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长时间暴露在亚背景辐射环境中会对干燥酵母哨兵的抗干燥恢复产生负面影响。

Protracted Exposure to a Sub-background Radiation Environment Negatively Impacts the Anhydrobiotic Recovery of Desiccated Yeast Sentinels.

机构信息

Medical Sciences Division, NOSM University, Sudbury, Ontario, Canada.

NASA Ames Research Center, Moffett Field, CA.

出版信息

Health Phys. 2024 Jun 1;126(6):397-404. doi: 10.1097/HP.0000000000001804. Epub 2024 Apr 3.

DOI:10.1097/HP.0000000000001804
PMID:38568172
Abstract

Experiments that examine the impacts of subnatural background radiation exposure provide a unique approach to studying the biological effects of low-dose radiation. These experiments often need to be conducted in deep underground laboratories in order to filter surface-level cosmic radiation. This presents some logistical challenges in experimental design and necessitates a model organism with minimal maintenance. As such, desiccated yeast ( Saccharomyces cerevisiae ) is an ideal model system for these investigations. This study aimed to determine the impact of prolonged sub-background radiation exposure in anhydrobiotic (desiccated) yeast at SNOLAB in Sudbury, Ontario, Canada. Two yeast strains were used: a normal wild type and an isogenic recombinational repair-deficient rad51 knockout strain ( rad51 Δ). Desiccated yeast samples were stored in the normal background surface control laboratory (68.0 nGy h -1 ) and in the sub-background environment within SNOLAB (10.1 nGy h -1 ) for up to 48 wk. Post-rehydration survival, growth rate, and metabolic activity were assessed at multiple time points. Survival in the sub-background environment was significantly reduced by a factor of 1.39 and 2.67 in the wild type and rad51 ∆ strains, respectively. Post-rehydration metabolic activity measured via alamarBlue reduction remained unchanged in the wild type strain but was 26% lower in the sub-background rad51 ∆ strain. These results demonstrate that removing natural background radiation negatively impacts the survival and metabolism of desiccated yeast, highlighting the potential importance of natural radiation exposure in maintaining homeostasis of living organisms.

摘要

实验研究表明,背景辐射暴露的影响提供了一种独特的方法来研究低剂量辐射的生物学效应。这些实验通常需要在深层地下实验室中进行,以过滤表面水平的宇宙辐射。这在实验设计中带来了一些后勤挑战,并需要一种维护量最小的模式生物。因此,干燥酵母(酿酒酵母)是这些研究的理想模式系统。本研究旨在确定在加拿大安大略省萨德伯里的 SNOLAB 中,长时间处于非水合状态(干燥)下的酵母受到亚背景辐射暴露的影响。使用了两种酵母菌株:一种是正常的野生型,另一种是同源重组修复缺陷型 rad51 敲除菌株(rad51Δ)。干燥的酵母样本分别储存在正常背景的表面对照实验室(68.0 nGy h-1)和 SNOLAB 中的亚背景环境(10.1 nGy h-1)中,时间长达 48 周。在多个时间点评估了再水合后的存活率、生长率和代谢活性。在亚背景环境中的存活率分别比野生型和 rad51Δ菌株降低了 1.39 和 2.67 倍。再水合后的代谢活性通过 alamarBlue 还原来测量,在野生型菌株中没有变化,但在亚背景 rad51Δ菌株中降低了 26%。这些结果表明,去除自然背景辐射会对干燥酵母的存活和代谢产生负面影响,强调了自然辐射暴露在维持生物体的内稳态方面的潜在重要性。

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