广东翁源青云山自然保护区森林群落优势树种的生态位特征
作者:
基金项目:

广东翁源青云山省级自然保护区生物多样性与生态系统综合检测系统建设项目(QYSBHQ-2020-016)资助


Niche Characteristics of Dominant Species of Forest Community in Qingyunshan Natural Reserve, Wengyuan, Guangdong Province
Author:
  • 摘要
  • | |
  • 访问统计
  • |
  • 参考文献 [36]
  • |
  • 相似文献
  • |
  • 引证文献
  • | |
  • 文章评论
    摘要:

    为探讨广东翁源青云山自然保护区植被的生境适应性和竞争机制,对青云山自然保护区森林群落优势树种的生态位特征进行了分析。结果表明,群落优势种的重要值之和为49.01,其中杉木(Cunninghamia lanceolata)的重要值最大,毛竹(Phyllostachys edulis)的变异系数最大。优势种的Levins和Shannon生态位宽度较为一致,罗浮柿(Diospyros morrisiana)、栲(Castanopsis fargesii)、木荷(Schima superba)、鼠刺(Itea chinensis)和罗浮锥(C.faberi)的生态位宽度较大,而毛竹、杉木、黧蒴锥(C.fissa)和华润楠(Machilus chinensis)的生态位宽度相对较窄。所有物种对间的生态位重叠度和生态位相似性较小,表明共存物种的种间竞争不激烈,因而群落处于相对稳定的状态。生态位宽度与重要值的关系不显著,而与重要值变异系数呈显著的负相关关系,表明重要值变异系数是影响生态位宽度的重要因素。这为青云山自然保护区森林资源的保护和管理提供重要的科学依据。

    Abstract:

    To explore the habitat flexibility and competition mechanism of vegetation in Qingyunshan Nature Reserve, Wengyuan, Guangdong Province, the niche characteristics of dominant species of forest communities were analyzed. The results showed that the total importance value of 12 dominant species was 49.01, and the importance value of Cunninghamia lanceolate and variance coefficient of Phyllostachys edulis were the biggest. The variation trends of Levins and Shannon niche breadth were similar, the niche breadth of Diospyros morrisiana, Castanopsis fargesii, Schima superba, Itea chinensis and C. faberi was high, however, that of Phyllostachys edulis, Cunninghamia lanceolata, Castanopsis fissa and Machilus chinensis was low. The low niche overlap and niche similarity of all species pairs indicated that interspecific competition among coexisting species was not intense, thus the communities in Qingyunshan Nature Reserve was in a relatively stable state. The relationship between niche breadth and the importance value was insignificant, however, there was a significant negative relationship between niche width and variance coefficient of importance value, indicating that the variance coefficient of importance value might be an important influence factor on niche width. The study provides an important scientific basis for the conservation and management of forest resource in Qingyunshan Nature Reserve.

