Beyond Carbon: The Contributions of South American Tropical Humid and Subhumid Forests to Ecosystem Services

IF 25.2 1区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS Reviews of Geophysics Pub Date : 2022-09-12 DOI:10.1029/2021RG000766
L. S. Borma, M. H. Costa, H. R. da Rocha, J. Arieira, N. C. C. Nascimento, C. Jaramillo-Giraldo, G. Ambrosio, R. G. Carneiro, M. Venzon, A. F. Neto, R. van der Hoff, B. F. A. Oliveira, R. Raj?o, C. A. Nobre
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引用次数: 9

Abstract

Tropical forests are recognized for their role in providing diverse ecosystem services (ESs), with carbon uptake the best recognized. The capacity of tropical forests to provide ESs is strongly linked to their enormous biodiversity. However, causal relationships between biodiversity and ESs are poorly understood. This may be because biodiversity is often translated into species richness. Here, we argue that focusing on multiple attributes of biodiversity—structure, composition, and function—will make relationships between biodiversity and ESs clearer. In this review, we discuss the ecological processes behind ESs from tropical humid and subhumid forests of South America. Our main goal is to understand the links between the ESs and those three biodiversity attributes. While supporting and regulating services relate more closely to forest structure and function, provisioning services relate more closely to forest composition and function, and cultural services are more related to structure and composition attributes. In this sense, ESs from subhumid forests (savannas) differ from those provided by the Amazon Forest, although both ecosystems are recognized as harboring tremendous biodiversity. Given this, if anthropogenic drivers of change promote a shift in the Amazon Forest toward savanna—the savannization hypothesis—the types of services provided will change, especially climate regulating services. This review emphasizes the importance of deeply understanding ecosystem structure, composition, and function to better understand the services ecosystems provide. Understanding that anthropogenic impacts on biodiversity occur through these three main attributes, it becomes easier to anticipate how humans will impact ESs.

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碳之外:南美热带湿润和半湿润森林对生态系统服务的贡献
热带森林在提供多种生态系统服务(ESs)方面的作用得到了公认,其中碳吸收得到了最好的认可。热带森林提供生态环境的能力与其巨大的生物多样性密切相关。然而,生物多样性与生态环境之间的因果关系尚不清楚。这可能是因为生物多样性常常被转化为物种丰富度。在此,我们认为关注生物多样性的多个属性——结构、组成和功能——将使生物多样性与生态环境之间的关系更加清晰。在这篇综述中,我们讨论了来自南美洲热带湿润和半湿润森林的ESs背后的生态过程。我们的主要目标是了解ESs与这三个生物多样性属性之间的联系。支持和调节服务与森林结构和功能的关系更密切,供应服务与森林组成和功能的关系更密切,文化服务与结构和组成属性的关系更密切。从这个意义上说,半湿润森林(稀树草原)提供的生态系统不同于亚马逊森林提供的生态系统,尽管这两个生态系统都被认为蕴藏着巨大的生物多样性。考虑到这一点,如果人为的变化驱动因素促使亚马逊森林向稀树草原转移——即稀树草原化假说——所提供的服务类型将发生变化,尤其是气候调节服务。本文强调了深入了解生态系统的结构、组成和功能对更好地理解生态系统所提供的服务的重要性。了解人类对生物多样性的影响是通过这三个主要属性发生的,就更容易预测人类将如何影响生态系统。
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来源期刊
Reviews of Geophysics
Reviews of Geophysics 地学-地球化学与地球物理
CiteScore
50.30
自引率
0.80%
发文量
28
审稿时长
12 months
期刊介绍: Geophysics Reviews (ROG) offers comprehensive overviews and syntheses of current research across various domains of the Earth and space sciences. Our goal is to present accessible and engaging reviews that cater to the diverse AGU community. While authorship is typically by invitation, we warmly encourage readers and potential authors to share their suggestions with our editors.
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