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Advanced adaptive strategies in an ancestral body plan: insights from a 510-Ma-old leptomitid sponge
Cui Luo1,2, Yanjie Hong1,2, Zhixin Sun1
1State Key Laboratory of Palaeobiology and Stratigraphy, Nanjing Institute of Geology and Palaeontology, Chinese Academy of Sciences, Nanjing, Jiangsu 210008, People's Republic of China.
Abstract:
Sponges have thrived in diverse environmental conditions since the early Cambrian until today. However, little is known about how their adaptive capability and strategies have been shaped throughout evolutionary history. Here, we explore this question based on a new leptomitid sponge fossil from the Cambrian Stage 4. The family Leptomitidae was an abundant sponge group inhabiting Cambrian soft substrates but significantly declined thereafter. The new species exhibits a sophisticated set of morphological characteristics adaptive to a shallow siliciclastic environment, which are unprecedented among leptomitids. These include (i) a robust body wall woven by spirally twisted monaxonic spicules; (ii) a thick stub-like root tuft for anchoring; (iii) spicules radiating out from the sponge body to prevent clogging and sinking; and (iv) the inferred capability to close the osculum against unfavourable stimuli. Nevertheless, the new fossil species maintains a leptomitid body plan and lacks modularity and morphological plasticity, the two common and critical attributes in extant sponges to enhance flexibility and resilience in changing environmental conditions. This juxtaposition of evolutionary innovation and structural conservatism offers a compelling case for further exploration of the evolutionary mechanisms that shaped early sponge lineages.
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