Exploring the Interface Between Planetary Boundaries and Palaeoecology

IF 10.8 1区 环境科学与生态学 Q1 BIODIVERSITY CONSERVATION Global Change Biology Pub Date : 2025-01-16 DOI:10.1111/gcb.70017
Lindsey Gillson, Alistair Seddon, Ondřej Mottl, Ke Zhang, Kelly Kirsten, Peter Gell, Rob A. Marchant, Christoph Schwörer, Estelle Razanatsoa, Paul J. Lane, Colin J. Courtney-Mustaphi, John Dearing
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Abstract

The concepts of planetary boundaries are influential in the sustainability literature and assist in delineating the ‘safe operating spaces’ beyond which critical Earth system processes could collapse. Moving away from our current trajectory towards ‘hothouse Earth’ will require knowledge of how Earth systems have varied throughout the Holocene, and whether and how far we have deviated from past ranges of variability. Such information can inform decisions about where change could be resisted, accepted or where adaptation is inevitable. The need for information on long-term (Holocene) change provides an interface for palaeoecology and sustainability that remains underexploited. In this position paper, we explore this interface, first discussing the need for long-term perspectives and introducing examples where palaeoecology has been used in defining safe operating spaces and constraining limits of acceptable change. We describe advances in quantitative methods for analysis of time-series data that strengthen the contribution of palaeoecology to the concepts of planetary boundaries and safe operating spaces. We consider the importance of issues of scaling from landscape to regional and global scales in operationalising planetary boundaries concepts. We distil principles for this field of research going forward and introduce three case studies which will form the basis of research on these topics.

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探索行星边界与古生态学之间的界面
行星边界的概念在可持续发展文献中很有影响力,有助于划定 "安全运行空间",超过这个空间,地球系统的关键进程就可能崩溃。要摆脱我们目前的 "温室地球 "轨迹,就需要了解地球系统在整个全新世是如何变化的,以及我们是否偏离了过去的变化范围以及偏离的程度。这些信息可以帮助我们做出决定,在哪些方面可以抵制变化,在哪些方面可以接受变化,在哪些方面适应变化是不可避免的。对长期(全新世)变化信息的需求为古生态学和可持续发展提供了一个尚未得到充分利用的接口。在本立场文件中,我们探讨了这一界面,首先讨论了长期视角的必要性,并介绍了古生态学用于定义安全操作空间和限制可接受变化极限的实例。我们介绍了定量分析时间序列数据方法的进展,这些方法加强了古生态学对地球边界和安全运行空间概念的贡献。我们考虑了从景观尺度到区域尺度和全球尺度的缩放问题在落实地球边界概念方面的重要性。我们提炼了这一研究领域未来发展的原则,并介绍了三个案例研究,它们将成为这些课题研究的基础。
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来源期刊
Global Change Biology
Global Change Biology 环境科学-环境科学
CiteScore
21.50
自引率
5.20%
发文量
497
审稿时长
3.3 months
期刊介绍: Global Change Biology is an environmental change journal committed to shaping the future and addressing the world's most pressing challenges, including sustainability, climate change, environmental protection, food and water safety, and global health. Dedicated to fostering a profound understanding of the impacts of global change on biological systems and offering innovative solutions, the journal publishes a diverse range of content, including primary research articles, technical advances, research reviews, reports, opinions, perspectives, commentaries, and letters. Starting with the 2024 volume, Global Change Biology will transition to an online-only format, enhancing accessibility and contributing to the evolution of scholarly communication.
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