Tam Tze-wai, Ang Put O
Department of Biology, The Chinese University of Hong Kong, Shatin, New Territories, Hong Kong, China.
J Theor Biol. 2009 Jul 21;259(2):193-208. doi: 10.1016/j.jtbi.2009.03.014. Epub 2009 Mar 21.
A 3-dimensional individual-based model, the ReefModel, was developed to simulate the dynamical structure of coral reef community using object-oriented techniques. Interactions among functional groups of reef organisms were simulated in the model. The behaviours of these organisms were described with simple mechanistic rules that were derived from their general behaviours (e.g. growing habits, competitive mechanisms, response to physical disturbance) observed in natural coral reef communities. The model was implemented to explore the effects of physical disturbance on the dynamical structure of a 3-coral community that was characterized with three functional coral groups: tabular coral, foliaceous coral and massive coral. Simulation results suggest that (i) the integration of physical disturbance and differential responses (disturbance sensitivity and growing habit) of corals plays an important role in structuring coral communities; (ii) diversity of coral communities can be maximal under intermediate level of acute physical disturbance; (iii) multimodality exists in the final states and dynamic regimes of individual coral group as well as coral community structure, which results from the influence of small random spatial events occurring during the interactions among the corals in the community, under acute and repeated physical disturbances. These results suggest that alternative stable states and catastrophic regime shifts may exist in a coral community under unstable physical environment.
一种基于个体的三维模型——珊瑚礁模型(ReefModel)被开发出来,用于运用面向对象技术模拟珊瑚礁群落的动态结构。该模型模拟了珊瑚礁生物功能群之间的相互作用。这些生物的行为通过简单的机制规则来描述,这些规则源自于在自然珊瑚礁群落中观察到的它们的一般行为(如生长习性、竞争机制、对物理干扰的反应)。该模型被用于探究物理干扰对一个由三种功能性珊瑚群(平板珊瑚、叶状珊瑚和块状珊瑚)组成的三珊瑚群落动态结构的影响。模拟结果表明:(i)物理干扰与珊瑚的不同反应(干扰敏感性和生长习性)的结合在构建珊瑚群落中起着重要作用;(ii)在中等程度的急性物理干扰下,珊瑚群落的多样性可能达到最大;(iii)在急性和反复的物理干扰下,由于群落中珊瑚相互作用期间发生的小随机空间事件的影响,单个珊瑚群以及珊瑚群落结构的最终状态和动态模式中存在多模态。这些结果表明,在不稳定的物理环境下,珊瑚群落中可能存在替代稳定状态和灾难性的 regime 转变。