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热带森林对气候变化的功能响应。

Functional susceptibility of tropical forests to climate change.

机构信息

Environmental Change Institute, School of Geography and the Environment, University of Oxford, Oxford, UK.

Biodiversity Dynamics, Naturalis Biodiversity Center, Leiden, the Netherlands.

出版信息

Nat Ecol Evol. 2022 Jul;6(7):878-889. doi: 10.1038/s41559-022-01747-6. Epub 2022 May 16.

DOI:10.1038/s41559-022-01747-6
PMID:35577983
Abstract

Tropical forests are some of the most biodiverse ecosystems in the world, yet their functioning is threatened by anthropogenic disturbances and climate change. Global actions to conserve tropical forests could be enhanced by having local knowledge on the forests' functional diversity and functional redundancy as proxies for their capacity to respond to global environmental change. Here we create estimates of plant functional diversity and redundancy across the tropics by combining a dataset of 16 morphological, chemical and photosynthetic plant traits sampled from 2,461 individual trees from 74 sites distributed across four continents together with local climate data for the past half century. Our findings suggest a strong link between climate and functional diversity and redundancy with the three trait groups responding similarly across the tropics and climate gradient. We show that drier tropical forests are overall less functionally diverse than wetter forests and that functional redundancy declines with increasing soil water and vapour pressure deficits. Areas with high functional diversity and high functional redundancy tend to better maintain ecosystem functioning, such as aboveground biomass, after extreme weather events. Our predictions suggest that the lower functional diversity and lower functional redundancy of drier tropical forests, in comparison with wetter forests, may leave them more at risk of shifting towards alternative states in face of further declines in water availability across tropical regions.

摘要

热带森林是世界上生物多样性最丰富的生态系统之一,但它们的功能正受到人为干扰和气候变化的威胁。通过了解森林的功能多样性和功能冗余,作为其应对全球环境变化能力的替代指标,全球保护热带森林的行动可以得到加强。在这里,我们通过将过去半个世纪从四大洲 74 个地点的 2461 棵树木中采集的 16 个形态、化学和光合作用植物性状的数据集与当地气候数据相结合,对热带地区的植物功能多样性和冗余性进行了估计。我们的研究结果表明,气候与功能多样性和冗余性之间存在着很强的联系,这三个性状组在热带地区和气候梯度上的反应相似。我们表明,与湿润森林相比,干燥的热带森林整体上的功能多样性较低,功能冗余随着土壤水分和水汽压亏缺的增加而下降。具有较高功能多样性和较高功能冗余的地区在经历极端天气事件后,往往能够更好地维持生态系统功能,如地上生物量。我们的预测表明,与湿润森林相比,干燥的热带森林较低的功能多样性和较低的功能冗余,可能使它们在热带地区水资源进一步减少的情况下,更容易转向替代状态。

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Resistance of African tropical forests to an extreme climate anomaly.非洲热带森林对极端气候异常的抵抗力。
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Linking plant hydraulics and the fast-slow continuum to understand resilience to drought in tropical ecosystems.将植物水力学与快慢连续体联系起来,以理解热带生态系统对干旱的恢复力。
动态植被模型中热带雨林的恢复力指标
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