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A Multi-Technique Investigation to Explore the Structural Integrity and Chemical Complexity of the Brachiopod Lingula
Prabad Pratim Pal1, Sourav Bar1, Santosh Kumar Bera1
1Coastal Environmental Studies Research Centre of Egra SSB College under Vidyasagar University, West Bengal, India; Coastal Ecology Research Laboratory, Department of Zoology, Egra SSB College, India.
Abstract:
The shell of Lingula anatina, a living representative of early brachiopods, exemplifies a unique organophosphatic biomineralization strategy that integrates mineral phases with organic components for structural enhancement. This study employs scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDS), inductively coupled plasma optical emission spectrometry (ICP-OES), X-ray diffraction (XRD), and Raman spectroscopy to comprehensively analyse the microstructure, composition, and mineralogy of the shell. SEM imaging reveals distinct regional microarchitectures, from compact fibrous laminae to porous, reticulate layers, indicating functional specialization in structural reinforcement and flexibility. Elemental analyses confirm a calcium-phosphate matrix dominated by fluorapatite and enriched with trace elements like Mg, Mn, and Fe. XRD and Raman data validate the coexistence of crystalline fluorapatite and calcite with significant amorphous phases. These findings highlight Lingula's evolutionary retention of a hierarchical, organic-inorganic composite shell adapted for environmental interaction, structural resilience, and biomineral control.
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