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Effects of competition mode on the spatial pattern dynamics of wave regeneration in subalpine tree stands

机译:竞争方式对亚高山乔木林波再生空间格局动态的影响

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The effects of competition between individuals (the degree of competitive asymmetry and the intensity of competition; an endogenous biological factor) and the intensity of disturbance (unidirectional prevailing winds in the present paper; an exogenous environmental factor) on the spatial pattern dynamics of wave regeneration in subalpine regions were studied by using a coupled map lattice model (a lattice model with discrete time, discrete space and continuous state) of plant populations. It was shown by simulation that the wave-shaped spatial pattern of regeneration is more likely to emerge under symmetric competition than under asymmetric competition and that the likelihood of emergence increases with the intensity of disturbance. It was already shown both theoretically and by field data analysis that Abies undergoes symmetric competition and that Betula undergoes asymmetric competition. Therefore, a theoretical explanation can be given as to why the wave-shaped spatial pattern occurs in Abies forests but not in Betula forests although both the species occur in subalpine regions. Our theoretical study showed that the interaction between endogenous and exogenous factors determine the spatial pattern dynamics in relation to the regeneration of plant communities.
机译:个体之间的竞争(竞争性不对称程度和竞争强度;内生生物因素)和扰动强度(本文中为单向盛行风;外源环境因素)对波浪再生的空间格局动力学的影响通过使用耦合的地图种群模型(具有离散时间,离散空间和连续状态的种群模型)对亚高山地区的植物进行了研究。通过仿真表明,与非对称竞争相比,对称竞争下更容易出现波浪状的空间格局,并且随着干扰强度的增加,出现的可能性更大。从理论上和现场数据分析都已经表明,冷杉经历了对称竞争,而桦树经历了不对称竞争。因此,尽管两个物种都发生在亚高山地区,但为什么在冷杉林而不是桦树林中会出现波浪状的空间格局,就可以给出理论解释。我们的理论研究表明,内源性因素与外源性因素之间的相互作用决定了与植物群落再生有关的空间格局动态。

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