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Allometric growth, disturbance regime, and dilemmas of controlling invasive plants: a model analysis

机译:异速生长,干扰状况和控制入侵植物的困境:模型分析

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摘要

Disturbed communities are observed to be more susceptible to invasion by exotic species, suggesting that some attributes of the invaders may interact with disturbance regime to facilitate invasion success. Alternanthera philoxeroides, endemic to South America, is an amphibious clonal weed invading worldwide. It tends to colonize disturbed habitats such as riparian zones, floodplain wetlands and agricultural areas. We developed an analytical model to explore the interactive effects of two types of physical disturbances, shoot mowing and root fragmentation, on biomass production dynamics of A. philoxeroides. The model is based on two major biological assumptions: (1) allometric growth of root (belowground) vs. shoot (aboveground) biomass and (2) exponential regrowth of shoot biomass after mowing. The model analysis revealed that the interaction among allometric growth pattern, shoot mowing frequency and root fragmentation intensity might lead to diverse plant ‘fates’. For A. philoxeroides whose root allocation decreases with growing plant size, control by shoot mowing was faced with two dilemmas. (1) Shoot regrowth can be effectively suppressed by frequent mowing. However, frequent shoot mowing led to higher biomass allocation to thick storage roots, which enhanced the potential for faster future plant growth. (2) In the context of periodic shoot mowing, individual shoot biomass converged to a stable equilibrium value which was independent of the root fragmentation intensity. However, root fragmentation resulted in higher equilibrium population shoot biomass and higher frequency of shoot mowing required for effective control. In conclusion, the interaction between allometric growth and physical disturbances may partially account for the successful invasion of A. philoxeroides; improper mechanical control practices could function as disturbances and result in exacerbated invasion.
机译:观察到受干扰的社区更容易受到外来物种的入侵,这表明入侵者的某些属性可能与干扰制度相互作用,以促进入侵成功。南美洲特有的嗜水气单胞菌(Alternanthera philoxeroides)是一种在世界范围内入侵的两栖克隆杂草。它往往定居在受干扰的栖息地,如河岸地区,洪泛区湿地和农业地区。我们开发了一种分析模型,以探讨两种类型的物理干扰(苗割和根破碎)对A. philoxeroides生物量生产动态的相互作用。该模型基于两个主要的生物学假设:(1)根部(地下)相对于枝条(地上)生物量的异速生长,以及(2)修剪后枝条生物量的指数再生。模型分析表明,异速生长模式,枝条修剪频率和根破碎强度之间的相互作用可能导致多种植物“命运”。对于根部分配随植物大小增长而减少的phil.erooxeroides,通过修剪割草进行控制面临两个难题。 (1)经常修剪可以有效抑制芽的再生。然而,频繁的修剪割草导致更高的生物量分配给较厚的储藏根,从而增强了未来植物更快生长的潜力。 (2)在定期修剪地上,个别地上的生物量收敛到一个稳定的平衡值,而该平衡值与根碎裂强度无关。然而,根碎裂导致有效控制所需的更高的平衡种群芽生物量和更高的割草频率。总之,异速生长和物理干扰之间的相互作用可能部分解释了A. philoxeroides的成功入侵。机械控制方法不当可能会造成干扰,并加剧入侵。

著录项

  • 来源
    《Biological Invasions》 |2009年第3期|743-752|共10页
  • 作者单位

    Coastal Ecosystems Research Station of Yangtze River Estuary Ministry of Education Key Laboratory for Biodiversity Science and Ecological Engineering Institute of Biodiversity Science Fudan University Handan Road No. 220 Shanghai 200433 People’s Republic of China;

    Coastal Ecosystems Research Station of Yangtze River Estuary Ministry of Education Key Laboratory for Biodiversity Science and Ecological Engineering Institute of Biodiversity Science Fudan University Handan Road No. 220 Shanghai 200433 People’s Republic of China;

    Coastal Ecosystems Research Station of Yangtze River Estuary Ministry of Education Key Laboratory for Biodiversity Science and Ecological Engineering Institute of Biodiversity Science Fudan University Handan Road No. 220 Shanghai 200433 People’s Republic of China;

    Coastal Ecosystems Research Station of Yangtze River Estuary Ministry of Education Key Laboratory for Biodiversity Science and Ecological Engineering Institute of Biodiversity Science Fudan University Handan Road No. 220 Shanghai 200433 People’s Republic of China;

    School of Life Science Northwest University Xi’an 710069 People’s Republic of China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Alternanthera philoxeroides; Root fragmentation; Mowing; Plant invasion; Regrowth;

    机译:空心莲子草;根碎;割草;植物入侵;再生;

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