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Issue 2
Mar.  2021
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ZHANG Mingli, CUI Yichong, DA Liangjun. Distribution and causes of ruderal communities in different urban habitats of Hangzhou[J]. Journal of East China Normal University (Natural Sciences), 2021, (2): 120-131. doi: 10.3969/j.issn.1000-5641.2021.02.012
Citation: ZHANG Mingli, CUI Yichong, DA Liangjun. Distribution and causes of ruderal communities in different urban habitats of Hangzhou[J]. Journal of East China Normal University (Natural Sciences), 2021, (2): 120-131. doi: 10.3969/j.issn.1000-5641.2021.02.012

Distribution and causes of ruderal communities in different urban habitats of Hangzhou

doi: 10.3969/j.issn.1000-5641.2021.02.012
  • Received Date: 2020-04-01
  • Publish Date: 2021-03-30
  • With the ongoing urbanization process in Hangzhou, we investigated the species composition and structure of ruderal communities across eight urban habitat types. Habitat factors such as light intensity, soil pH, soil electrical conductivity, soil compaction, soil total nitrogen, soil total phosphorus, soil organic matter, and interference types were measured; we subsequently analyzed the relationship between species composition and habitat factors of the ruderal communities. The results indicated that forest gap and lawn were the most common habitat types, and these community types covered 20.1% and 16.3%, respectively, of the total 1665 sampling plots surveyed. In all seven habitats except tree pool, moreover, dwarf-growth annual ruderals were the dominant species within the community. There were 30 ruderal species distributed across eight habitats. Environmental factors varied across the different habitats. The light intensity was the lowest in the forest gap, the soil conductivity value was the highest in the shrub-grassland gap, and the light intensity and soil compactness were the highest in soil abandoned land.
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  • [1]
    HOUGHTON R A. The worldwide extent of land-use change [J]. Bioscience, 1994, 44(5): 305-313. doi:  10.2307/1312380
    [2]
    CURRIT N, EASTERLING W E. Globalization and population drivers of rural-urban land-use change in Chihuahua, Mexico [J]. Land Use Policy, 2009, 26(3): 535-544. doi:  10.1016/j.landusepol.2008.08.001
    [3]
    黄隆杨, 刘胜华, 李健. 城市生态用地时空动态及其相关驱动力—以武汉市为例 [J]. 长江流域资源与环境, 2019, 28(5): 1059-1069.
    [4]
    ISIAM K R, WEIL R R. Land use effects on soil quality in a tropical forest ecosystem of Bangladesh [J]. Agriculture Ecosystems and Environment, 2000, 79(1): 9-16. doi:  10.1016/S0167-8809(99)00145-0
    [5]
    隆茜. 上海城乡梯度上重金属污染格局及其磁学响应 [D]. 上海: 华东师范大学, 2013.
    [6]
    COLLINS J P, KINZIG A, GRIMM N B, et al. A new urban ecology: Modeling human communities as integral parts of ecosystems poses special problems for the development and testing of ecological theory [J]. American Scientist, 2000, 88(5): 416-425. doi:  10.1511/2000.5.416
    [7]
    PICKETT S T A, CADENASSO M L, GROVE J M, et al. Urban ecological systems: Linking terrestrial ecological, physical, and socioeconomic components of metropolitan areas1 [J]. Annual Review of Ecology & Systematics, 2001, 32(32): 127-157.
    [8]
    CHUNG U, JAEYEON C, JIN IY. Urbanization effect on the observed change in mean monthly temperatures between 1951-1980 and 1971-2000 in Korea [J]. Climate Change, 2004, 66(1/2): 127-136. doi:  10.1023/B:CLIM.0000043136.58100.ce
    [9]
    MEDLEY K E, MCDONNELL M J, PICKETT S T A. Forest-landscape structure along an urban-to-rural gradient [J]. Professional Geographer, 2010, 47(2): 159-168.
    [10]
    吴远翔, 朱逊, 刘晓光, 等. 基于景观格局分析的城市生态网络修复研究 [J]. 上海城市规划, 2019, 1(1): 40-44. doi:  10.11982/j.supr.20190107
    [11]
    BURTON M L, SAMUELSON L J, MACKENZIE M D. Riparian woody plant traits across an urban-rural land use gradient and implications for watershed function with urbanization [J]. Landscape and Urban Planning, 2009, 90(1): 42-55.
    [12]
    张楠, 董丽, 王靛, 等. 北京城市生态廊道草本植物组成及分布格局 [J]. 中国园林, 2018, 34(6): 94-99. doi:  10.3969/j.issn.1000-6664.2018.06.017
    [13]
    PANITSA M, ILIADOU E, KOKKORIS I, et al. Distribution patterns of ruderal plant diversity in Greece [J]. Biodiversity and Conservation, 2019: 1-23.
    [14]
    范英娜. 异质生境条件下鹅绒委陵菜无性系种群的表型可塑性与空间拓展策略 [D]. 长春: 东北师范大学, 2009.
    [15]
    OHSAWA M, DA L J, OTUKA T. Urban vegetation-Its structure and dynamics// OBARA H. Integrated Studies in Urban Ecosystems as the Basis of Urban Planning [M]. Kagawa: Kagawa Nutrition College, 1988.
