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Sensitivity of plant functional types to climate change: classification tree analysis of a simulation model

机译:植物功能类型对气候变化的敏感性:模拟模型的分类树分析

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QuestionThe majority of studies investigating the impact of climate change on local plant communities ignores changes in regional processes, such as immigration from the regional seed pool. Here we explore: (i) the potential impact of climate change on composition of the regional seed pool, (ii) the influence of changes in climate and in the regional seed pool on local community structure, and (iii) the combinations of life history traits, i.e. plant functional types (PFTs), that are most affected by environmental changes.LocationFire-prone, Mediterranean-type shrublands in southwestern Australia.MethodsSpatially explicit simulation experiments were conducted at the population level under different rainfall and fire regime scenarios to determine the effect of environmental change on the regional seed pool for 38 PFTs. The effects of environmental and seed immigration changes on local community dynamics were then derived from community-level experiments. Classification tree analyses were used to investigate PFT-specific vulnerabilities to climate change.ResultsThe classification tree analyses revealed that responses of PFTs to climate change are determined by specific trait characteristics. PFT-specific seed production and community patterns responded in a complex manner to climate change. For example, an increase in annual rainfall caused an increase in numbers of dispersed seeds for some PFTs, but decreased PFT diversity in the community. Conversely, a simulated decrease in rainfall reduced the number of dispersed seeds and diversity of PFTs.ConclusionsPFT interactions and regional processes must be considered when assessing how local community structure will be affected by environmental change.
机译:问题大多数研究气候变化对当地植物群落影响的研究都忽略了区域过程的变化,例如从区域种子库的移民。在这里,我们探讨:(i)气候变化对区域种子库组成的潜在影响,(ii)气候和区域种子库变化对当地社区结构的影响,以及(iii)生活史的组合受环境变化影响最大的特征,即植物功能类型(PFTs)。位置澳大利亚西南部易发生火灾的地中海型灌木林方法在不同的降雨和火灾情况下,在种群水平上进行了空间明确的模拟实验,以确定环境变化对38个PFT的区域种子库的影响。然后,从社区一级的实验中得出环境和种子迁移变化对当地社区动态的影响。结果通过分类树分析法研究了PFTs对气候变化的脆弱性。结果,分类树分析表明PFTs对气候变化的反应取决于特定的性状特征。针对PFT的种子生产和社区模式以复杂的方式应对气候变化。例如,年降雨量的增加导致某些PFT的散布种子数量增加,但社区中PFT多样性下降。相反,降雨的模拟减少减少了分散的种子数量和PFT的多样性。结论在评估环境变化如何影响当地社区结构时,必须考虑PFT的相互作用和区域过程。

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