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将电离辐射用作激发子以增强……中的生长和代谢活性。 (原文句子不完整,翻译只能到这里)

Application of ionizing radiation as an elicitor to enhance the growth and metabolic activities in .

作者信息

Kim Jin-Hong, Dubey Shubham Kumar, Hwangbo Kwon, Chung Byung Yeoup, Lee Seung Sik, Lee Sungbeom

机构信息

Advanced Radiation Technology Institute, Korea Atomic Energy Research Institute, Jeollabuk-do, Republic of Korea.

Department of Radiation Science and Technology, University of Science and Technology, Daejeon, Republic of Korea.

出版信息

Front Plant Sci. 2023 Feb 20;14:1087070. doi: 10.3389/fpls.2023.1087070. eCollection 2023.

Abstract

is a eukaryotic, unicellular photosynthetic organism and a potential algal platform for producing biomass and recombinant proteins for industrial use. Ionizing radiation is a potent genotoxic and mutagenic agent used for algal mutation breeding that induces various DNA damage and repair responses. In this study, however, we explored the counterintuitive bioeffects of ionizing radiation, such as X- and γ-rays, and its potential as an elicitor to facilitate batch or fed-batch cultivation of cells. A certain dose range of X- and γ-rays was shown to stimulate the growth and metabolite production of cells. X- or γ-irradiation with relatively low doses below 10 Gy substantially increased chlorophyll, protein, starch, and lipid content as well as growth and photosynthetic activity in cells without inducing apoptotic cell death. Transcriptome analysis demonstrated the radiation-induced changes in DNA damage response (DDR) and various metabolic pathways with the dose-dependent expression of some DDR genes, such as , , , , , , and . However, the overall transcriptomic changes were not causally associated with growth stimulation and/or enhanced metabolic activities. Nevertheless, the radiation-induced growth stimulation was strongly enhanced by repetitive X-irradiation and/or subsequent cultivation with an inorganic carbon source, i.e., NaHCO, but was significantly inhibited by treatment of ascorbic acid, a scavenger of reactive oxygen species (ROS). The optimal dose range of X-irradiation for growth stimulation differed by genotype and radiation sensitivity. Here, we suggest that ionizing radiation within a certain dose range determined by genotype-dependent radiation sensitivity could induce growth stimulation and enhance metabolic activities, including photosynthesis, chlorophyll, protein, starch, and lipid synthesis in cells ROS signaling. The counterintuitive benefits of a genotoxic and abiotic stress factor, i.e., ionizing radiation, in a unicellular algal organism, i.e., , may be explained by epigenetic stress memory or priming effects associated with ROS-mediated metabolic remodeling.

摘要

是一种真核单细胞光合生物,是用于生产生物质和工业用重组蛋白的潜在藻类平台。电离辐射是一种用于藻类诱变育种的强效基因毒性和诱变剂,可诱导各种DNA损伤和修复反应。然而,在本研究中,我们探索了电离辐射(如X射线和γ射线)的反直觉生物效应及其作为促进细胞分批或补料分批培养的诱导剂的潜力。一定剂量范围的X射线和γ射线显示可刺激细胞的生长和代谢产物生成。低于10 Gy的相对低剂量的X射线或γ射线照射可显著增加细胞中的叶绿素、蛋白质、淀粉和脂质含量以及生长和光合活性,而不会诱导细胞凋亡死亡。转录组分析表明,辐射诱导了DNA损伤反应(DDR)和各种代谢途径的变化,一些DDR基因(如、、、、、和)呈现剂量依赖性表达。然而,整体转录组变化与生长刺激和/或增强的代谢活性没有因果关系。尽管如此,重复的X射线照射和/或随后用无机碳源(即NaHCO)培养可强烈增强辐射诱导的生长刺激,但抗坏血酸(一种活性氧(ROS)清除剂)处理可显著抑制这种刺激。X射线照射促进生长的最佳剂量范围因基因型和辐射敏感性而异。在此,我们表明,由基因型依赖性辐射敏感性决定的一定剂量范围内的电离辐射可诱导生长刺激并增强代谢活性,包括细胞中的光合作用、叶绿素、蛋白质、淀粉和脂质合成 ROS信号传导。在单细胞藻类生物(即)中,基因毒性和非生物应激因子(即电离辐射)的反直觉益处可能由与ROS介导的代谢重塑相关的表观遗传应激记忆或引发效应来解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a87b/9986495/1b94a3a640f1/fpls-14-1087070-g001.jpg

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