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樟树银纳米颗粒对蜜蜂幼虫美洲幼虫腐臭病的抗菌活性及作为继发感染新菌株的研究

Antimicrobial activity of camphor tree silver nano-particles against foulbrood diseases and finding out new strain of as a secondary infection on honeybee larvae.

作者信息

Masry Saad Hamdy Daif, Taha Tarek Hosny, Botros William A, Mahfouz Hatem, Al-Kahtani Saad Naser, Ansari Mohammad Javed, Hafez Elsayed Elsayed

机构信息

Department of Plant Protection and Molecular Diagnosis, Arid Lands Cultivation Research Institute, City of Scientific Research and Technological Applications, Alexandria (SRTA-City), New Borg El-Arab City, P.O. Box: 21934, Alexandria, Egypt.

Abu Dhabi Agriculture and Food Safety Authority, Al Ain, United Arab Emirates.

出版信息

Saudi J Biol Sci. 2021 Apr;28(4):2067-2075. doi: 10.1016/j.sjbs.2021.02.038. Epub 2021 Feb 17.

Abstract

American foulbrood (AFB) and European foulbrood (EFB) are the two major bacterial diseases affecting honeybees, leading to a decrease in viability of the hive, decreasing honey production, and resulting in significant economic losses to beekeepers. Due to the inefficiency and/or low efficacy of some antibiotics, researches with nanotechnology represent, possibly, new therapeutic strategies. Nanostructure drugs have presented some advantagesover the conventional medicines, such as slow, gradual and controlled release, increased bioavailability, and reduced side-effects. In this study, different infected larvae were collected from two apiaries; the combs that had symptoms of American and European foulbrood were isolated. antimicrobial activity of camphor tree silver nano-particles against foulbrood diseases were characterized using UV-Vis spectrophotometry and scanning electron microscope (SEM) that proves the formation of silver nanoparticles with size range 160-660 nm. The antimicrobial activity of the silver nanoparticles was tested using agar diffusion assay and proved their ability to effectively cease the pathogenic bacterial growth in both AFB and EFB. DGGE-PCR technique has been applied for the identification of un-common bacterial infections honeybees depending on 16S rRNA amplification from their total extracted DNA and has been identified as (TES), deposited in GenBank with a new accession number (MT240613). The results were confirmed strain has been detected by DGGE-PCR analysis causing uniquely infected brood that was attacked by the American Foulbrood It could be concluded that greenly synthesized silver nanoparticles is projected to be used as effective treatment for honeybee bacterial diseases. These material need more investigations under field conditions and study the possibility of its residues in honeybee products such as honey, and beeswax.

摘要

美洲幼虫腐臭病(AFB)和欧洲幼虫腐臭病(EFB)是影响蜜蜂的两种主要细菌性疾病,会导致蜂群活力下降、蜂蜜产量降低,并给养蜂人造成重大经济损失。由于一些抗生素效率低下和/或疗效不佳,纳米技术研究可能代表了新的治疗策略。纳米结构药物相对于传统药物具有一些优势,如缓慢、逐渐和可控释放、提高生物利用度以及减少副作用。在本研究中,从两个养蜂场收集了不同的感染幼虫;分离出有美洲和欧洲幼虫腐臭病症状的蜂巢。利用紫外可见分光光度法和扫描电子显微镜(SEM)对樟树银纳米颗粒对幼虫腐臭病的抗菌活性进行了表征,证明形成了尺寸范围为160 - 660 nm的银纳米颗粒。使用琼脂扩散试验测试了银纳米颗粒的抗菌活性,证明它们能够有效抑制AFB和EFB中致病细菌的生长。DGGE - PCR技术已应用于根据从蜜蜂总提取DNA中扩增的16S rRNA来鉴定蜜蜂不常见的细菌感染,并已鉴定出一种菌株(TES),其保存在GenBank中,登录号为新的(MT240613)。DGGE - PCR分析检测到的结果证实该菌株导致了被美洲幼虫腐臭病独特感染的幼虫。可以得出结论,绿色合成的银纳米颗粒预计可作为蜜蜂细菌性疾病的有效治疗方法。这些材料需要在田间条件下进行更多研究,并研究其在蜂蜜和蜂蜡等蜜蜂产品中残留的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f139/8071921/6cac6fc9fe9c/gr1.jpg

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