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通过光激活形成锌-半胱氨酸复合物增强对紫外线C的抗性。

Enhanced UV-C resistance through light-activated zinc-cysteine complex formation.

作者信息

Fuleky Martin, Molnarova Katarina, Novak Jan, Vodova Milada, Lenza Libor, Nejdl Lukas

机构信息

Department of Chemistry and Biochemistry, Mendel University in Brno, Zemědělská 1665/1, 613 00, Brno, Czech Republic.

Department of Molecular Biology and Radiobiology, Mendel University in Brno, Zemědělská 1665/1, 613 00, Brno, Czech Republic.

出版信息

Photochem Photobiol Sci. 2025 May 25. doi: 10.1007/s43630-025-00740-9.

Abstract

Ultraviolet (UV) radiation is a significant environmental stressor that affects the growth, physiology, and biochemical integrity of various organisms. This study investigates the potential protective effects of a zinc-cysteine (Zn-Cys) complex against UV-C radiation, with a focus on its impact on selected microalgae (Coccomyxa peltigerae and Parachlorella kessleri) and maize (Zea mays L.). We demonstrate that exposure of the Zn-Cys complex to UV-C (254 nm) results in the formation of fluorescent photoproducts, which exhibit UV-protective properties. The study reveals that Zn-Cys significantly mitigates UV-induced stress. In both microalgae species, the Zn-Cys complex enhanced growth even under UV exposure, with the 20% concentration showing the most robust protective effects. Further hyperspectral imaging confirmed the protective mechanism of Zn-Cys by monitoring changes in light reflectance in Parachlorella kessleri, indicating reduced photosynthetic efficiency and structural alterations induced by UV exposure, while Zn-Cys significantly mitigated these effects. In addition, in maize plants (Zea mays L.), Zn-Cys treatment preserved chlorophyll content and reduced polyphenol accumulation, indicating reduced oxidative stress. These findings highlight the potential of the Zn-Cys complex as a sustainable and cost-effective strategy for UV protection in both terrestrial and extraterrestrial agriculture, advancing our understanding of plant adaptation to extreme environments.

摘要

紫外线(UV)辐射是一种重要的环境应激源,会影响各种生物体的生长、生理和生化完整性。本研究调查了锌-半胱氨酸(Zn-Cys)复合物对UV-C辐射的潜在保护作用,重点关注其对选定微藻(盾形球囊藻和凯氏拟小球藻)和玉米(玉米)的影响。我们证明,将Zn-Cys复合物暴露于UV-C(254 nm)会导致形成具有紫外线防护特性的荧光光产物。研究表明,Zn-Cys能显著减轻紫外线诱导的应激。在这两种微藻中,即使在紫外线照射下,Zn-Cys复合物也能促进生长,20%浓度的复合物显示出最强的保护作用。进一步的高光谱成像通过监测凯氏拟小球藻光反射率的变化,证实了Zn-Cys的保护机制,表明紫外线照射会导致光合效率降低和结构改变,而Zn-Cys能显著减轻这些影响。此外,在玉米植株(玉米)中,Zn-Cys处理可保持叶绿素含量并减少多酚积累,表明氧化应激降低。这些发现突出了Zn-Cys复合物作为陆地和外星农业中一种可持续且经济高效的紫外线防护策略的潜力,增进了我们对植物适应极端环境的理解。

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