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利用单细胞光学方法研究紫外线对单个家蚕微孢子虫孢子的影响的新见解。

New insights into the effects of UV light on individual Nosema bombycis spores, as determined using single-cell optical approaches.

机构信息

Institute of Eco-Environmental Research, Guangxi Academy of Sciences, Nanning, Guangxi, China.

Guangxi Vocational & Technical College, Nanning, Guangxi, China.

出版信息

Photochem Photobiol. 2024 May-Jun;100(3):596-603. doi: 10.1111/php.13858. Epub 2023 Sep 12.

Abstract

Nosema bombycis (Nb) is a pathogen causing pebrine in sericulture. Ultraviolet (UV) light exposure is a common physical disinfection method, but the mechanisms underlying UV-based disinfection have only been studied at the population level. In this study, changes in and germination of UV-irradiated spores were observed using Raman tweezers and phase-contrast imaging to evaluate the effects of UV radiation on Nb spores at the single-cell level. We found that irradiation caused the complete leakage of trehalose from individual spores. We also found that more spores leaked as the UV dose increased. There was no significant loss of intracellular biomacromolecules and no marked changes in the peaks associated with protein secondary structures. Low-dose radiation promoted spore germination and high-dose radiation decreased the germination rate, while the germination time did not undergo significant alterations. These results suggest that UV radiation disrupts the permeability of the inner membrane and alters the spore wall, thereby affecting the ability of the spore to sense and respond to extracellular stimuli, which further triggers germination and reduces or stops spore germination. This study provides new insights into the molecular mechanisms underlying conventional disinfection measures on microsporidian spores.

摘要

家蚕微孢子虫(Nb)是一种引起蚕业微粒子病的病原体。紫外线(UV)照射是一种常见的物理消毒方法,但基于 UV 的消毒机制仅在群体水平上进行了研究。在这项研究中,使用拉曼镊子和相差成像观察了 UV 照射孢子的变化和萌发,以评估 UV 辐射对 Nb 孢子在单细胞水平上的影响。我们发现,照射导致海藻糖从单个孢子中完全泄漏。我们还发现,随着 UV 剂量的增加,更多的孢子泄漏。细胞内生物大分子没有明显损失,与蛋白质二级结构相关的峰也没有明显变化。低剂量辐射促进孢子萌发,高剂量辐射降低萌发率,而萌发时间没有明显变化。这些结果表明,UV 辐射破坏了内膜的通透性并改变了孢子壁,从而影响了孢子感知和响应细胞外刺激的能力,进而引发萌发并减少或停止孢子萌发。这项研究为传统消毒措施对微孢子的分子机制提供了新的见解。

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