Imaging of surface O sub(2) dynamics in corals with magnetic micro optode particles

We present a new method for quantifying spatio-temporal O sub(2) distribution and dynamics at biologically active surfaces with a complex surface topography. Magnetized O sub(2) optode microparticles (80-100 mu m) containing the NIR-emitting luminophore platinum (II) meso-tetra(4-fluorophenyl) tetra...

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Veröffentlicht in:Marine biology 2012-07, Vol.159 (7), p.1621-1631
Hauptverfasser: Fabricius-Dyg, J, Mistlberger, G, Staal, M, Borisov, S M, Klimant, I, Kuehl, M
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container_end_page 1631
container_issue 7
container_start_page 1621
container_title Marine biology
container_volume 159
creator Fabricius-Dyg, J
Mistlberger, G
Staal, M
Borisov, S M
Klimant, I
Kuehl, M
description We present a new method for quantifying spatio-temporal O sub(2) distribution and dynamics at biologically active surfaces with a complex surface topography. Magnetized O sub(2) optode microparticles (80-100 mu m) containing the NIR-emitting luminophore platinum (II) meso-tetra(4-fluorophenyl) tetrabenzoporphyrin (PtTPTBPF; ex. max. 615 nm; em. max. 780 nm) were distributed across the surface tissue of the scleractinian coral Caulastrea furcata and were held in place with a strong magnet. The O sub(2)-dependent luminescence of the particles was mapped with a lifetime imaging system enabling measurements of the lateral surface heterogeneity of the O sub(2) microenvironment across coral polyps exposed to flow. Mapping steady-state O sub(2) concentrations under constant light and O sub(2) dynamics during experimental light-dark shifts enabled us to identify zones of different photosynthetic activities within a single coral polyp linked to the distribution of coral host pigments. Measurements under increasing irradiance showed typical saturation curves of O sub(2) concentration and estimates of gross photosynthesis that could be spatially resolved at 100 mu m pixel resolution. The new method for O sub(2) imaging with magnetized optode particles has much potential to be used in studies of the surface microenvironment of other aquatic systems such as sediments, biofilms, plant, and animal tissue.
doi_str_mv 10.1007/s00227-012-1920-y
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subjects Caulastrea furcata
Marine
Scleractinia
title Imaging of surface O sub(2) dynamics in corals with magnetic micro optode particles
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