Development of an RFLP-PCR assay for discrimination of three prevalent Old world Leishmania species in canine and human samples

IF 1.8 3区 农林科学 Q1 VETERINARY SCIENCES Research in veterinary science Pub Date : 2025-02-12 DOI:10.1016/j.rvsc.2025.105570
Fatemeh Fazeli , Ehsan Rakhshandehroo , Hassan Sharifiyazdi , Tina Yaghoobpour
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Abstract

Dogs in endemic regions are susceptible to leishmaniasis, a common vector-borne illness. Serological techniques and direct parasitological inquiry have been employed for diagnosis. However, molecular techniques are more sensitive and specific for identifying Leishmania infection in both clinically healthy and diseased dogs. This research aims to develop an approach for molecular identification of the parasite using restriction fragment length polymorphism (RFLP) analysis. Samples of skin and lymph nodes were taken from suspected dogs and humans and smears were prepared. DNA was extracted, and PCR reactions targeting the ribosomal internal transcribed spacer 1 (ITS1) region were used to identify the infection. Also, the PCR products were sequenced to provide control specimens. Before conducting an RFLP analysis, a bioinformatic study was performed on related sequences from the GenBank, as well as some previous data, to verify the results of RsaI and ApoI enzymatic digestion. The ITS1 PCR products were then subjected to digestion by these two enzymes, and the resulted pattern on the agarose gel were compared to those produced by the enzyme HaeIII, commonly used in other studies. Using the RsaI enzyme, fragments of approximately 95 and 146 bp were obtained for L. infantum, while L. tropica and L. major remained uncut. ApoI produced fragments of 101 and 140 bp for L. infantum and 108 and 157 bp for L. major. Based on these results, RFLP analysis with RsaI and ApoI proved to be a reliable tool for detecting different Leishmania species using a defined algorithm.

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开发一种 RFLP-PCR 检测方法,用于鉴别犬和人类样本中三种流行的旧世界利什曼病种
流行地区的狗易患利什曼病,这是一种常见的病媒传播疾病。诊断采用血清学技术和直接寄生虫学询问。然而,分子技术对临床健康犬和患病犬的利什曼原虫感染鉴别更为敏感和特异。本研究旨在建立一种利用限制性片段长度多态性(RFLP)分析对寄生虫进行分子鉴定的方法。从疑似犬和人身上采集皮肤和淋巴结样本,并制作涂片。提取DNA,针对核糖体内转录间隔区1 (ITS1)区域进行PCR反应鉴定感染。同时,对PCR产物进行测序以提供对照标本。在进行RFLP分析之前,对来自GenBank的相关序列以及之前的一些数据进行了生物信息学研究,以验证RsaI和ApoI酶切的结果。然后用这两种酶消化ITS1 PCR产物,并将其在琼脂糖凝胶上的图案与其他研究中常用的HaeIII酶产生的图案进行比较。利用RsaI酶,获得了婴儿乳杆菌约95和146 bp的片段,而热带乳杆菌和主要乳杆菌未被切割。ApoI基因在L. inftum和L. major分别产生101和140 bp和108和157 bp的片段。基于这些结果,RsaI和ApoI的RFLP分析证明是使用定义的算法检测不同利什曼原虫种的可靠工具。
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来源期刊
Research in veterinary science
Research in veterinary science 农林科学-兽医学
CiteScore
4.40
自引率
4.20%
发文量
312
审稿时长
75 days
期刊介绍: Research in Veterinary Science is an International multi-disciplinary journal publishing original articles, reviews and short communications of a high scientific and ethical standard in all aspects of veterinary and biomedical research. The primary aim of the journal is to inform veterinary and biomedical scientists of significant advances in veterinary and related research through prompt publication and dissemination. Secondly, the journal aims to provide a general multi-disciplinary forum for discussion and debate of news and issues concerning veterinary science. Thirdly, to promote the dissemination of knowledge to a broader range of professions, globally. High quality papers on all species of animals are considered, particularly those considered to be of high scientific importance and originality, and with interdisciplinary interest. The journal encourages papers providing results that have clear implications for understanding disease pathogenesis and for the development of control measures or treatments, as well as those dealing with a comparative biomedical approach, which represents a substantial improvement to animal and human health. Studies without a robust scientific hypothesis or that are preliminary, or of weak originality, as well as negative results, are not appropriate for the journal. Furthermore, observational approaches, case studies or field reports lacking an advancement in general knowledge do not fall within the scope of the journal.
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