    [16]
    ALBERTI M. The effects of urban patterns on ecosystem function [J]. Internation Regional Science Review, 2005, 28(2): 168-192. doi:  10.1177/0160017605275160
    [17]
    CILLIERS S S, BREDENKAMP G J. Vegetation of roadside verges on an urbanization gradient in Potchefstroom, South Africa [J]. Landscape and Urban Planning, 2000, 46(4): 217-239. doi:  10.1016/S0169-2046(99)00057-2
    [18]
    黄晓霞, 江源, 刘全儒, 等. 五台山高山、亚高山草甸植物种分布的环境梯度分析和种组划分 [J]. 草业科学, 2009, 26(11): 12-18. doi:  10.3969/j.issn.1001-0629.2009.11.002
    [19]
    宋永昌, 由文辉, 王祥荣. 城市生态学 [M]. 上海: 华东师范大学出版社, 2000: 99-146.
    [20]
    根本正之. 杂草生态学 [M]. 东京: 朝仓书店, 2006: 14-15.
    [21]
    宋永昌. 植被生态学 [M]. 上海: 华东师范大学出版社, 2001: 22-200.
    [22]
    ELLENBERG H. Zeigerwerte Gefäszpflanzen Mitteleuropas [M]. Göttingen: Verlag Erich Goltze, 1979: 20-83.
    [23]
    张金屯. 数量生态学 [M]. 北京: 科学出版社, 2004: 273-280.
    [24]
    MAGURRAN A E. Ecological Diversity and Its Measurement [M]. New Jersey: Princeton University Press, 1988.
    [25]
    蒋高明. 城市植被: 特点、类型与功能 [J]. 植物学通报, 1993, 10(3): 21-27.
    [26]
    田志慧. 上海城乡陆生生态系统杂草群落多样性格局及其成因论研究 [D]. 上海: 华东师范大学, 2011: 35-68.
    [27]
    陈晓双. 哈尔滨城市杂草群落分布格局及其对生境异质化的响应 [D]. 上海: 华东师范大学, 2014: 39-41.
    [28]
    浙江植物志编辑委员会. 浙江植物志 [M]. 杭州: 浙江科学技术出版社, 1993.
    [29]
    吴征镒, 周浙昆, 孙航, 等. 种子植物分布区类型及其起源和分化 [M]. 昆明: 云南科技出版社, 2006.
    [30]
    吴征镒. 中国植被 [M]. 北京: 科学出版社, 1980: 37-38.
    [31]
    中华人民共和国农业部农药检定所, 日本国(财)日本植物调节剂研究协会. 中国杂草原色图鉴 [M]. 北京: 农业部农药检定所, 2000.
    [32]
    NUMATA M, YOSHIZAWA N. eds. Weed Flora of Japan Illustrated by Color [M]. Tokyo: Zenkoku Noson Kyoiku Kyokai, 1988.
    [33]
    TETSUYA K, OHSAWA M. Patterns of species diversity in rural herbaceous communities under different management regimes, Chiba, central Japan [J]. Biological Conservation, 2002, 104(2): 239-249. doi:  10.1016/S0006-3207(01)00170-7
    [34]
    AYSTIN M P. Spatial prediction of species distribution: An interface between ecological theory and statistical modeling [J]. Ecological Modeling, 2002, 157(2/3): 101-118.
    [35]
    徐洋, 刘文治, 刘贵华. 生态位限制和物种库限制对湖滨湿地植物群落分布格局的影响 [J]. 植物生态学报, 2009, 33(3): 546-554. doi:  10.3773/j.issn.1005-264x.2009.03.013
    [36]
    SAKIO H. Effects of natural disturbance on the regeneration of riparian forests in a Chichibu Mountains central Japan [J]. Plant Ecology, 1997, 132(2): 181-195. doi:  10.1023/A:1009775923208
    [37]
    STOHLGREN T J, BACHAND R R, ONAMI Y, et al. Species-environment relationship and vegetation patterns: Effects of spatial scale and tree life-stage [J]. Plant Ecology, 1998, 135(2): 215-228. doi:  10.1023/A:1009788326991
    [38]
    朱晶晶, 强胜. 南京地区草坪夏季杂草聚类群特点及其防治 [J]. 南京农业大学学报, 2001, 24(4): 14-18.
    [39]
    AIKENS M L, ELLUM D, MCKENNA J J, et al. The effects of disturbance intensity on temporal and spatial patterns of herb colonization in a southern New England mixed-oak forest [J]. Forest Ecology & Management, 2007, 252(1/2/3): 144-158.
    [40]
    江源, 刘硕. 城市土地利用下的植物物种资源特征分析 [J]. 自然资源学报, 1999, 14(4): 359-362. doi:  10.3321/j.issn:1000-3037.1999.04.013
    [41]
    田志慧, 陈克霞, 达良俊, 等. 城市化进程中的上海植被的多样性、空间格局和动态响应(Ⅲ): 高度城市化影响下上海中心城区杂草区系特征 [J]. 华东师范大学学报(自然科学版), 2008(4): 49-57.
    [42]
    蔡北溟. 上海市5种常见一年生草本植物生物量分配及叶性状表型可塑性对异质化生境的响应 [D]. 上海: 华东师范大学, 2012: 38-40.
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