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入侵植物南美蟛蜞菊和本土蟛蜞菊生长对土壤养分的响应

袁伟影,冯进,张晓雅,安菁,高俊琴*   

  1. (北京林业大学自然保护区学院, 北京 100083)
  • 出版日期:2017-04-10 发布日期:2017-04-10

Responses of growth of Wedelia trilobata and W. chinensis to soil nutrients.

YUAN Wei-ying, FENG Jin, ZHANG Xiao-ya, AN Jing, GAO Jun-qin*#br#   

  1. (School of Nature Conservation, Beijing Forestry University, Beijing 100083, China).
  • Online:2017-04-10 Published:2017-04-10

摘要: 植物入侵对全球生态系统造成了严重威胁,土壤养分条件(养分水平和养分异质性)对外来植物的成功入侵有重要影响。为了探讨土壤养分条件对入侵植物与同属本地植物生长的影响,本研究以入侵植物南美蟛蜞菊(Wedelia trilobata)和同属本地种蟛蜞菊(W. chinensis)为试验材料开展了温室控制实验。实验设置了低、中、高及异质性养分条件下的单种和混种两种种植方式,测定了每种植物总生物量,根、茎、叶生物量及分节数、根冠比等指标,并分析了土壤养分对二者生长的影响。结果表明:土壤养分水平增加显著促进了南美蟛蜞菊和本地蟛蜞菊的生长;土壤养分异质性显著增加了南美蟛蜞菊根生物量和根冠比,显著增加了本地蟛蜞菊的总生物量、根生物量和茎生物量;土壤养分水平和养分异质性对南美蟛蜞菊和本地蟛蜞菊的竞争响应均无显著影响;在土壤养分较高或较低时南美蟛蜞菊更容易入侵成功;在异质养分环境中,当南美蟛蜞菊生长处于高养斑块时更容易入侵成功。

关键词: 矮化苹果, 吸收, 15N-尿素, 利用, 损失, 施氮方式, 果实品质

Abstract: Plant invasion seriously threatens the structure and function of ecosystems, and soil nutrient availability (soil nutrient amount and spatial heterogeneity) plays a key role in the successful invasion of introduced species. To explore the effect of soil nutrients on the growth of invasive and native species, a greenhouse experiment was conducted with the invasive species (Wedelia trilobata) and its native congener (W. chinensis) under monoculture and mixture in homogeneous soil environments of three nutrient levels and one heterogeneous environment. Growth measures (e.g., total biomass, root mass, stem mass, leaf mass, number of nodes, and root to shoot mass ratio were measured and the effect of soil nutrients was analyzed. Increased soil nutrient levels significantly promoted the growth of the two species. Soil nutrient heterogeneity improved the root mass and root to shoot mass ratio of W. trilobata, as well as the total biomass, root mass, and stem mass of W. chinensis. Soil nutrient level or nutrient heterogeneity had no significant impact on competition response of W. trilobata. We concluded that compared to its congener, W. trilobata had a higher probability to invade successfully in the higher homogeneous soil nutrient environment, and also in highnutrient patches of the heterogeneous soil nutrient environment.

Key words: method of nitrogen application, utilization, fruit quality, loss, 15N-urea, absorption, dwarfed apple