    参考文献
    [1] GAO H J, YUAN J, GAO P S. Niche and interspecific association of dominant species in secondary forest of Zhoushan Islands[J]. J Trop Subtrop Bot, 2017, 25(1):73-80. doi:10.11926/jtsb.3620. 高浩杰, 袁佳, 高平仕. 舟山群岛次生林优势种群的生态位与种间联结[J]. 热带亚热带植物学报, 2017, 25(1):73-80. doi:10.11926/jtsb.3620.
    [2] WU Q N, DONG J W, ZHENG Y, et al. Niches of the main plant species in Baili Rhododendron National Forest Park[J]. J Nanjing For Univ (Nat Sci), 2017, 41(2):175-180. doi:10.3969/j.issn.1000-2006.2017.02.026. 吴倩楠, 董建文, 郑宇, 等. 百里杜鹃国家森林公园优势种生态位研究[J]. 南京林业大学学报(自然科学版), 2017, 41(2):175-180. doi:10.3969/j.issn.1000-2006.2017.02.026.
    [3] ZHENG X Y, ZHAO C, LIU Q Q, et al. Niche characteristics of understory herb layer in a mature Chinese fir plantation[J]. Chin J Ecol, 2018, 37(2):332-338. doi:10.13292/j.1000-4890.201802.031. 郑晓阳, 赵冲, 刘青青, 等. 成熟杉木人工林林下草本层生态位特征[J]. 生态学杂志, 2018, 37(2):332-338. doi:10.13292/j.1000-4890.201802.031.
    [4] WANG T L, WANG G Y, INNES J, et al. Climatic niche models and their consensus projections for future climates for four major forest tree species in the Asia-Pacific region[J]. For Ecol Manag, 2016, 360:357-366. doi:10.1016/j.foreco.2015.08.004.
    [5] CARVALHO M C, GOMIDE L R, SANTOS R M D, et al. Modeling ecological niche of tree species in Brazilian tropical area[J]. Cerne, 2017, 23(2):229-240. doi:10.1590/01047760201723022308.
    [6] MEINERI E, DEVILLE A S, GRÉMILLET D, et al. Combining correlative and mechanistic habitat suitability models to improve ecological compensation[J]. Biol Rev, 2015, 90(1):314-329. doi:10.1111/brv.12111.
    [7] WANG H C, ZHU H, LI Y F, et al. Potential distribution and ecological characteristic of chinese endemic species Cerasus xueluoensis[J]. J Trop Subtrop Bot, 2020, 28(2):136-144. doi:10.11926/jtsb.4102. 王华辰, 朱弘, 李涌福, 等. 中国特有植物雪落樱桃潜在分布及其生态特征[J]. 热带亚热带植物学报, 2020, 28(2):136-144. doi:10.11926/jtsb.4102.
    [8] ZHU D H, LIU J F, HONG W, et al. Studies on regeneration niche of main species in Pinus taiwanensis community in Daiyun Mountain[J]. J Trop Subtrop Bot, 2012, 20(6):561-565. doi:10.3969/j.issn.1005-3395.2012.06.004. 朱德煌, 刘金福, 洪伟, 等. 戴云山黄山松群落主要树种更新生态位研究[J]. 热带亚热带植物学报, 2012, 20(6):561-565. doi:10.3969/j.issn.1005-3395.2012.06.004.
    [9] CHEN R G, FAN S H, LIU G L, et al. Niche characteristics of dominant species of rattan accompanying community in secondary lowland rain forest in Hainan Island, China[J]. Acta Bot Boreali-Occid Sin, 2017, 37(6):1226-1233. doi:10.7606/j.issn.1000-4025.2017.06.1226. 陈瑞国, 范少辉, 刘广路, 等. 海南岛次生低地雨林棕榈藤伴生群落优势种生态位研究[J]. 西北植物学报, 2017, 37(6):1226-1233. doi:10.7606/j.issn.1000-4025.2017.06.1226.
    [10] BAI X H, ZHANG J T. Niche analysis of dominant species of forest community in Xiaowutai Mountain, China[J]. Chin J Appl Ecol, 2017, 28(12):3815-3826. doi:10.13287/j.1001-9332.201712.002. 白晓航, 张金屯. 小五台山森林群落优势种的生态位分析[J]. 应用生态学报, 2017, 28(12):3815-3826. doi:10.13287/j.1001-9332.201712.002.
    [11] XU N, LIN K M, WU P P, et al. Niche of main species in the tree layer of old-growth Chinese fir forest[J]. J For Environ, 2017, 37(3):330-335. doi:10.13324/j.cnki.jfcf.2017.03.014. 许诺, 林开敏, 吴培培, 等. 杉木老龄林乔木层主要树种生态位研究[J]. 森林与环境学报, 2017, 37(3):330-335. doi:10.13324/j.cnki. jfcf.2017.03.014.
