[1] 王成, 彭镇华, 陶康华.中国城市森林的特点及发展思考[J].生态学杂志, 2004, 23(3):88-92.

WANG Cheng, PENG Zhenhua, TAO Kanghua. Characteristics and development of urban forest in China[J]. Chin J Ecol, 2004, 23(3):88-92.
[2] 赵煜, 赵千钧, 崔胜辉, 等.城市森林生态服务价值评估研究进展[J].生态学报, 2009, 29(12):6723-6732.

ZHAO Yu, ZHAO Qianjun, CUI Shenghui, et al. Progress in ecological services evaluation of urban forest[J]. Acta Ecol Sin, 2009, 29(12):6723-6732.
[3] 马冰倩, 徐程扬, 刘江, 等.城镇森林视觉景观异质性对美学质量的影响[J].浙江农林大学学报, 2019, 36(2):366-374.

MA Bingqian, XU Chengyang, LIU Jiang, et al. Visual heterogeneity and visual landscape quality of urban forests as an architectural backdrop[J]. J Zhejiang A&F Univ, 2019, 36(2):366-374.
[4] 陈文静.厦门城市森林的结构特征与效益评价研究[D].福州: 福建农林大学, 2007.

CHEN Wenjing. The Study of Structure Characteristics and Effectiveness Evaluation of Urban Forest in Xiamen City[D]. Fuzhou: Fujian Agriculture and Forestry University, 2007.
[5] DÍAZ S, CABIDO M. Vive la difference:plant functional diversity matters to ecosystem processes[J]. Trends Ecol Evol, 2001, 16(11):646-655.
[6] CADOTTE M W. Experimental evidence that evolutionarily diverse assemblages result in higher productivity[J]. Proc Natl Acad Sci, 2013, 110(22):8996-9000.
[7] LAVOREL S, GARNIER E. Predicting changes in community composition and ecosystem functioning from plant traits:revisiting the Holy Grail[J]. Funct Ecol, 2002, 16(5):545-556.
[8] FOREST F, GRENYER R, ROUGET M, et al. Preserving the evolutionary potential of floras in biodiversity hotspots[J]. Nature, 2007, 445(7129):757-760.
[9] CUMMING G S, CHILD M F. Contrasting spatial patterns of taxonomic and functional richness offer insights into potential loss of ecosystem services[J]. Philos Trans Royal Soc London B Biol Sci, 2009, 364(1524):1683-1692.
[10] 海口市统计局, 国家统计局海口调查队.海口市统计年鉴2018[M].北京:中国统计出版社, 2018.
[11] NOWAK D J, WALTON J T, STEVEN J C, et al. Effect of plot and sample size on timing and precision of urban forest assessments[J]. Arboric Urban For, 2008, 34(6):386-390.
[12] 杨小波.海南植物名录[M].北京:科学出版社, 2013.
[13] 雷金睿, 宋希强, 陈宗铸.海口城市公园植物群落多样性研究[J].西南林业大学学报, 2017, 37(1):88-93.

LEI Jinrui, SONG Xiqiang, CHEN Zongzhu. Analysis on plant community diversity in Haikou City parks[J]. J Southwest For Univ, 2017, 37(1):88-93.
[14] 张艳丽, 李智勇, 杨军, 等.杭州城市绿地群落结构及植物多样性[J].东北林业大学学报, 2013, 41(11):25-30.

ZHANG Yanli, LI Zhiyong, YANG Jun, et al. Community structure and species diversity of urban green space in Hangzhou, China[J]. J Northeast For Univ, 2013, 41(11):25-30.
[15] WILLIAMS N S G, HAHS A K, VESK P A. Urbanisation, plant traits and the composition of urban floras[J]. Perspect Plant Ecol Evol Syst, 2015, 17(1):78-86.
[16] KNAPP S, KCOHN I, BAKKER J P. How species traits and affinity to urban land use control large-scale species frequency[J]. Diversity Distrib, 2009, 15(3):533-546.
[17] WEBB C O, DONOGHUE M J. Phylomatic:tree assembly for applied phylogenetics[J]. Mol Ecol Note, 2005, 5(1):181-183.
[18] FAITH D P. Conservation evaluation and phylogenetic diversity[J]. Biol Conserv, 1992, 61(1):1-10.
[19] HELMUS M R, BLAND T J, WILLIAMS C K, et al. Phylogenetic measures of biodiversity[J]. Am Nat, 2007, 169(3):E68-E83. doi:10. 1086/511334.
[20] 杨小波.城市植物多样性[M].北京:中国农业出版社, 2009.
[21] PYŠEK P. Factors affecting the diversity of flora and vegetation in central European settlements[J]. Vegetatio, 1993, 106(1):89-100.
[22] HE Rongxiao, YANG Jun, SONG Xiqiang. Quantifying the impact of different ways to delimit study areas on the assessment of species diversity of an urban forest[J]. Forests, 2016, 7(2):42. doi:10.3390/f7020042.
[23] MCKINNEY M L. Measuring floristic homogenization by non-native plants in North America[J]. Global Ecol Biogeogr, 2004, 13(1):47-53.
[24] KÜHN I, BRANDL R, KLOTZ S. The flora of German cities is naturally species rich[J]. Evol Ecol Res, 2004, 6(5):749-764.
[25] MCKINNEY M L. Urbanization as a major cause of biotic homogenization[J]. Biol Conserv, 2006, 127(3):247-260.
[26] DEARBORN D C, KARK S. Motivations for conserving urban biodiversity[J]. Conserv Biol, 2010, 24(2):432-440.
[27] ZDEŇKA L, CHYTRY M, LUBOMÍR Tichy, et al. Biotic homogenization of central European urban floras depends on residence time of alien species and habitat types[J]. Biol Conserv, 2012, 145(1):179-184.
[28] 吴刘萍.湛江市城市森林树种结构分析[J].亚热带植物科学, 2007, 36(2):31-35.

