Underwater Light Manipulation by the Benthic Diatom <i>Ctenophora pulchella</i>: From PAR Efficient Collection to UVR Screening

Several species of diatoms, unicellular microalgae which constitute the main component of phytoplankton, are characterized by an impressive photosynthetic efficiency while presenting a noticeable tolerance versus exposure to detrimental UV radiation (UVR). In particular, the growth rate of the araph...

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Auteurs principaux: Edoardo De Tommasi, Ilaria Rea, Maria Antonietta Ferrara, Luca De Stefano, Mario De Stefano, Adil Y. Al-Handal, Marija Stamenković, Angela Wulff
Format: article
Langue:EN
Publié: MDPI AG 2021
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Accès en ligne:https://doaj.org/article/72dda157e6724ae0a81b4d5e5f30f039
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Résumé:Several species of diatoms, unicellular microalgae which constitute the main component of phytoplankton, are characterized by an impressive photosynthetic efficiency while presenting a noticeable tolerance versus exposure to detrimental UV radiation (UVR). In particular, the growth rate of the araphid diatom <i>Ctenophora pulchella</i> is not significantly affected by harsh treatments with UVR, even in absence of detectable, specific UV-absorbing pigments and even if it is not able to avoid high UV exposure by motility. In this work we applied a multi-disciplinary approach involving numerical computation, photonics, and biological parameters in order to investigate the possible role of the frustule, micro- and nano-patterned silica shell which encloses the cell, in the ability of <i>C. pulchella</i> to efficiently collect photosynthetic active radiation (PAR) and to simultaneously screen the protoplasm from UVR. The characterization of the photonic properties of the frustule has been accompanied by in vivo experiments conducted in water in order to investigate its function as optical coupler between light and plastids.