scientific article published on 11 October 2019

AttributesValues
rdf:type
description
  • wetenschappelijk artikel (nl)
  • article scientifique publié en 2019 (fr)
  • artículu científicu espublizáu n'ochobre de 2019 (ast)
  • im Oktober 2019 veröffentlichter wissenschaftlicher Artikel (de)
  • scientific article published on 11 October 2019 (en)
  • 2019 թվականի հոկտեմբերի 11-ին հրատարակված գիտական հոդված (hy)
  • наукова стаття, опублікована 11 жовтня 2019 (uk)
publication date
publication date
language of work or name
language of work or name
author name string
author name string
  • Fabrizio Ferré
  • Petra Rettberg
  • Alessandro Napoli
  • Lynn J Rothschild
  • Claudia Mosca
  • Marco Pietrosanto
rdfs:label
  • Over-Expression of UV-Damage DNA Repair Genes and Ribonucleic Acid Persistence Contribute to the Resilience of Dried Biofilms of the Desert Cyanobacetrium Chroococcidiopsis Exposed to Mars-Like UV Flux and Long-Term Desiccation (en)
  • Over-Expression of UV-Damage DNA Repair Genes and Ribonucleic Acid Persistence Contribute to the Resilience of Dried Biofilms of the Desert Cyanobacetrium Chroococcidiopsis Exposed to Mars-Like UV Flux and Long-Term Desiccation (nl)
skos:prefLabel
  • Over-Expression of UV-Damage DNA Repair Genes and Ribonucleic Acid Persistence Contribute to the Resilience of Dried Biofilms of the Desert Cyanobacetrium Chroococcidiopsis Exposed to Mars-Like UV Flux and Long-Term Desiccation (en)
  • Over-Expression of UV-Damage DNA Repair Genes and Ribonucleic Acid Persistence Contribute to the Resilience of Dried Biofilms of the Desert Cyanobacetrium Chroococcidiopsis Exposed to Mars-Like UV Flux and Long-Term Desiccation (nl)
name
  • Over-Expression of UV-Damage DNA Repair Genes and Ribonucleic Acid Persistence Contribute to the Resilience of Dried Biofilms of the Desert Cyanobacetrium Chroococcidiopsis Exposed to Mars-Like UV Flux and Long-Term Desiccation (en)
  • Over-Expression of UV-Damage DNA Repair Genes and Ribonucleic Acid Persistence Contribute to the Resilience of Dried Biofilms of the Desert Cyanobacetrium Chroococcidiopsis Exposed to Mars-Like UV Flux and Long-Term Desiccation (nl)
author
author
title
title
  • Over-Expression of UV-Damage DNA Repair Genes and Ribonucleic Acid Persistence Contribute to the Resilience of Dried Biofilms of the Desert Cyanobacetrium Chroococcidiopsis Exposed to Mars-Like UV Flux and Long-Term Desiccation (en)
page(s)
page(s)
  • 2312
instance of
instance of
main subject
main subject
PubMed ID
PubMed ID
PubMed ID
  • 31681194
published in
published in
volume
volume
  • 10
DOI
DOI
DOI
  • 10.3389/FMICB.2019.02312
skos:altLabel
  • Over-Expression of UV-Damage DNA Repair Genes and Ribonucleic Acid Persistence Contribute to the Resilience of Dried Biofilms of the Desert Cyanobacetrium Exposed to Mars-Like UV Flux and Long-Term Desiccation (en)
copyright license
copyright status
copyright license
copyright status
PMCID
PMCID
  • 6798154
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