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    Radiation of ionizing or non-ionizing nature has harmful effects on cellular components like DNA as radiation can compromise its proper integrity. To cope with damages caused by external stimuli including radiation, within living cells, several fast and efficient repair mechanisms have evolved. Previous studies addressing organismic radiation tolerance have shown that radiotolerance is a predominant property among extremophilic microorganisms including (hyper-) thermophilic archaea. The analysis of the ionizing radiation tolerance of the chemolithoautotrophic, obligate anaerobic, hyperthermophilic Crenarchaeon Ignicoccus hospitalis showed a D10-value of 4.7 kGy, fourfold exceeding the doses previously determined for other extremophilic archaea. The genome integrity of I. hospitalis after γ-ray exposure in relation to its survival was visualized by RAPD and qPCR. Furthermore, the discrimination between reproduction, and ongoing metabolic activity was possible for the first time indicating that a potential viable but non-culturable (VBNC) state may also account for I. hospitalis.

    Citation

    Dagmar Koschnitzki, Ralf Moeller, Stefan Leuko, Bartos Przybyla, Kristina Beblo-Vranesevic, Reinhard Wirth, Harald Huber, Reinhard Rachel, Petra Rettberg. Questioning the radiation limits of life: Ignicoccus hospitalis between replication and VBNC. Archives of microbiology. 2021 May;203(4):1299-1308

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    PMID: 33325001

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