The Micropaleoecology Framework: Evaluating Biotic Responses to Global Change Through Paleoproxy, Microfossil, and Ecological Data Integration

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Adam Woodhouse, Anshuman Swain, Jansen A. Smith, Elizabeth C. Sibert, Adriane R. Lam, Jennifer A. Dunne, Alexandra Auderset
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Abstract

The microfossil record contains abundant, diverse, and well-preserved fossils spanning multiple trophic levels from primary producers to apex predators. In addition, microfossils often constitute and are preserved in high abundances alongside continuous high-resolution geochemical proxy records. These characteristics mean that microfossils can provide valuable context for understanding the modern climate and biodiversity crises by allowing for the interrogation of spatiotemporal scales well beyond what is available in neo-ecological research. Here, we formalize a research framework of “micropaleoecology,” which builds on a holistic understanding of global change from the environment to ecosystem level. Location: Global. Time period: Neoproterozoic-Phanerozoic. Taxa studied: Fossilizing organisms/molecules. Our framework seeks to integrate geochemical proxy records with microfossil records and metrics, and draws on mechanistic models and systems-level statistical analyses to integrate disparate records. Using multiple proxies and mechanistic mathematical frameworks extends analysis beyond traditional correlation-based studies of paleoecological associations and builds a greater understanding of past ecosystem dynamics. The goal of micropaleoecology is to investigate how environmental changes impact the component and emergent properties of ecosystems through the integration of multi-trophic level body fossil records (primarily using microfossils, and incorporating additional macrofossil data where possible) with contemporaneous environmental (biogeochemical, geochemical, and sedimentological) records. Micropaleoecology, with its focus on integrating ecological metrics within the context of paleontological records, facilitates a deeper understanding of the response of ecosystems across time and space to better prepare for a future Earth under threat from anthropogenic climate change.

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微古生物生态学框架:通过整合古生态、微化石和生态数据评估生物对全球变化的反应
微化石记录包含丰富、多样和保存完好的化石,涵盖从初级生产者到顶级捕食者的多个营养级。此外,微化石通常与连续的高分辨率地球化学替代记录一起构成并以高丰度保存。这些特点意味着微化石可以为理解现代气候和生物多样性危机提供宝贵的背景资料,因为微化石允许对时空尺度进行研究,远远超出了新生态学研究的范围。在此,我们正式确立了 "微古生物生态学 "研究框架,该框架建立在从环境到生态系统层面对全球变化的整体理解之上。位置:全球。时间段:新近纪-新生代。研究的类群:生物/分子化石。我们的框架旨在将地球化学代用记录与微化石记录和指标结合起来,并利用机理模型和系统级统计分析来整合不同的记录。使用多种代用指标和机理数学框架将分析扩展到传统的基于相关性的古生态关联研究之外,并加深对过去生态系统动态的理解。微观古生态学的目标是通过整合多营养级体化石记录(主要使用微化石,并在可能的情况下纳入更多宏观化石数据)与同期环境(生物地球化学、地球化学和沉积学)记录,研究环境变化如何影响生态系统的组成部分和新出现的特性。微古生物生态学侧重于在古生物记录的背景下整合生态指标,有助于更深入地了解生态系统在不同时间和空间的反应,从而更好地为未来受到人为气候变化威胁的地球做好准备。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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