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生态学杂志 ›› 2024, Vol. 43 ›› Issue (11): 3240-3245.doi: 10.13292/j.1000-4890.202411.030

• 研究报告 • 上一篇    下一篇

黄河口新生湿地植物群落组成和结构

邹雨函1,李雪1,张馨1,凌越1,于君宝1*,栗云召1,王雪宏1,杨继松1,管博1,马元庆2,宋秀凯2   

  1. 1鲁东大学滨海生态高等研究院, 山东烟台 264025; 2山东省海洋资源与环境研究院, 山东烟台 264006)
  • 出版日期:2024-11-10 发布日期:2024-11-06

Plant community composition and structure of the nascent wetlands of the Yellow River Estuary.

ZOU Yuhan1, LI Xue1, ZHANG Xin1, LING Yue1, YU Junbao1*, LI Yunzhao1, WANG Xuehong1, YANG Jisong1, GUAN Bo1, MA Yuanqing2, SONG Xiukai2   

  1. (1The Institute for Advanced Study of Coastal Ecology, Ludong University, Yantai 264025, Shandong, China; 2Shandong Marine Resources and Environment Research Institute, Yantai 264006, Shandong, China).

  • Online:2024-11-10 Published:2024-11-06

摘要: 植物群落的种类、组成、分布及演变能够直接反映湿地生态系统的发展方向,影响其主体生态功能的正常发挥。本研究以2021年黄河口新生湿地植物群落为研究对象,建立一条垂直于群落过渡带的宽约500 m的研究样带,进行样方调查。结果表明:研究样带内有高等植物15种,隶属于11科15属。植物群落可划分为7类类型,在空间上由河向海呈条带状分布,互花米草已成为优势植物。物种均以草本植物为主,组成较为简单。Shannon多样性指数沿河向海方向呈先升后降的波动变化。10年间黄河河口湿地植物群落变化较为剧烈,植物群落物种数量下降,植物群落物种重要值前2位植物种类也发生了较大变化,某些群落的建群种逐渐消失或被新生物种所取代。本研究所揭示的研究区域植物群落快速演化特征可为黄河口新生湿地的生物多样性保护以及生态管理提供科学参考。


关键词: 植物群落, 分布格局, 物种多样性

Abstract: The species identity, composition, distribution, and evolution of plant community can reflect the development direction of wetland ecosystem, and affect the proper functioning of main ecological functions. To investigate plant community structure, a transect with a width of about 500 m perpendicular to the community transition zone was established in the Yellow River Estuary in 2021. The results showed that there were 15 species of higher plants which belonged to 11 families and 15 genera. The plant communities with strip distribution from the river to the sea could be divided into seven types. Spartina alterniflora dominated the vegetation. Species composition of the vegetation was relatively simple, mainly composed of herbaceous species. The Shannon diversity index increased first and then decreased along the river to the sea direction. In the past 10 years, plant community of wetlands in the Yellow River Estuary had shown dramatic changes. The species number of plant community declined, the top two species in terms of importance value changed considerably, and the established species of some communities gradually disappeared or were replaced by new species. This study highlights the rapid evolution of plant community, providing scientific reference for biodiversity conservation and ecological management of newborn wetlands in the Yellow River Estuary.


Key words: plant community, distribution pattern, species diversity