一种测定柔嫩艾美耳球虫卵囊活力的分子测定方法的建立。

IF 1.8 3区 医学 Q2 PARASITOLOGY Parasitology Research Pub Date : 2024-12-28 DOI:10.1007/s00436-024-08429-1
P S Kruth, J Whale, A N Léveillé, J Brisbin, J R Barta
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引用次数: 0

摘要

球虫病是由艾美耳球虫属的顶复体寄生虫引起的,它感染肠道上皮细胞,引起腹泻,并对家禽业的生产产生负面影响。艾美耳球虫感染的自限性和高度免疫原性使活疫苗成为球虫病控制的有效手段。对于疫苗的功效来说,最重要的是能够提供精确数量的活卵囊。不幸的是,目前还没有快速准确的测定卵囊活力的方法。本研究提出了一种基于qpcr的方法,用于评估泰泽氏艾美耳球虫1929年卵囊活力。转录组测序支持了三个活力测定目标转录物的鉴定,这些转录物在热刺激下丰度显著增加。通过qPCR测量卵囊中靶丰度在热刺激下的变化,范围从高活力到非感染性。遗漏DNase处理支持在RNA样本中使用背景DNA来标准化寄生虫数量和卵囊破坏效率,而外源RNA的峰值支持标准化RNA恢复和逆转录效率的变化。通过活感染试验证实,该检测结果与卵囊活力有很强的相关性,对编码部分翻译控制的肿瘤蛋白XM_013379639.1的转录物具有最高的预测价值。该方法可在数小时内提供结果,可减少对卵囊活力检测中耗时且昂贵的活感染试验的依赖,并可提高球虫病疫苗的可及性和有效性。未来的迭代可能有助于多价疫苗的质量控制和环境监测。
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Development of a molecular assay for the determination of Eimeria tenella oocyst viability.

Coccidiosis is caused by apicomplexan parasites of the genus Eimeria, which infect epithelial cells of the intestinal tract causing diarrhea and negatively impacting production in the poultry industry. The self-limiting and highly immunogenic nature of infection by Eimeria spp. make live vaccination an effective means of coccidiosis control. Paramount to vaccine efficacy is the ability to administer precise numbers of viable oocysts. Unfortunately, no rapid and accurate method for determination of oocyst viability is available presently. This study presents the development of a qPCR-based assay for assessment of Eimeria tenella Tyzzer, 1929 oocyst viability. Transcriptome sequencing supported identification of three viability assay target transcripts based on significant increase in abundance with heat-stimulation. Measurement of shifts in target abundances in response to heat stimulation in oocysts, that ranged from high viability to non-infectious, was achieved via qPCR. Omission of DNase treatment supported use of background DNA in RNA samples for normalization for parasite numbers and oocyst disruption efficiency, while spike in of exogenous RNA supported normalization for variations in RNA recovery and reverse transcription efficiency. The assay demonstrated strong correlation with oocyst viability as confirmed through live infection trials, showing the highest predictive value for a transcript encoding a putative partial translationally controlled tumor protein, XM_013379639.1. This assay provides results in hours and could reduce the reliance on time-consuming and expensive live-infection trials in oocyst viability testing and could improve the accessibility and efficacy of coccidiosis vaccines. Future iterations may facilitate multivalent vaccine quality control and environmental monitoring.

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来源期刊
Parasitology Research
Parasitology Research 医学-寄生虫学
CiteScore
4.10
自引率
5.00%
发文量
346
审稿时长
6 months
期刊介绍: The journal Parasitology Research covers the latest developments in parasitology across a variety of disciplines, including biology, medicine and veterinary medicine. Among many topics discussed are chemotherapy and control of parasitic disease, and the relationship of host and parasite. Other coverage includes: Protozoology, Helminthology, Entomology; Morphology (incl. Pathomorphology, Ultrastructure); Biochemistry, Physiology including Pathophysiology; Parasite-Host-Relationships including Immunology and Host Specificity; life history, ecology and epidemiology; and Diagnosis, Chemotherapy and Control of Parasitic Diseases.
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