您的位置:山东大学 -> 科技期刊社 -> 《山东大学学报(理学版)》

《山东大学学报(理学版)》 ›› 2021, Vol. 56 ›› Issue (11): 43-50.doi: 10.6040/j.issn.1671-9352.0.2021.337

• • 上一篇    

山东孔林植物群落动态变化及演替分析

张文馨1,王蕙2,范小莉1,王强3,房用1,梁玉1*   

  1. 1.山东省林业科学研究院, 山东 济南 250014;2.山东大学生命科学学院, 山东 青岛 266237;3.山东省林业外资与工程项目管理站, 山东 济南 250014
  • 发布日期:2021-11-15
  • 作者简介:张文馨(1989— ),女,博士,高级工程师,研究方向为生态学. E-mail:zhangwenxin_508@163.com*通信作者简介:梁玉(1979— ),女,博士,研究员,研究方向为生态学. E-mail:liangyu_79@163.com
  • 基金资助:
    国家科技基础性工作专项基金资助项目(2011FY110300);山东省国土空间规划专题(山东省自然保护地布局研究)资助项目

Analysis on plant community dynamics and succession in the Confucian Cemetery, Shandong Province, China

ZHANG Wen-xin1, WANG Hui2, FAN Xiao-li1, WANG Qiang3, FANG Yong1, LIANG Yu1*   

  1. 1. Shandong Academy of Forestry, Jinan 250014, Shandong, China;
    2. School of Life Sciences, Shandong University, Qingdao 266237, Shandong, China;
    3. Forestry Foreign Investment and Project Management Station of Shandong Province, Jinan 250014, Shandong, China
  • Published:2021-11-15

摘要: 采用样方调查法对孔林植物群落类型、物种组成、多样性、径级结构进行了调查分析,并与历史调查数据进行对比,探究了孔林植物群落演替过程与趋势。结果表明,经50多年的演替,孔林植物群落类型有所增加。除了原有的侧柏林、麻栎林和黄连木林外,新出现了刺槐林、皂荚林等阔叶林及侧柏-黄连木、侧柏-栾树、麻栎-侧柏等针阔混交林。孔林植物群落中阔叶乔木种类增加,正向顶极的落叶阔叶林演替。与50年前相比,孔林植物群落灌木层盖度有所降低,草本层盖度明显升高,外来植物种类增加,50年间灌木及草本物种组成差异明显。孔林中侧柏和刺槐种群处于稳定发展阶段,黄连种群处于良好增长阶段,而麻栎种群发展有衰退趋势。孔林典型植物群落中侧柏-牛繁缕群丛的乔木层、灌木层及草本层植物多样性均较低,孔林植物多样性受人为干扰的影响远高于自然生境的影响。孔林定期的灌草管理、引种栽培及旅游等活动对孔林植物群落造成了一定影响,建议在必要的人工造林、保育的基础上,适当减少对孔林的人为干扰,促进孔林植物群落向近自然林演替。

关键词: 植物群落, 演替, 多样性, 孔林

Abstract: Plant community type, species composition, diversity and diameter-class structure in the Confucian Cemetery were investigated by using the quadrat survey method, and the process and trend of the succession of the plant community were explored by comparing with the historical survey data. The results showed that the plant community types increased after 50 years of succession. In addition to the original Platycladus orientalis forest, Quercus acutissima forest and Pistacia chinensis forest, there are new broad-leaved forests such as Robinia pseudoacacia forest and Gleditsia sinensis forest, and mixed broadleaf-conifer forests such as Platycladus orientalis-Pistacia chinensis forest, Platycladus orientalis-Koelreuteria paniculate forest and Quercus acutissima-Platycladus orientalis forest. Broad-leaved tree species increased in plant community. The plant community is succeeding towards the climax deciduous broad-leaved forest. Compared with 50 years ago, the coverage of shrub layer decreased, the coverage of herb layer increased, and the number of exotic plant species increased. The species composition of shrubs and herbaceous plants varied significantly in 50 years. Platycladus orientalis and Robinia pseudoacacia population were in the stable development stage, Pistacia chinensis population was in the good growth stage, and Quercus acacia population had a declining trend. The plant diversity of arbor layer, shrub layer and herb layer of Platycladus orientalis-Myosoton aquaticum association was low, and the influence of human disturbance on plant diversity was much higher than that of natural habitat. Human activities such as shrub management, plant introduction and cultivation and tourism on a regular basis have a certain influence on the plant community of the Confucian Cemetery. It is suggested that on the basis of necessary artificial afforestation and artificial conservation, human interference should be appropriately reduced to promote the succession of the plant community to the near natural forest in the Confucian Cemetery.

Key words: plant community, succession, diversity, the Confucian Cemetery

中图分类号: 

