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Main Authors: Nicole M.J. Geerlings, Michiel V. Kienhuis, Silvia Hidalgo-Martinez, Renee Hageman, Diana Vasquez-Cardenaz, Jack J. Middelburg, Filip J.R. Meysman, Lubos Polerecky
Format: Recurso digital
Language:English
Published: Zenodo 2021
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Online Access:https://doi.org/10.5281/zenodo.5154004
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author Nicole M.J. Geerlings
Michiel V. Kienhuis
Silvia Hidalgo-Martinez
Renee Hageman
Diana Vasquez-Cardenaz
Jack J. Middelburg
Filip J.R. Meysman
Lubos Polerecky
author_facet Nicole M.J. Geerlings
Michiel V. Kienhuis
Silvia Hidalgo-Martinez
Renee Hageman
Diana Vasquez-Cardenaz
Jack J. Middelburg
Filip J.R. Meysman
Lubos Polerecky
contents <p>Datasets used for chapter 5 of the PhD thesis of N.M.J. Geerlings. The ecophysiology of multicellular cable bacteria:<br> insights from single cell imaging techniques</p> <p>Dataset 1: document (.dac) with the 18O atom fraction for each region of interest defined as a poly-P granule. These values were used for Model 1 and to construct figure 5.5 A-C. </p> <p>Dataset 2: document (.dac) with the 18O atom fraction of each region of interest defined as a poly-P granule and the corresponding 13C atom fraction of the cytoplasm. These fractions are only determined for the nanoSIMS data where the 12C14N- ion count was measured correctly. These values were used for Model 2 and to construct figure 5.6 and A5.3A-B. </p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_5154004
institution Zenodo
language eng
publishDate 2021
publisher Zenodo
record_format zenodo
spellingShingle The role of polyphosphates in the metabolism of multicellular cable bacteria
Nicole M.J. Geerlings
Michiel V. Kienhuis
Silvia Hidalgo-Martinez
Renee Hageman
Diana Vasquez-Cardenaz
Jack J. Middelburg
Filip J.R. Meysman
Lubos Polerecky
Cable bacteria, polyphosphate granules, stable isotope probing, nanoSIMS
<p>Datasets used for chapter 5 of the PhD thesis of N.M.J. Geerlings. The ecophysiology of multicellular cable bacteria:<br> insights from single cell imaging techniques</p> <p>Dataset 1: document (.dac) with the 18O atom fraction for each region of interest defined as a poly-P granule. These values were used for Model 1 and to construct figure 5.5 A-C. </p> <p>Dataset 2: document (.dac) with the 18O atom fraction of each region of interest defined as a poly-P granule and the corresponding 13C atom fraction of the cytoplasm. These fractions are only determined for the nanoSIMS data where the 12C14N- ion count was measured correctly. These values were used for Model 2 and to construct figure 5.6 and A5.3A-B. </p>
title The role of polyphosphates in the metabolism of multicellular cable bacteria
topic Cable bacteria, polyphosphate granules, stable isotope probing, nanoSIMS
url https://doi.org/10.5281/zenodo.5154004