Light and photosynthetic microalgae: A review of cellular- and molecular-scale optical processes

[Display omitted] •Cellular and molecular level optical properties of algae are viewed.•The physics of scattering, absorption, and fluorescence are explained.•Photonic effects of diatoms and coccolithophores are represented.•Numerical algal cell models are compared.•Photoacclimation and chromatic re...

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Published inProgress in oceanography Vol. 168; pp. 43 - 56
Main Authors Lehmuskero, Anni, Skogen Chauton, Matilde, Boström, Tobias
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.11.2018
Elsevier
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ISSN0079-6611
1873-4472
1873-4472
DOI10.1016/j.pocean.2018.09.002

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Summary:[Display omitted] •Cellular and molecular level optical properties of algae are viewed.•The physics of scattering, absorption, and fluorescence are explained.•Photonic effects of diatoms and coccolithophores are represented.•Numerical algal cell models are compared.•Photoacclimation and chromatic regulation are discussed. Light and its interaction with microalgae are essential concerns in the context of microalgae studies. The optical properties of microalgae have a great impact on the remote sensing ocean color, underwater light distribution and biomass accumulation, to mention some areas. A deep understanding of these processes requires knowledge on both the physical light interaction mechanisms with algae, and effects in cellular photophysiology and eventually primary production. Therefore, in this review we comprehensively explain the fundamental physical principles behind microalgae optical properties addressing the multidisciplinary microalgae community. We try to answer what happens with light in the microalgal cell on the cellular and molecular level, and explain the physical mechanisms of light absorption, scattering, fluorescence and diffraction. The current optical cell models that describe the absorbance and scattering properties of microalgae are compared and reviewed. The recent discoveries of the behavior of light in diatom frustules and coccolithophore coccoliths are represented, also showing the special role of these microalgae groups in terms of light interaction. Because microalgae and light are reciprocally interacting, we will briefly also view the photoacclimation and chromatic regulation associated with physical, metabolic and gene transcriptory changes. Finally, predictions and suggestions on the future research directions within oceanography, limnology, remote sensing and aqua culture are provided.
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Progress in Oceanography
ISSN:0079-6611
1873-4472
1873-4472
DOI:10.1016/j.pocean.2018.09.002