  • Q948
[1] 殷淑燕. 植物地理学[M].北京:科学出版社,2012. YIN Shuyan. Plant geography[M]. Beijing: Science Press, 2012.
[2] 任海,蔡锡安,饶兴权,等.植物群落的演替理论[J].生态科学,2001,4(20):59-67. REN Hai, CAI Xian, RAO Xingquan, et al. Theory of succession of plant communities[J]. Ecological Science, 2001, 4(20):59-67.
[3] 韩路.塔里木河上游荒漠河岸林植物群落动态与优势种群生态特征研究[D].北京:中国农业大学,2014. HAN Lu. The dynamics of vegetation and ecological characteristics of dominant populations for desert riparian forest in the upper reaches of Tarim River[D]. Beijing: China Agriculture University, 2014.
[4] DAILY, G C. Restoring value to the worlds degraded lands[J]. Science, 1995, 269(5222):350-354.
[5] DOBSON A P, BRADSHAW A D, BAKER A. Hopes for the future: restoration ecology and conservation biology[J]. Science, 1997, 277(5325):515-522.
[6] FALK D A, PALMER M A, ZEDLER J B. Foundations of restoration ecology[M].[S.l.] : Island Press/Center for Resource Economics, 2006.
[7] 周光裕,叶正丰,龚明良.山东曲阜孔林的植被与土壤[J].山东大学学报(理学版),1960,10(4):54-65. ZHOU Guangyu, YE Zhengfeng, GONG Mingliang. Vegetation and soil of the Confucian Cemetery in Qufu, Shandong Province[J]. Journal of Shandong University(Natural Science), 1960, 10(4):54-65.
[8] 方精云,王襄平,沈泽昊,等.植物群落清查的主要内容方法和技术规范[J].生物多样性,2009,17(6):533-548. FANG Jingyun, WANG Xiangping, SHEN Zehao, et al. Methods and protoclols for plant community inventory[J]. Biodiversity Science, 2009, 17(6):533-548.
[9] 马克平. 生物群落多样性的测度方法:Ⅰ.α多样性的测度方法(上)[J].生物多样性,1994,2(3):162-168. MA Keping. Measurement of biotic community diversity: Ⅰ.measurement of alpha diversity[J]. Chinese Biodiversity, 1994, 2(3):162-168.
[10] TOM L, CHRISTINA A C. Measuring diversity: the importance of species similarity[J]. Ecology, 2012, 93(3):477-489.
[11] 张文馨. 山东植物群落及其物种多样性分布格局与形成机制[D].济南:山东大学, 2016. ZHANG Wenxin. The spatial patterns of plant species diversity and their underlying mechanisms in Shandong Province, China[D]. Jinan: Shandong University, 2016.
[12] 赵灏.山东曲阜孔林外来入侵植物区系调查和生态环境预警[J].安徽农业科学,2015,43(25):108-110. ZHAO Hao. Flora investigation of alien invasive plants and ecological and environmental warning for the Confucius forest in Qufu[J]. Journal of Anhui Agricultural Sciences, 2015, 43(25):108-110.
[13] 高远,孟凡旭,朱孔山,等. 山东孔林主要植物种群和群落特征研究[J].林业资源管理,2015(3):70-77. GAO Yuan, MENG Fanxu, ZHU Kongshan, et al. The main plant population and community characteristics of the Confucian Cemetery in Qufu, Shandong Province, China[J]. Forest Resources Management, 2015(3):70-77.
[14] 徐宁,吴兆录,宋会兴.山东孔林三种植物群落物种多样性及动态研究[J].广西植物,2006,26(3):257-260. XU Ning, WU Zhaolu, SONG Huixing. Species diversity and dynamics of three plant communities in the Confucian Cemetery, Shandong[J]. Guihaia, 2006, 26(3):257-260.
[1] 王仁卿,张煜涵,孙淑霞,郑培明. 黄河三角洲植被研究回顾与展望[J]. 《山东大学学报(理学版)》, 2021, 56(10): 135-148.
[2] 张文馨,范小莉,王强,房用,梁玉. 黄河三角洲植物多样性与生态系统多功能性间的关系[J]. 《山东大学学报(理学版)》, 2020, 55(1): 110-116.
[3] 张秀华,齐海鹰,王仁卿,刘建. 山东省自然保护区植物多样性研究[J]. 《山东大学学报(理学版)》, 2019, 54(7): 1-10.
[4] 李德利,任昭杰,燕丽梅,卞新玉,赵遵田. 山东省丛藓科苔藓植物研究[J]. 山东大学学报(理学版), 2016, 51(3): 11-18.
[5] 杜聪聪,赵晶,初红军,刘元超,端肖楠,陈刚. 新疆河狸mtDNA D-loop HV-Ⅰ区的遗传多样性研究[J]. 山东大学学报(理学版), 2016, 51(3): 19-28.
[6] 刘元超, 赵晶, 初红军, 董潭成, 韩丽丽, 陶永善, 葛炎. 蒙古国西北部狼(Canis lupus)遗传多样性研究[J]. 山东大学学报(理学版), 2015, 50(01): 42-49.
[7] 韩亚飞,伊文慧,王文波,王延平,王华田*. 基于高通量测序技术的连作杨树人工林土壤细菌多样性研究[J]. 山东大学学报(理学版), 2014, 49(05): 1-6.
[8] 陈飞,张敏,刘奕群,马少平. 基于HITS算法的查询结果多样化方法[J]. J4, 2011, 46(5): 44-48.
[9] 李立,袁方,郗亚辉. 面向相关多敏感属性的隐私保护方法[J]. J4, 2011, 46(5): 82-85.
[10] 王仁卿*,杜宁,郭卫华,张淑萍,戴九兰, 刘建,王玉志,王玉涛. 走向国际化的生态学--山东大学生态学的过去、现在和将来[J]. 山东大学学报(理学版), 2011, 46(10): 197-206.
[11] 赵 蕊,霍贵成* . 新疆酸奶子中乳酸菌多样性分析[J]. J4, 2008, 43(7): 18-22 .
[12] 郑向伟,刘 弘 . 一种多样性引导的两阶段多目标微粒群算法[J]. J4, 2008, 43(11): 5-10 .
[13] 房 用,梁 玉,王月海,王卫东 . 济南石灰岩山地植被特征及其对植被优化配置的研究[J]. J4, 2008, 43(1): 8-13 .
[14] 吴大千,杜 宁,王 炜,翟 雯,王玉芳,王仁卿,张治国* . 昆嵛山森林群落下灌草层结构与多样性研究[J]. J4, 2007, 42(1): 83-88 .
[15] 周娟,郭卫华,宗美娟,韩雪梅,王仁卿 . 房干村不同植被下可培养细菌多样性研[J]. J4, 2006, 41(6): 161-167 .
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!