Suppr超能文献

在人工感染工蜂中对(微孢子虫纲: Nosematidae科)进行实验室培养

Laboratory Cultivation of (Microsporidia: Nosematidae) in Artificially Infected Worker Bees.

作者信息

Ignatieva Anastasia N, Timofeev Sergey A, Tokarev Yuri S, Dolgikh Viacheslav V

机构信息

All-Russian Institute of Plant Protection, Podbelskogo 3, 196608 St. Petersburg, Russia.

出版信息

Insects. 2022 Nov 28;13(12):1092. doi: 10.3390/insects13121092.

Abstract

Nosemosis type C is a dangerous and widespread disease of the adult European honey bee and is caused by the spore-forming intracellular parasite . The search for new ways of therapy for this disease is complicated due to the seasonal availability of -infected insects as well as the lack of a developed system for the pathogen's cultivation. By carrying out trials which used different infectious dosages of the parasite, spore storage protocols, host age, and incubation temperatures, we present a simple, safe, and efficient method of propagation in artificially infected worker bees in the laboratory. The method is based on feeding the groups of adult worker bees with microsporidian spores and insect maintenance in plastic bottles at 33 °C. The source of the spores originated from the cadavers of infected insects from the previous round of cultivation, in which the infective spores persist for up to six months. An analysis of five independent cultivation rounds involving more than 2500 bees showed that the proposed protocol exploiting the dosage of one million spores per bee yielded over 60 million spores per bee, and most of the spore samples can be isolated from living insects.

摘要

C型微孢子虫病是成年欧洲蜜蜂的一种危险且广泛传播的疾病,由形成孢子的细胞内寄生虫引起。由于受感染昆虫的季节性可得性以及缺乏完善的病原体培养系统,寻找这种疾病的新治疗方法变得复杂。通过进行使用不同感染剂量的寄生虫、孢子储存方案、宿主年龄和孵化温度的试验,我们提出了一种在实验室人工感染工蜂中进行繁殖的简单、安全且高效的方法。该方法基于用微孢子虫孢子喂养成年工蜂群体,并将昆虫置于塑料瓶中在33°C下饲养。孢子来源是上一轮培养中受感染昆虫的尸体,其中感染性孢子可存活长达六个月。对涉及超过2500只蜜蜂的五个独立培养轮次的分析表明,所提议的每只蜜蜂使用100万个孢子剂量的方案,每只蜜蜂可产生超过6000万个孢子,并且大多数孢子样本可从活昆虫中分离出来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f32f/9784591/dcf07b6ab3fe/insects-13-01092-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验