首页> 外文会议>European workshop on exo-/astro-biology >THE RESISTANCE TO IONIZING RADIATION OF HYPERTHERMOPHILIC ARCHAEA ISOLATED FROM DEEP-SEA HYDROTHERMAL VENTS
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THE RESISTANCE TO IONIZING RADIATION OF HYPERTHERMOPHILIC ARCHAEA ISOLATED FROM DEEP-SEA HYDROTHERMAL VENTS

机译:深海水热通风口中分离出高热核抗体电离辐射的抗性

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In this paper we present many results on radioresistance of hyperthermophilic archaeon isolated from deep-sea hydrothermal vents. Effects of gamma (γ) irradiation was first tested with Pyrococcus abyssi and showed that this micro-organism did not shown any loss of viability until 2 kGy of γ-irradiation. Pulse Field Gel Electrophoresis (PFGE) analysis conducted with different species belonging to Archaea and Bacteria suggest that no specific DNA protection system exist that could explain the radioresistance of P. abyssi. Moreover, the genomic DNA completely fragmented after 2 kGy is fully restored in vivo under optimal growth conditions. The DNA replication of irradiated cells at 2,5 kGy is delayed by a lag phase which could coincide to this DNA repair. An associated mechanism of DNA repair by excision could act with the recombinational DNA repair. In parallel to these studies three hyperthermophilic archaeons highly resistant to ionizing radiation were isolated from deep-sea hydrothermal vents after the enrichment cultures were submitted to elevated irradiation doses (up to 20 and 30 kGy). All these novel species were more radioresistant than P. abyssi.
机译:在本文中,我们展示了许多结果对从深海水热通风口分离的高热审查archaeon adioratiance的结果。用Pyrococcus Abyssi测试γ(γ)辐射的效果,并显示这种微生物未显示出任何活力损失,直到γ-辐射2kGy。脉冲场凝胶电泳(PFGE)分析与属于古痤疮和细菌的不同物种表明,没有存在可以解释P. Abyssi的放射率的特异性DNA保护系统。此外,在2kGy后完全碎裂的基因组DNA在最佳生长条件下全体内恢复。辐照细胞的DNA复制在2,5 kgy时延迟滞后阶段,该滞后阶段可以与该DNA修复一致。 Excision的DNA修复的相关机制可以与重组DNA修复作用。与这些研究平行,在将富集培养物提高到升高的照射剂量(高达20 kgy)后,从深海水热通风口中分离出高嗜热疗法对电离辐射的高热粒子。所有这些新颖的物种比P. Abyssi更戒毒。

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