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The relative importance of seed competition, resource competition and perturbations on community structure

机译:种子竞争,资源竞争和摄动对社区结构的相对重要性

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While the regional climate is the primary selection pressure for whether a plant strategy can survive, however, competitive interactions strongly affect the relative abundances of plant strategies within communities. Here, we investigate the relative importance of competition and perturbations on the development of vegetation community structure. To do so, we develop DIVE (Dynamics and Interactions of VEgetation), a simple general model that links plant strategies to their competitive dynamics, using growth and reproduction characteristics that emerge from climatic constraints. The model calculates population dynamics based on establishment, mortality, invasion and exclusion in the presence of different strengths of perturbations, seed and resource competition. The highest levels of diversity were found in simulations without competition as long as mortality is not too high. However, reasonable successional dynamics were only achieved when resource competition is considered. Under high levels of competition, intermediate levels of perturbations were required to obtain coexistence. Since succession and coexistence are observed in plant communities, we conclude that the DIVE model with competition and intermediate levels of perturbation represents an adequate way to model population dynamics. Because of the simplicity and generality of DIVE, it could be used to understand vegetation structure and functioning at the global scale and the response of vegetation to global change.
机译:尽管区域气候是植物策略能否生存的主要选择压力,但是竞争相互作用强烈影响着社区内植物策略的相对丰度。在这里,我们调查竞争和摄动对植被群落结构发展的相对重要性。为此,我们开发了DIVE(植被的动力学和相互作用),这是一个简单的通用模型,它利用气候限制条件下的生长和繁殖特征,将植物策略与其竞争动态联系起来。该模型在存在不同强度的干扰,种子和资源竞争的情况下,根据建立,死亡率,入侵和排斥来计算种群动态。只要死亡率不太高,在没有竞争的模拟中发现多样性最高。但是,只有在考虑资源竞争的情况下才能实现合理的继任动力。在竞争激烈的情况下,需要中等程度的摄动才能获得共存。由于在植物群落中观察到了演替和共存,因此我们得出结论,具有竞争和中间扰动水平的DIVE模型代表了一种模拟种群动态的适当方法。由于DIVE的简单性和通用性,它可用于了解全球范围内的植被结构和功能以及植被对全球变化的响应。

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