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水螅是否与光合自养藻类的共生关系为其提供了一种进化优势,使其能够抵抗环境胁迫物的细胞毒性或遗传毒性作用模式对 DNA 的损伤?

Does the Symbiotic Relationship Between Hydra Viridissima and Photoautotrophic Alga Provide an Evolutionary Advantage in Protecting DNA against Damage by the Cytotoxic or Genotoxic Mode of Action of Environmental Stressors?

机构信息

Institute for Medical Research and Occupational Health, Mutagenesis Unit, Ksaverska 2, Zagreb, Croatia.

Department of Biology, Faculty of Science, Division of Zoology, University of Zagreb, Rooseveltov trg 6, Zagreb, Croatia.

出版信息

Bull Environ Contam Toxicol. 2024 Apr 2;112(4):56. doi: 10.1007/s00128-024-03884-z.

Abstract

The aim of this paper was to evaluate whether symbiotic cooperation between green hydra (Hydra viridissima) and photoautotrophic alga gives higher resistance of the preservation of DNA integrity compared to brown hydra (Hydra oligactis). Norflurazon concentrations were 0.061 or 0.61 mg/L and UV-B light 254 nm, 0.023mWcm applied separately or simultaneously. By alkaline comet assay primary DNA damage was assessed and cytotoxicity by fluorescent staining. Norflurazon at 0.61 mg L significantly increased DNA damage in brown hydras compared to the control (6.17 ± 0.6 μm, 5.2 ± 1.7% vs. 2.9 ± 0.2 μm, 1.2 ± 0.2%). Cytotoxicity was significantly elevated, being higher in brown hydras (25.7 ± 3.5% vs. 8.2 ± 0.2%). UV-B irradiation induced significant DNA damage in brown hydras (13.5 ± 1.0 μm, 4.1 ± 1.0%). Simultaneous exposure to UV-B and norflurazon led to a synergistic DNA damaging. The frequency of cytotoxicity and hedgehog nucleoids was more pronounced in brown (78.3 ± 9.4%; 56.4 ± 6.0%) than in green hydras (34.7 ± 2.5%; 24.2 ± 0.6%). Evolutionary established symbiotic cooperation proved to provide resistance against cyto/genotoxicity.

摘要

本文旨在评估绿色水螅(Hydra viridissima)和光合藻类之间的共生合作是否能比棕色水螅(Hydra oligactis)提供更高的 DNA 完整性保存抗性。分别或同时应用诺氟唑浓度 0.061 或 0.61mg/L 和 254nmUV-B 光,0.023mWcm。通过碱性彗星试验评估原发性 DNA 损伤,并用荧光染色评估细胞毒性。与对照组相比,浓度为 0.61mg/L 的诺氟唑显著增加了棕色水螅的 DNA 损伤(6.17±0.6μm,5.2±1.7%比 2.9±0.2μm,1.2±0.2%)。细胞毒性显著升高,棕色水螅的毒性更高(25.7±3.5%比 8.2±0.2%)。UV-B 照射在棕色水螅中诱导了显著的 DNA 损伤(13.5±1.0μm,4.1±1.0%)。UV-B 和诺氟唑同时暴露导致协同的 DNA 损伤。细胞毒性和 Hedgehog 核体的频率在棕色水螅中更为明显(78.3±9.4%;56.4±6.0%)比在绿色水螅中更为明显(34.7±2.5%;24.2±0.6%)。进化上建立的共生合作被证明能提供对细胞毒性/遗传毒性的抗性。

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