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硫酸盐同化作用调节蓝藻PCC 7942对高浓度二氧化碳的抗氧化防御反应。

Sulfate assimilation regulates antioxidant defense response of the cyanobacterium PCC 7942 to high concentrations of carbon dioxide.

作者信息

Mu Yujie, Chen Huiting, Li Jianwei, Han Pei, Yan Zhen

机构信息

Shandong Key Laboratory of Water Pollution Control and Resource Reuse, School of Environmental Science and Engineering, Shandong University, Qingdao, Shandong, China.

Key Laboratory of Space Utilization, Technology and Engineering Center for Space Utilization, Chinese Academy of Sciences, Beijing, China.

出版信息

Appl Environ Microbiol. 2025 Apr 23;91(4):e0011525. doi: 10.1128/aem.00115-25. Epub 2025 Mar 6.

Abstract

The adaptive evolution of cyanobacteria over a prolonged period has allowed them to utilize carbon dioxide (CO) at the low concentrations found in the atmosphere (0.04% CO) for growth. However, whether the exposure of cyanobacteria to high concentrations of CO results in oxidative stress and the activation of antioxidant defense response remains unknown, albeit fluctuations in other culture conditions have been reported to exert these effects. The current study reveals the physiological regulation of the model cyanobacterium PCC 7942 upon exposure to 1% CO and the underlying mechanism. Exposure to 1% CO was demonstrated to induce oxidative stress and activate antioxidant defense responses in . Further analysis of variations in metabolism between cells grown at 0.04% CO and exposed to 1% CO revealed that sulfate assimilation was enhanced after the exposure to 1% CO. A strain of lacking the gene , encoding a global transcriptional regulator for genes involved in sulfate assimilation, was generated by deleting the gene from the genomic DNA. A comparative analysis of the wild-type and -null strains indicated the regulation of the antioxidant response by sulfate assimilation. In addition, lines of evidence were presented that suggest a role of degradation of phycobilisome in the antioxidant response of under conditions of 1% CO and sulfate limitation. This study sheds light on the effects of high CO-induced stress on the ecophysiology of cyanobacteria upon exposure to diverse scenarios from a biotechnological and ecological perspective.IMPORTANCECyanobacteria that grow autotrophically with CO as the sole carbon source can be subject to high-CO stress in a variety of biotechnological and ecological scenarios. However, physiological regulation of cyanobacteria in response to high-CO stress remains elusive. Here, we employed microbial physiological, biochemical, and genetic techniques to reveal the regulatory strategies of cyanobacteria in response to high-CO stress. This study, albeit physiological, provides a biotechnological enterprise for manipulating cyanobacteria as the chassis for CO conversion and sheds light on the ecological effects of high CO on cyanobacteria.

摘要

长期以来,蓝细菌的适应性进化使其能够利用大气中低浓度(0.04% CO₂)的二氧化碳(CO₂)进行生长。然而,尽管有报道称其他培养条件的波动会产生这些影响,但蓝细菌暴露于高浓度CO₂是否会导致氧化应激并激活抗氧化防御反应仍不清楚。当前的研究揭示了模式蓝细菌集胞藻PCC 7942在暴露于1% CO₂时的生理调节及其潜在机制。结果表明,暴露于1% CO₂会诱导集胞藻PCC 7942产生氧化应激并激活其抗氧化防御反应。对在0.04% CO₂下生长和暴露于1% CO₂的集胞藻PCC 7942细胞之间的代谢变化进行进一步分析发现,暴露于1% CO₂后硫酸盐同化作用增强。通过从基因组DNA中删除编码参与硫酸盐同化作用相关基因的全局转录调节因子的基因,构建了一株缺失该基因的集胞藻PCC 7942菌株。对野生型菌株和该基因缺失菌株的比较分析表明,硫酸盐同化作用对抗氧化反应具有调节作用。此外,有证据表明,在1% CO₂和硫酸盐限制条件下,藻胆体的降解在集胞藻PCC 7942的抗氧化反应中发挥作用。本研究从生物技术和生态学角度,揭示了高浓度CO₂诱导的应激对蓝细菌生态生理学在不同情况下的影响。重要性以CO₂作为唯一碳源进行自养生长的蓝细菌,在各种生物技术和生态场景中可能会受到高浓度CO₂胁迫。然而,蓝细菌对高浓度CO₂胁迫的生理调节仍不清楚。在此,我们采用微生物生理学、生物化学和遗传学技术,揭示了蓝细菌对高浓度CO₂胁迫的调节策略。本研究尽管是生理性的,但为将蓝细菌作为CO₂转化的底盘进行操控提供了一个生物技术方向,并揭示了高浓度CO₂对蓝细菌的生态影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4822/12016511/7b2d4bf1fa6a/aem.00115-25.f001.jpg

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