WU Liuping. The analysis of species composition of urban forest in Zhanjiang City[J]. Subtrop Plant Sci, 2007, 36(2):31-35.
[29] 宋艳暾, 史志华, 余世孝, 等.城市化对绿地植物组成特征的影响:以深圳为例[J].生态环境学报, 2010, 19(3):615-620.

SONG Yantun, SHI Zhihua, YU Shixiao, et al. Influence of urbanization on the characters of plants composition in urban greenspace in Shenzhen, China[J]. Ecol Environ Sci, 2010, 19(3):615-620.
[30] KENDAL D, WILLIAMS K J H, WILLIAMS N S G. Plant traits link people's plant preferences to the composition of their gardens[J]. Landscape Urban Plann, 2012, 105(1):34-42.
[31] 彭羽, 刘雪华.城市化对植物多样性影响的研究进展[J].生物多样性, 2007, 15(5):558-562.

PENG Yu, LIU Xuehua. Research progress in effects of urbanization on plant biodiversity[J]. Biodiversity Sci, 2007, 15(5):558-562.
[32] 陈晓双, 梁红, 宋坤, 等.哈尔滨城区杂草群落多样性及其分类体系[J].应用生态学报, 2014, 25(8):2221-2228.

CHEN Xiaoshuang, LIANG Hong, SONG Kun, et al. Diversity and classification system of weed community in Harbin City, China[J]. Chin J Appl Ecol, 2014, 25(8):2221-2228.
[33] 罗冠勇, 宋希强, 杨冬华, 等.海南10种园林乔木生物学特性与抗风性关联性分析[J].热带作物学报, 2013, 34(2):263-267.

LUO Guanyong, SONG Xiqiang, YANG Donghua, et al. Correlation analysis on the relationship between the biological characteristic of ten ornamental tree species and the wind-resistance ability in Hainan Island[J]. Chin J Trop Crops, 2013, 34(2):263-267.
[34] NOCK C A, PAQUETTE A, FOLLETT M, et al. Effects of urbanization on tree species functional diversity in Eastern North America[J]. Ecosystems, 2013, 16(8):1487-1497.
[35] ŇEPLOVÁN, LOSOSOVÁZ, ZELENŇ D, et al. Phylogenetic diversity of central-European urban plant communities:effects of alien species and habitat types[J]. Preslia, 2015, 87(1):1-16.
[36] 么旭阳, 胡耀升, 刘艳红.长白山阔叶红松林不同群落类型的植物功能性状与功能多样性[J].西北农林科技大学学报(自然科学版), 2014, 42(3):77-84.

YAO Xuyang, HU Yaosheng, LIU Yanhong. Plant functional traits and functional diversities of different communities in broad-leaved Korean pine forests in the Changbai Mountain[J]. J Northwest A&F Univ Nat Sci Ed, 2014, 42(3):77-84.
[37] 薛倩妮, 闫明, 毕润成.山西五鹿山森林群落木本植物功能多样性[J].生态学报, 2015, 35(21):7023-7032.

XUE Qianni, YAN Ming, BI Runcheng. Functional diversity research of tree and shrub layers in forest communities of the Wulu Mountains Nature Reserve in Shanxi, China[J]. Acta Ecol Sin, 2015, 35(21):7023-7032.
[38] 丁洪波, 吴兆录, 吕东蓬, 等.云南东部山区不同类型次生林群落谱系结构特征[J].生态学杂志, 2015, 34(10):2720-2726.

DING Hongbo, WU Zhaolu, LÜ Dongpeng, et al. Community phylogenetic structural characteristics of various secondary forests in mountainous eastern Yunnan[J]. Chin J Ecol, 2015, 34(10):2720-2726.
[39] WEBB C O, ACKERLY D D, MCPEEK M A, et al. Phylogenies and community ecology[J]. Annual Rev Ecol Syst, 2002, 8(33):475-505.
[40] SILVERTOWN J, DODD M E, GOWING D J G. Phylogeny and the niche structure of meadow plant communities[J]. J Ecol, 2001, 89(3):428-435.
[41] 贾鹏, 杜国祯.生态学的多样性指数:功能与系统发育[J].生命科学, 2014, 26(2):153-157.

JIA Peng, DU Guozhen. Measuring functional and phylogenetic diversity in community ecology[J]. Chin Bull Life Sci, 2014, 26(2):153-157.