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淡水蓝藻的病毒感染通过细胞裂解对毒素释放有显著贡献。

Virus Infection of a Freshwater Cyanobacterium Contributes Significantly to the Release of Toxins Through Cell Lysis.

作者信息

Lee Victoria, Meza-Padilla Isaac, Nissimov Jozef I

机构信息

Department of Biology, University of Waterloo, 200 University Ave. West, Waterloo, ON N2L 3G1, Canada.

出版信息

Microorganisms. 2025 Feb 22;13(3):486. doi: 10.3390/microorganisms13030486.

Abstract

Toxic algal-bloom-forming cyanobacteria are a persistent problem globally for many aquatic environments. Their occurrence is attributed to eutrophication and rising temperatures due to climate change. The result of these blooms is often the loss of biodiversity, economic impacts on tourism and fisheries, and risks to human and animal health. Of emerging interest is the poorly understood interplay between viruses and toxic species that form blooms. This is because recent studies have suggested that viruses may exacerbate the harmful effects of these blooms by contributing to the release of toxins into a dissolved phase upon cell lysis. However, to date, there is no experimental evidence that explicitly implicates viruses in microcystin release. Here, we show experimentally that a virus infection of the toxin-producing, harmful, algal-bloom-forming cyanobacterium results in a 4-fold increase in the toxin microcystin-LR two days post-infection (dpi). We also show that the concentrations of microcystin remain high after culture discoloration and host cell lysis. Collectively, our results directly implicate viruses as major contributors to microcystin release from cyanobacteria and emphasize the importance of taking viruses into account in predictive models and in the assessment of water quality and safety.

摘要

形成有害藻华的有毒蓝细菌是全球许多水生环境中长期存在的问题。它们的出现归因于富营养化以及气候变化导致的气温上升。这些藻华的后果通常是生物多样性丧失、对旅游业和渔业造成经济影响以及对人类和动物健康构成风险。人们新关注到的是形成藻华的病毒与有毒物种之间鲜为人知的相互作用。这是因为最近的研究表明,病毒可能通过在细胞裂解时促使毒素释放到溶解相中而加剧这些藻华的有害影响。然而,迄今为止,尚无实验证据明确表明病毒与微囊藻毒素释放有关。在此,我们通过实验表明,对产生毒素的、有害的、形成藻华的蓝细菌进行病毒感染后,感染后两天(dpi)毒素微囊藻毒素-LR增加了4倍。我们还表明,培养物变色和宿主细胞裂解后,微囊藻毒素的浓度仍然很高。总体而言,我们的结果直接表明病毒是蓝细菌释放微囊藻毒素的主要因素,并强调在预测模型以及水质和安全评估中考虑病毒的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/071d/11944701/f5f4a6525d22/microorganisms-13-00486-g001.jpg

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