    [12] WU Z L, CHEN J T, ZHOU X N, et al. Effects of selective cutting intensities on niche of six dominant species populations on arbor layer in natural secondary forest[J]. J Trop Subtrop Bot, 2013, 21(2):161-167. doi:10.3969/j.issn.1005-3395.2013.02.010. 巫志龙, 陈金太, 周新年, 等. 择伐强度对天然次生林乔木层6种优势种群生态位的影响[J]. 热带亚热带植物学报, 2013, 21(2):161-167. doi:10.3969/j.issn.1005-3395.2013.02.010.
    [13] LIU Y Y, GU B, WANG L. Species diversity of plant community and the niche of dominant species in Beichuan after earthquake engineering[J]. Chin J Ecol, 2019, 38(2):309-320. doi:10.13292/j.1000-4890.201902.027. 刘尧尧, 辜彬, 王丽. 北川震后植被恢复工程植物群落物种多样性及优势种生态位[J]. 生态学杂志, 2019, 38(2):309-320. doi:10.13292/j.1000-4890.201902.027.
    [14] DING S, OUYANG J, LÜ D, et al. Niche characteristics of dominant species populations in Castanopsis fargesii forest in Jinggang Mountain National Nature Reserve[J]. J CS Univ For Technol, 2014, 34(7):99-103. doi:0.14067/j.cnki.1673-923x.2014.07.019. 丁松, 欧阳杰, 吕丹, 等. 井冈山国家自然保护区栲树林优势种群生态位特征[J]. 中南林业科技大学学报, 2014, 34(7):99-103. doi:0.14067/j.cnki.1673-923x.2014.07.019.
    [15] FU W G, WANG F K, YIN Q L, et al. Niche dynamics of species in succession process in the Wetland of Yangtze Rivers Lower Reach, China[J]. Plant Ecol Evol, 2015, 148(1):43-51. doi:10.5091/plecevo. 2015.956.
    [16] MARTORELL C, ALMANZA-CELIS C A I, PÉREZ-GARCÍA E A, et al. Co-existence in a species-rich grassland:Competition, facilitation and niche structure over a soil depth gradient[J]. J Veg Sci, 2015, 26(4):674-685. doi:10.1111/jvs.12283.
    [17] ROCES-DÍAZ J V, JIMÉNEZ-ALFARO B, ÁLVAREZ-ÁLVAREZ P, et al. Environmental niche and distribution of six deciduous tree species in the Spanish Atlantic Region[J]. iFor-Biogeo For, 2015, 8(2):214-221. doi:10.3832/ifor1183-008.
    [18] HUANG H R, DONG Q Y, YANG Y H, et al. Study on physical and chemical properties of different stands in Qingyun Forest Park of Wengyuan County[J]. Subtrop Plant Sci, 2015, 44(2):135-139. doi:10.3969/j.issn.1009-7791.2015.02.010. 黄华蓉, 董奇妤, 杨亚慧, 等. 广东翁源青云森林公园6种林分土壤理化特性分析[J]. 亚热带植物科学, 2015, 44(2):135-139. doi:10.3969/j.issn.1009-7791.2015.02.010.
    [19] LEI Y H, PAN J, LI Y S. Reform measures of low yield timber forest in Wengyuan County[J]. Guangdong For Sci Technol, 1993(2):36-39,35. 雷永汉, 潘坚, 黎运枢. 浅谈翁源县低产用材林的改造措施[J]. 广东林业科技, 1993(2):36-39,35.
    [20] CONDIT R. Research in large, long-term tropical forest plots[J]. Trends Ecol Evol, 1995, 10(1):18-22. doi:10.1016/S0169-5347(00) 88955-7.
    [21] LI J Q. Forest Ecology[M]. Beijing:Higher Education Press, 2006:45-60. 李俊清. 森林生态学[M]. 北京:高等教育出版社, 2006:45-60.
    [22] LEVINS R. Evolution in Changing Environments:Some Theoretical Explorations[M]. Princeton:Princeton University Press, 1968:75-87.
    [23] ZHANG J T. Quantitative Ecology[M]. Beijing:Science Press, 2004:58-81. 张金屯. 数量生态学[M]. 北京:科学出版社, 2004:58-81.
    [24] ZHANG D M, ZHAO W Z, LUO W C. Niche and interspecific asso-ciation of dominant plant species in saline-alkaline soils of desert steppe zone[J]. Chin J Ecol, 2018, 37(5):1307-1315. doi:10.13292/j. 1000-4890.201805.027. 张东梅, 赵文智, 罗维成. 荒漠草原带盐碱地优势植物生态位与种间联结[J]. 生态学杂志, 2018, 37(5):1307-1315. doi:10.13292/j. 1000-4890.201805.027.
    [25] TANG Y B, LIAO Y B, SHOU L, et al. Intertidal zone of the Nanji Islands is a niche for dominant species of the macrobenthic community[J]. Acta Ecol Sin, 2016, 36(2):489-498. doi:10.5846/stxb201310202532. 汤雁滨, 廖一波, 寿鹿, 等. 南麂列岛潮间带大型底栖动物群落优势种生态位[J]. 生态学报, 2016, 36(2):489-498. doi:10.5846/stxb 201310202532.
