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通往未来的桥梁:OzFlux 网络 20 年生态系统观测获得的重要经验。

Bridge to the future: Important lessons from 20 years of ecosystem observations made by the OzFlux network.

机构信息

School of Agriculture and Environment, University of Western Australia, Crawley, Western Australia, Australia.

Institute for Sustainability, Energy and Environment, University of Illinois Urbana-Champaign, Urbana, Illinois, USA.

出版信息

Glob Chang Biol. 2022 Jun;28(11):3489-3514. doi: 10.1111/gcb.16141. Epub 2022 Mar 22.

Abstract

In 2020, the Australian and New Zealand flux research and monitoring network, OzFlux, celebrated its 20 anniversary by reflecting on the lessons learned through two decades of ecosystem studies on global change biology. OzFlux is a network not only for ecosystem researchers, but also for those 'next users' of the knowledge, information and data that such networks provide. Here, we focus on eight lessons across topics of climate change and variability, disturbance and resilience, drought and heat stress and synergies with remote sensing and modelling. In distilling the key lessons learned, we also identify where further research is needed to fill knowledge gaps and improve the utility and relevance of the outputs from OzFlux. Extreme climate variability across Australia and New Zealand (droughts and flooding rains) provides a natural laboratory for a global understanding of ecosystems in this time of accelerating climate change. As evidence of worsening global fire risk emerges, the natural ability of these ecosystems to recover from disturbances, such as fire and cyclones, provides lessons on adaptation and resilience to disturbance. Drought and heatwaves are common occurrences across large parts of the region and can tip an ecosystem's carbon budget from a net CO sink to a net CO source. Despite such responses to stress, ecosystems at OzFlux sites show their resilience to climate variability by rapidly pivoting back to a strong carbon sink upon the return of favourable conditions. Located in under-represented areas, OzFlux data have the potential for reducing uncertainties in global remote sensing products, and these data provide several opportunities to develop new theories and improve our ecosystem models. The accumulated impacts of these lessons over the last 20 years highlights the value of long-term flux observations for natural and managed systems. A future vision for OzFlux includes ongoing and newly developed synergies with ecophysiologists, ecologists, geologists, remote sensors and modellers.

摘要

2020 年,澳大利亚和新西兰通量研究和监测网络 OzFlux 庆祝成立 20 周年,回顾了在全球变化生物学方面进行了 20 年生态系统研究所获得的经验教训。OzFlux 不仅是生态系统研究人员的网络,也是那些知识、信息和数据的“下一用户”的网络,这些网络提供了这些知识、信息和数据。在这里,我们重点关注气候变化和可变性、干扰和恢复力、干旱和热应激以及与遥感和建模的协同作用等主题的八个经验教训。在总结关键经验教训的同时,我们还确定了需要进一步研究的领域,以填补知识空白,并提高 OzFlux 输出的实用性和相关性。澳大利亚和新西兰的极端气候变率(干旱和洪涝)为在加速气候变化时期对生态系统有一个全球的理解提供了一个自然实验室。随着全球火灾风险恶化的证据不断出现,这些生态系统从火灾和旋风等干扰中恢复的自然能力为适应和恢复干扰提供了教训。干旱和热浪在该地区的大部分地区经常发生,并且可以使生态系统的碳预算从净 CO2 汇转变为净 CO2 源。尽管生态系统对压力有这样的响应,但 OzFlux 站点的生态系统通过在有利条件返回时迅速回到强大的碳汇,显示出对气候变率的恢复力。OzFlux 数据位于代表性不足的地区,有潜力降低全球遥感产品的不确定性,并且这些数据为开发新理论和改进我们的生态系统模型提供了几个机会。在过去 20 年中,这些经验教训的累积影响突出了长期通量观测对自然和管理系统的价值。OzFlux 的未来愿景包括与生理生态学家、生态学家、地质学家、遥感传感器和建模师不断发展和新发展的协同作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1043/9314624/d401c289f490/GCB-28-3489-g004.jpg

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