35(4):1142-1154.
[25] 包维楷, 刘照光, 刘朝禄, 等.亚热带次生常绿阔叶林主要乔木种群自然恢复15年来的变化[J].林业科学, 2001, 37(1):7-14.

BAO Weikai, LIU Zhaoguang, LIU Zhaolu, et al. Fifteen-year change of tree populations in the secondary subtropical evergreen broad-leaved forests in southwestern China[J]. Sci Silv Sin, 2001, 37(1):7-14.
[26] 杜燕, 郑小贤, 罗梅.将乐县常绿阔叶次生林主导功能类型的研究[J].中南林业科技大学学报, 2013, 33(2):39-43.

DU Yan, ZHENG Xiaoxian, LUO Mei. Study on leading function types of evergreen broad-leaved forest in Jiangle County, Fujian Province[J]. J Cent South Univ For Technol, 2013, 33(2):39-43.
[27] 任引.武夷山主要类型常绿阔叶次生林结构与功能特征的研究[D].南京: 南京林业大学, 2008.

REN Yin. Study on Structure and Function Characteristics of Evergreen Broad-leaved Forest in Wuyi Mountain[D]. Nanjing: Nanjing Forestry University, 2008.
[28] 宋育红, 张新文, 周斌.格氏栲自然保护区常绿阔叶林群落特征[J].生态科学, 2005, 24(3):228-232.

SONG Yuhong, ZHANG Xinwen, ZHOU Bin. Features of evergreen broad leaved forest community in Castanopsis kawakamii Nature Reserve[J]. Ecol Sci, 2005, 24(3):228-232.
[29] 黄建雄, 郑凤英, 米湘成.不同尺度上环境因子对常绿阔叶林群落的谱系结构的影响[J].植物生态学报, 2010, 34(3):309-315.

HUANG Jianxiong, ZHENG Fengying, MI Xiangcheng. Influence of environmental factors on phylogenetic structure at multiple spatial scales in an evergreen borad-leaved forest of China[J]. Chin J Plant Ecol, 2010, 34(3):309-315.
[30] 罗梅, 郑小贤.福建将乐林场常绿阔叶次生林主要种群种间联结性研究[J].西北农林科技大学学报(自然科学报), 2016, 44(8):135-142.

LUO Mei, ZHENG Xiaoxian. Iner-specific correlation of main populations in evergreen broad-leaved secondary forest in Jiangle forest farm[J]. J Northwest A&F Univ Nat Sci Ed, 2016, 44(8):135-142.
[31] 李杰, 高祥, 徐光, 等.福建将乐林场常绿阔叶林幼苗结构分析与更新评价[J].西北农林科技大学学报(自然科学版), 2014, 42(5):62-68.

LI Jie, GAO Xiang, XU Guang, et al. Structure analysis and evaluation of seedlings in evergreen broad-leaved forest in Jiangle Forest Farm, Fujian[J]. J Northwest A&F Univ Nat Sci Ed, 2014, 42(5):62-68.
[32] 杜燕.将乐林场常绿阔叶次生林健康评价研究[D].北京: 北京林业大学, 2013.

DU Yan. Health Assessment of Evergreen Broad-leaved Forest in Jiangle Forest Farm[D]. Beijing: Beijing Forestry University, 2013.
[33] 王琦, 杜燕, 郑小贤.将乐林场常绿阔叶林健康评价指标体系构建[J].西南林业大学学报, 2014, 34(5):74-78.

WANG Qi, DU Yan, ZHENG Xiaoxian. Construct the health evaluation of index system for evergreen broadleaf forest in Jiangle Forest Farm[J]. J Southwest For Univ, 2014, 34(5):74-78.
[34] 周洋.福建三明将乐林场低质低效常绿阔叶次生林经营技术[D].北京: 北京林业大学, 2015.

ZHOU Yang. Study on Low-quality and Low-benefit of Broad-leaved Evergreen Forests Management Techniques in Jiangle, Fujian[D]. Beijing: Beijing Forestry University, 2015.
[35] 陈昌雄.天然常绿阔叶次生林生长潜力及择伐经营研究[D].南京: 南京林业大学, 2005.

CHEN Changxiong. Study on Growth Potential and Selection Cutting of Natural Evergreen Broad-leaved Forests[D]. Nanjing: Nanjing Forestry University, 2015.
[36] WU Lichao, LIU Jie, ATSUSHI T, et al. Effect of selective logging on stand structure and tree species diversity in a subtropical evergreen broad-leaved forest[J]. Ann For Sci, 2013, 70:535-543.
[37] CHRONOPOULOS G, CHRISTODOULAKIS D. Analysis of the adventive flora of a Greek city-the example of Patras[J]. Bot Helv, 2000, 110(2):171-189.
[38] 汤孟平, 唐守正, 雷相东.两种混交度的比较分析[J].林业资源管理, 2004, 4(8):25-27.

TANG Mengping, TANG Shouzheng, LEI Xiangdong. Comparison analysis on two minglings[J]. For Resour Manage, 2004, 4(8):25-27.
[39] 罗梅, 郑小贤.八达岭辽东栎-油松混交林空间结构及其多样性[J].中南林业科技大学学报, 2012, 32(9):55-58.

LUO Mei, ZHENG Xiaoxian. Study of spatial structure and species diversity of Quercus liaotungensis-Piuns tabulaeformis mixed stand in Badaling forest farm[J]. J Cent South Univ For Technol, 2012, 32(9):55-58.
[40] BAKER W L. The landscape ecology of large disturbances in the design and management of nature reserves[J]. Landscape Ecol, 1992, 7(3):181-194.
[41] MAROZAS V, RACINSKAS J, BARTKECICIUS E. Dynamics of ground vegetation after surface fires in hemiboreal Pinus sylvestris forests[J]. For Ecol Manage, 2007, 250(1):47-55.
[42] COLLINS S L, GLENN S M, GIBSON D J. Experimental analysis of intermediate disturbance and initial floristic composition:decoupling cause and effect[J]. Ecology, 1995, 76(2):486-492.