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分支树形古杯动物是寒武纪辐射时期的生态系统工程师。

Branching archaeocyaths as ecosystem engineers during the Cambrian radiation.

机构信息

Department of Geosciences, Princeton University, Princeton, New Jersey, USA.

Computational Science Lab, University of Amsterdam, Amsterdam, The Netherlands.

出版信息

Geobiology. 2023 Jan;21(1):66-85. doi: 10.1111/gbi.12521. Epub 2022 Aug 25.

Abstract

The rapid origination and diversification of major animal body plans during the early Cambrian coincide with the rise of Earth's first animal-built framework reefs. Given the importance of scleractinian coral reefs as ecological facilitators in modern oceans, we investigate the impact of archaeocyathan (Class Archaeocyatha) reefs as engineered ecosystems during the Cambrian radiation. In this study, we present the first high-resolution, three-dimensional (3D) reconstructions of branching archaeocyathide (Order Archaeocyathida) individuals from three localities on the Laurentian paleocontinent. Because branched forms in sponges and corals display phenotypic plasticity that preserve the characteristics of the surrounding growth environment, we compare morphological measurements from our fossil specimens to those of modern corals to infer the surface conditions of Earth's first reefs. These data demonstrate that archaeocyaths could withstand and influence the flow of water, accommodate photosymbionts, and build topographically complex and stable structures much like corals today. We also recognize a stepwise increase in the roughness of reef environments in the lower Cambrian, which would have laid a foundation for more abundant and diverse coevolving fauna.

摘要

主要动物体型在早寒武世的快速起源和多样化与地球第一批动物建造的框架礁的兴起相吻合。鉴于石珊瑚礁作为现代海洋生态促进者的重要性,我们研究了古杯动物(类古杯动物)礁作为寒武纪辐射期间工程化生态系统的影响。在这项研究中,我们首次对劳伦太古大陆三个地点的分枝古杯动物(古杯目)个体进行了高分辨率的三维(3D)重建。因为海绵和珊瑚中的分枝形式表现出具有周围生长环境特征的表型可塑性,所以我们将化石标本的形态测量值与现代珊瑚的形态测量值进行了比较,以推断地球第一批珊瑚礁的表面条件。这些数据表明,古杯动物能够承受和影响水流,容纳共生藻类,并像今天的珊瑚一样构建地形复杂且稳定的结构。我们还发现,下寒武统的礁环境粗糙度呈逐步增加趋势,这为更丰富和多样化的协同进化动物群奠定了基础。

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