蓝藻复原力的荧光捕获行为:紫外线暴露生态系统及其环境应用的启示

IF 3.2 4区 化学 Q2 CHEMISTRY, ANALYTICAL Luminescence Pub Date : 2024-09-25 DOI:10.1002/bio.4898
Prathima R., Kanthesh M Basalingappa, Sai Kavya D., Arjun K. R., Girish Kanavi K., Suresh J., Karthikeyan Murugesan, Anjuna Radhakrishnan, Deepa Kandaswamy, Bedanta Roy, Selvankumar Thangaswamy, Bharath Selvaraj, Jaganathan R, Maghimaa M
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引用次数: 0

摘要

蓝藻是一种生命力顽强的微生物,在暴露于紫外线辐射的环境中茁壮成长,从海洋表面到炙热的温泉和干燥的广袤大地,不一而足。蓝藻的复原力 "指的是它们抵御紫外线辐射的能力,揭示了确保生存的复杂基因组秘密和适应机制。这些机制包括新陈代谢适应、强大的 DNA 修复系统和紫外线保护化合物,如 Scytonemin 和 Mycosporine,它们对抵御紫外线辐射生存至关重要。蓝藻是暴露于紫外线的生态系统中的重要先锋,凸显了它们的恢复能力和适应能力。一些蓝藻会发光,通过藻体蛋白发出蓝绿色的光,而蓝藻中的生物发光(如果有的话)则涉及不同的化合物,而不是荧光素和荧光素酶。这种发光有望用于各种生物技术应用,如生物传感器、成像探针和碳封存,也有望参与用于水净化和二氧化碳转化的光催化过程,还有助于太阳模拟研究,以推动光合作用和可再生能源技术的发展。这些材料的广泛应用凸显了它们在生态方面的重要性以及在应对全球挑战方面的潜力。总之,"蓝藻的复原力 "强调了蓝藻在紫外线暴露环境中的非凡适应策略。该书强调了蓝藻作为生物和技术领域先锋和创新者的作用,深入探讨了蓝藻对生态系统和科学进步的持久影响。
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Fluorescence capturing behaviour of cyanobacterial resilience: Insights into UV-exposed ecosystems and its environmental applications

Cyanobacteria are resilient microorganisms and thrive in environments exposed to UV radiation, ranging from ocean surfaces to scorching hot springs and dry expanses. ‘Cyanobacterial Resilience’ refers to their ability to withstand UV radiation, revealing intricate genomic secrets and adaptive mechanisms ensuring survival. These mechanisms include metabolic adaptations, robust DNA repair systems and UV-protective compounds such as Scytonemin and Mycosporine, vital for shielding against UV radiation survival. Cyanobacteria are crucial pioneers in UV-exposed ecosystems, highlighting their resilience and adaptability. Some cyanobacteria exhibit luminescence, emitting blue-green light due to phycobiliproteins, while bioluminescence in cyanobacteria, if it occurs, involves different compounds rather than luciferins and luciferase enzymes. This luminescence holds promise for various biotechnological applications, such as biosensors, imaging probes and carbon sequestration, for participating in photocatalytic processes for water purification and CO2 conversion, and contributes to solar simulation studies to advance photosynthesis and renewable energy technologies. The versatile applications of these materials highlight their ecological importance and potential in addressing global challenges. In conclusion, ‘Cyanobacterial Resilience’ highlights the remarkable adaptation strategies of cyanobacteria in UV-exposed environments. It emphasises their role as pioneers and innovators in biological and technological domains, providing insights into their enduring impact on ecosystems and scientific advancement.

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来源期刊
Luminescence
Luminescence 生物-生化与分子生物学
CiteScore
5.10
自引率
13.80%
发文量
248
审稿时长
3.5 months
期刊介绍: Luminescence provides a forum for the publication of original scientific papers, short communications, technical notes and reviews on fundamental and applied aspects of all forms of luminescence, including bioluminescence, chemiluminescence, electrochemiluminescence, sonoluminescence, triboluminescence, fluorescence, time-resolved fluorescence and phosphorescence. Luminescence publishes papers on assays and analytical methods, instrumentation, mechanistic and synthetic studies, basic biology and chemistry. Luminescence also publishes details of forthcoming meetings, information on new products, and book reviews. A special feature of the Journal is surveys of the recent literature on selected topics in luminescence.
期刊最新文献
Issue Information Blueberry Anthocyanin Functionalized CaMoO4:Tb3+ Nanophosphors for Dual-Mode pH Sensing Fluorescence Turn-Off-On Sensing Strategy for the Detection of Pb2+ and Metalaxyl Fungicide Using Yellow Fluorescent Carbon Dots From Cordia dichotoma Fruits Intense Red Fluorescence From Surface Traps in BaSO4:V5+, Eu3+ and Its Applications Cyclic Voltammetry Study and Solar Light Assisted Photocatalytic Activity of the CeFeO3/CeO2/Fe2O3 Composite
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