...
首页> 外文期刊>Global ecology and biogeography >The role of climate and plant functional trade-offs in shaping global biome and biodiversity patterns
【24h】

The role of climate and plant functional trade-offs in shaping global biome and biodiversity patterns

机译:气候和植物功能权衡在塑造全球生物群落和生物多样性格局中的作用

获取原文
获取原文并翻译 | 示例

摘要

AimTwo of the oldest observations in plant geography are the increase in plant diversity from the poles towards the tropics and the global geographic distribution of vegetation physiognomy (biomes). The objective of this paper is to use a process-based vegetation model to evaluate the relationship between modelled and observed global patterns of plant diversity and the geographic distribution of biomes.LocationThe global terrestrial biosphere.MethodsWe implemented and tested a novel vegetation model aimed at identifying strategies that enable plants to grow and reproduce within particular climatic conditions across the globe. Our model simulates plant survival according to the fundamental ecophysiological processes of water uptake, photosynthesis, reproduction and phenology. We evaluated the survival of an ensemble of 10,000 plant growth strategies across the range of global climatic conditions. For the simulated regional plant assemblages we quantified functional richness, functional diversity and functional identity.ResultsA strong relationship was found (correlation coefficient of 0.75) between the modelled and the observed plant diversity. Our approach demonstrates that plant functional dissimilarity increases and then saturates with increasing plant diversity. Six of the major Earth biomes were reproduced by clustering grid cells according to their functional identity (mean functional traits of a regional plant assemblage). These biome clusters were in fair agreement with two other global vegetation schemes: a satellite image classification and a biogeography model (kappa statistics around 0.4).Main conclusionsOur model reproduces the observed global patterns of plant diversity and vegetation physiognomy from the number and identity of simulated plant growth strategies. These plant growth strategies emerge from the first principles of climatic constraints and plant functional trade-offs. Our study makes important contributions to furthering the understanding of how climate affects patterns of plant diversity and vegetation physiognomy from a process-based rather than a phenomenological perspective.
机译:目的植物地理学中最古老的两个发现是从极地到热带地区植物多样性的增加以及植被地貌(生物群落)的全球地理分布。本文的目的是使用基于过程的植被模型来评估建模和观察到的全球植物多样性模式与生物群落地理分布之间的关系。定位全球陆地生物圈。方法我们实施并测试了旨在识别植物的新型植被模型使植物能够在全球特定气候条件下生长和繁殖的策略。我们的模型根据水分吸收,光合作用,繁殖和物候学的基本生态生理过程模拟植物的存活。我们评估了全球气候条件范围内10,000种植物生长策略的整体生存率。对于模拟的区域植物群落,我们量化了功能丰富度,功能多样性和功能同一性。结果发现,模型多样性与观察到的植物多样性之间存在很强的相关性(相关系数为0.75)。我们的方法表明,植物功能上的相似性会增加,然后随着植物多样性的增加而饱和。六个主要的地球生物群落是根据其功能特性(区域植物组合的平均功能性状)通过群集网格细胞而繁殖的。这些生物群落群与其他两个全球植被计划完全吻合:卫星图像分类和生物地理模型(kappa统计值在0.4左右)主要结论我们的模型从模拟的数量和身份复制了观察到的全球植物多样性和植被地貌模式。植物生长策略。这些植物生长策略源于气候限制和植物功能权衡的首要原则。我们的研究为从基于过程而非现象学的角度进一步理解气候如何影响植物多样性和植被地貌模式做出了重要贡献。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号