    [26] BAI H H, WANG X F, XU J G. Nutrition ecological niche of dominant arbor species in natural Pinus taiwanensis community[J]. J Nanjing For Univ (Nat Sci), 2018, 42(2):81-88. doi:10.3969/j.issn.1000-2006.201706043. 白欢欢, 王雪峰, 徐建国. 天然黄山松群落主要树种营养生态位特征研究[J]. 南京林业大学学报(自然科学版), 2018, 42(2):81-88. doi:10.3969/j.issn.1000-2006.201706043.
    [27] MILNE G R, MASON C H. An ecological niche theory approach to the measurement of brand competition[J]. Mark Lett, 1990, 1(3):267-281.
    [28] CHEN X X, SHEN C Q, HONG W J, et al. Niche of the Tree-layer Dominant Populations of Loropetalum subcordatum in Maolan[J]. J Fujian For Sci Technol, 2017, 44(3):16-21,81. doi:10.13428/j.cnki. fjlk.2017.03.003. 陈晓熹, 申长青, 洪文君, 等. 茂兰四药门花群落乔木层优势种群生态位研究[J]. 福建林业科技, 2017, 44(3):16-21,81. doi:10.13428/j. cnki.fjlk.2017.03.003.
    [29] MARTORELL C, FRECKLETON R P. Testing the roles of competition, facilitation and stochasticity on community structure in a species-rich assemblage[J]. J Ecol, 2014, 102(1):74-85. doi:10.1111/1365-2745.12173.
    [30] MAESTRE F T, CALLAWAY R M, VALLADARES F, et al. Refining the stress-gradient hypothesis for competition and facilitation in plant communities[J]. J Ecol, 2009, 97(2):199-205. doi:10.1111/j.1365-2745.2008.01476.x.
    [31] SILVERTOWN J. Plant coexistence and the niche[J]. Trends Ecol Evol, 2004, 19(11):605-611. doi:10.1016/j.tree.2004.09.003.
    [32] HU Z H, QIAN H Y, YU M J. The niche of dominant species populations in Castanopsis eyrei forest in Gutian Mountain National Nature Reserve[J]. Acta Ecol Sin, 2009, 29(7):3670-3677. doi:10.3321/j.issn:1000-0933.2009.07.027. 胡正华, 钱海源, 于明坚. 古田山国家级自然保护区甜槠林优势种群生态位[J]. 生态学报, 2009, 29(7):3670-3677. doi:10.3321/j.issn:1000-0933.2009.07.027.
    [33] LIU R H, CHEN L, TU H R, et al. Niche and interspecific association of main species in shrub layer of Cyclobalanopsis glauca community in karst hills of Guilin, southwest China[J]. Acta Ecol Sin, 2020, 40(6):2057-2071. doi:10.5846/stxb201904090689. 刘润红, 陈乐, 涂洪润, 等. 桂林岩溶石山青冈群落灌木层主要物种生态位与种间联结[J]. 生态学报, 2020, 40(6):2057-2071. doi:10.5846/stxb201904090689.
    [34] ARELLANO G, CALA V, MACÍA M J. Niche breadth of oligarchic species in Amazonian and Andean rain forests[J]. J Veg Sci, 2015, 25(6):1355-1366. doi:10.1111/jvs.12180.
    [35] LU W L, ZHANG H J, CHEN Q B, et al. Niche characteristics of the tree-layer dominant populations of Cunninghamia lanceolata forest in Chongqing Simian Mountains[J]. J NW For Univ, 2016, 31(2):60-65. doi:10.3969/j.issn.1001-7461.2016.02.11. 卢炜丽, 张洪江, 陈奇伯, 等. 重庆四面山杉木林群落乔木层优势种群生态位特征研究[J]. 西北林学院学报, 2016, 31(2):60-65. doi:10.3969/j.issn.1001-7461.2016.02.11.
    [36] PAN G, ZHANG H P, PAN D. Niche characteristics of dominant populations within mixed broadleaf-conifer forest in Qingyanghu National Park[J]. J CS Univ For Technol, 2017, 37(2):69-75. doi:10.14067/j.cnki.1673-923x.2017.02.012. 潘高, 张合平, 潘登. 湖南青羊湖国家森林公园针阔混交林主要种群生态位特征[J]. 中南林业科技大学学报, 2017, 37(2):69-75. doi:10.14067/j.cnki.1673-923x.2017.02.012.
    相似文献
    引证文献
    网友评论
    网友评论
    分享到微博
    发 布
引用本文

杨新东,陈流保,曾献兴,谢冲林,黄清华,陈晓熹,许涵,李群,黄久香.广东翁源青云山自然保护区森林群落优势树种的生态位特征[J].热带亚热带植物学报,2020,28(6):565~573

复制
分享
文章指标
  • 点击次数:
  • 下载次数:
  • HTML阅读次数:
  • 引用次数:
历史
  • 收稿日期:2020-03-05
  • 最后修改日期:2020-06-09
  • 在线发布日期: 2020-11-16
文章二维码