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FATE-HD: a spatially and temporally explicit integrated model for predicting vegetation structure and diversity at regional scale

机译:FATE-HD:时空上明确的集成模型,用于预测区域尺度上的植被结构和多样性

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摘要

During the last decade, despite strenuous efforts to develop new models and compare different approaches, few conclusions have been drawn on their ability to provide robust biodiversity projections in an environmental change context. The recurring suggestions are that models should explicitly (i) include spatiotemporal dynamics; (ii) consider multiple species in interactions and (iii) account for the processes shaping biodiversity distribution. This article presents a biodiversity model (FATE-HD) that meets this challenge at regional scale by combining phenomenological and process-based approaches and using well-defined plant functional groups. FATE-HD has been tested and validated in a French National Park, demonstrating its ability to simulate vegetation dynamics, structure and diversity in response to disturbances and climate change. The analysis demonstrated the importance of considering biotic interactions, spatio-temporal dynamics and disturbances in addition to abiotic drivers to simulate vegetation dynamics. The distribution of pioneer trees was particularly improved, as were all undergrowth functional groups
机译:在过去的十年中,尽管付出了巨大的努力来开发新的模型并比较不同的方法,但是关于它们在环境变化背景下提供可靠的生物多样性预测的能力的结论很少。反复出现的建议是,模型应明确(i)包括时空动力学; (ii)考虑相互作用中的多种物种,(iii)解释影响生物多样性分布的过程。本文介绍了一种生物多样性模型(FATE-HD),通过结合现象学和基于过程的方法并使用定义明确的植物功能组,可以在区域规模上应对这一挑战。 FATE-HD已在法国国家公园进行了测试和验证,证明其具有模拟植被动态,结构和多样性以响应干扰和气候变化的能力。分析表明,除了模拟植物动态的非生物驱动因素外,还必须考虑生物相互作用,时空动态和干扰。先锋树的分布得到了特别改善,所有灌木丛下的功能组也得到了改善

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