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近地空间暴露后记忆效应对耐辐射球菌存活的影响

Memory Effect on the Survival of Deinococcus radiodurans after Exposure in Near Space.

作者信息

Chen Yining, Zhang Qing, Wang Deyu, Shu Yao-Gen, Shi Hualin

机构信息

CAS Key Laboratory of Theoretical Physics, Institute of Theoretical Physics, Chinese Academy of Sciences, Beijing, China.

School of Physical Sciences, University of Chinese Academy of Sciences, Beijing, China.

出版信息

Microbiol Spectr. 2023 Feb 7;11(2):e0347422. doi: 10.1128/spectrum.03474-22.

Abstract

Near space (20 to 100 km in altitude) is an extreme environment with high radiation and extreme cold, making it difficult for organisms to survive. However, many studies had shown that there were still microbes living in this extremely harsh environment. It was particularly important to study which factors affected the survival of microorganisms living in near space after exposure to irradiation, as this was related to many studies, such as studies of radioresistance mechanisms, panspermia hypothesis, long-distance microbial transfer, and developing extraterrestrial habitats. Survival after radiation was probably influenced by the growth condition before radiation, which is called the memory effect. In this research, we used different growth conditions to affect the growth of Deinococcus radiodurans and lyophilized bacteria in exponential phase to maintain the physiological state at this stage. Then high-altitude scientific balloon exposure experiments were carried out by using the Chinese Academy of Sciences Balloon-Borne Astrobiology Platform (CAS-BAP) at Dachaidan, Qinghai, China (37°44'N, 95°21'E). The aim was to investigate which factors influence survival after near-space exposure. The results suggested that there was a memory effect on the survival of D. radiodurans after exposure. If the differences in growth rate were caused by differences in nutrition, the survival rate and growth rate were positively correlated. Moreover, the addition of paraquat and Mn during the growth phase can also increase survival. This finding may help to deepen the understanding of the mechanics of radiation protection and provide relevant evidence for many studies, such as of long-distance transfer of microorganisms in near space. Earth's near space is an extreme environment with high radiation and extreme cold. Which factors affect the survival of microbes in near space is related to many studies, such as studies of radioresistance mechanisms, panspermia hypothesis, long-distance microbial transfer, and developing extraterrestrial habitats. We performed several exposure experiments with Deinococcus radiodurans in near space to investigate which factors influence the survival rate after near-space exposure; that is, there was a relationship between survival after radiation and the growth condition before radiation. The results suggested that there was a memory effect on the survival of D. radiodurans after exposure. This finding may help to deepen the understanding of the mechanism of radiation protection and provide relevant evidence for many studies, such as of long-distance transfer of microorganisms in near space.

摘要

近空间(海拔20至100千米)是一个具有高辐射和极端寒冷的极端环境,这使得生物体难以生存。然而,许多研究表明,仍有微生物生活在这种极其恶劣的环境中。研究哪些因素影响近空间微生物在暴露于辐射后的存活尤为重要,因为这与许多研究相关,如抗辐射机制研究、泛种论假说、微生物长距离转移以及外星栖息地开发等。辐射后的存活可能受辐射前生长条件的影响,这被称为记忆效应。在本研究中,我们使用不同的生长条件来影响耐辐射球菌和处于指数生长期的冻干细菌的生长,以维持该阶段的生理状态。然后利用中国科学院气球搭载天体生物学平台(CAS - BAP)在中国青海大柴旦(北纬37°44′,东经95°21′)进行了高空科学气球暴露实验。目的是研究哪些因素影响近空间暴露后的存活。结果表明,暴露后耐辐射球菌的存活存在记忆效应。如果生长速率的差异是由营养差异引起的,那么存活率和生长速率呈正相关。此外,在生长阶段添加百草枯和锰也可以提高存活率。这一发现可能有助于加深对辐射防护机制的理解,并为许多研究提供相关证据,如近空间微生物的长距离转移研究。地球的近空间是一个具有高辐射和极端寒冷的极端环境。哪些因素影响近空间微生物的存活与许多研究相关,如抗辐射机制研究、泛种论假说、微生物长距离转移以及外星栖息地开发等。我们对耐辐射球菌进行了多次近空间暴露实验,以研究哪些因素影响近空间暴露后的存活率;也就是说,辐射后的存活与辐射前的生长条件之间存在关联。结果表明,暴露后耐辐射球菌的存活存在记忆效应。这一发现可能有助于加深对辐射防护机制的理解,并为许多研究提供相关证据,如近空间微生物的长距离转移研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b3e/10100890/d857a5565330/spectrum.03474-22-f001.jpg

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