RPO30 gene

  • 文章类型: Journal Article
    羊痘和山痘是绵羊和山羊的跨界病毒性疾病,给全世界的小农户和边缘农户造成重大的经济损失。包括印度。Capripoxvirus(CaPV)属的成员,即羊痘病毒(SPPV),山羊痘病毒(GTPV)和块状皮肤病病毒(LSDV),在抗原上相似,和物种分化只能用分子方法完成。本研究旨在通过对RNA聚合酶亚基30kDa(RPO30)基因的测序和结构分析,了解印度流行的SPPV和GTPV的分子流行病学和宿主特异性。在2015年至2023年期间,根据全长RPO30基因/蛋白质的序列和结构,对来自印度不同地理区域的绵羊(n=19)和山羊(n=10)的总共29个田间分离株进行了分析。系统发育,所有CaPV分离株都分为三个主要簇:SPPV,GTPV,LSDV多序列比对揭示了一个高度保守的RPO30基因,在所有SPPV分离物中有一段21个核苷酸的缺失。此外,印度SPPV和GTPV分离株的RPO30基因具有几个物种特异性保守的特征残基/基序,可以用作基因分型标记。RPO30蛋白的二级结构分析显示四个α-螺旋,两个循环,三圈,与痘苗病毒(VACV)的E4L蛋白相似。本研究中的所有分离株都表现出印度不同州的宿主偏好。因此,为了保护脆弱的小反刍动物免受痘病毒感染,建议考虑同源疫苗接种策略.
    Sheeppox and goatpox are transboundary viral diseases of sheep and goats that cause significant economic losses to small and marginal farmers worldwide, including India. Members of the genus Capripoxvirus (CaPV), namely Sheeppox virus (SPPV), Goatpox virus (GTPV), and Lumpy skin disease virus (LSDV), are antigenically similar, and species differentiation can only be accomplished using molecular approaches. The present study aimed to understand the molecular epidemiology and host specificity of SPPV and GTPV circulating in India through sequencing and structural analysis of the RNA polymerase subunit-30 kDa (RPO30) gene. A total of 29 field isolates from sheep (n = 19) and goats (n = 10) belonging to different geographical regions of India during the period: Year 2015 to 2023, were analyzed based on the sequence and structure of the full-length RPO30 gene/protein. Phylogenetically, all the CaPV isolates were separated into three major clusters: SPPV, GTPV, and LSDV. Multiple sequence alignment revealed a highly conserved RPO30 gene, with a stretch of 21 nucleotide deletion in all SPPV isolates. Additionally, the RPO30 gene of the Indian SPPV and GTPV isolates possessed several species-specific conserved signature residues/motifs that could act as genotyping markers. Secondary structure analysis of the RPO30 protein showed four α-helices, two loops, and three turns, similar to that of the E4L protein of vaccinia virus (VACV). All the isolates in the present study exhibited host preferences across different states of India. Therefore, in order to protect vulnerable small ruminants from poxviral infections, it is recommended to take into consideration a homologous vaccination strategy.
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  • 文章类型: Journal Article
    块状皮肤病(LSD),由块状皮肤病病毒(LSDV)引起的牛的经济上重要的疾病,几乎是整个非洲的地方病。自2012年以来,LSDV已成为一种重要的流行病病原体,因为它迅速传播到非洲以外的新地理位置,包括中东,东欧,和亚洲。为了评估东非LSDV的遗传多样性,我们在埃塞俄比亚收集的22个档案样本中对LSDV的RPO30和GPCR基因进行了测序和分析,肯尼亚,在LSD在中东出现并入侵欧洲之前,还有苏丹。我们将它们与来自同一地区的公开可用的LSDV序列以及其他地方收集的序列进行了比较。结果表明,本研究中的东非田间分离株彼此非常相似,并且与先前测序的LSDV的RPO30和GPCR基因的田间分离株非常相似。唯一的例外是LSDVEmbu/B338/2011,一种在肯尼亚收集的野外病毒,这显示了LSDVNeethling疫苗和现场分离株之间的混合特征。LSDVEmbu/B338/2011具有在LSDVNeethling和KS-1疫苗中发现的相同的12核苷酸插入。部分EEV糖蛋白的进一步分析,B22R,RNA解旋酶,病毒体核心蛋白,NTPase,和N1R/p28样蛋白基因显示LSDVEmbu/B338/2011不同于先前描述的在GPCR基因中携带12个核苷酸插入的LSDV变体。这些发现强调了持续监测LSDV分离株之间遗传变异的重要性。
    Lumpy skin disease (LSD), an economically significant disease in cattle caused by lumpy skin disease virus (LSDV), is endemic to nearly all of Africa. Since 2012, LSDV has emerged as a significant epizootic pathogen given its rapid spread into new geographical locations outside Africa, including the Middle East, Eastern Europe, and Asia. To assess the genetic diversity of LSDVs in East Africa, we sequenced and analyzed the RPO30 and GPCR genes of LSDV in twenty-two archive samples collected in Ethiopia, Kenya, and Sudan before the appearance of LSD in the Middle East and its incursion into Europe. We compared them to publicly available sequences of LSDVs from the same region and those collected elsewhere. The results showed that the East African field isolates in this study were remarkably similar to each other and to previously sequenced field isolates of LSDV for the RPO30 and GPCR genes. The only exception was LSDV Embu/B338/2011, a field virus collected in Kenya, which displayed mixed features between the LSDV Neethling vaccine and field isolates. LSDV Embu/B338/2011 had the same 12-nucleotide insertion found in LSDV Neethling and KS-1 vaccines. Further analysis of the partial EEV glycoprotein, B22R, RNA helicase, virion core protein, NTPase, and N1R/p28-like protein genes showed that LSDV Embu/B338/2011 differs from previously described LSDV variants carrying the 12-nucleotide insertion in the GPCR gene. These findings highlight the importance of the constant monitoring of genetic variation among LSDV isolates.
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  • 文章类型: Journal Article
    OBJECTIVE: To isolate, identify, and differentiate Capripoxviruses (CaPV) (sheep pox virus and goat pox virus) infections by egg inoculation, transmission electron microscopy (TEM), and 30 kDa RNA polymerase subunit gene-based polymerase chain reaction (PCR) (RPO30) in clinically affected animals in Hawamdia township of Giza Governorate, Egypt.
    METHODS: A total of 37 scab samples were collected from clinically suspected field cases of sheep pox and goat pox. These samples were collected during (2014-2015) during different outbreaks of sheep pox and goat pox from Hawamdia township of Giza Governorate, Egypt. The samples were subjected to egg inoculation, TEM, and (RPO30) gene-based PCR. By using the egg inoculation: Previously prepared 37 scab samples (n=23 sheep and n=14 goats) were inoculated on the chorioallantoic membrane of specific pathogen free (SPF) embryonated chicken eggs (12 days old age). In the presence of the suitable percentage of humidity and candling, the inoculated eggs were incubated at 37°C. By using the TEM: Samples showed positive pock lesions on the chorioallantoic membranes, were fixed in glutaraldehyde, then processed and sectioned for TEM. Using the (RPO30) gene-based PCR assay, 30 of positive samples after egg inoculation (n=19 sheep and n=11 goats) were screened.
    RESULTS: Using the egg inoculation, a characteristic pock lesions for poxviruses were seen in 30/37 (n=19 sheep and n=11 goats) (81.08%). Using the TEM, examination of the positive samples after egg inoculation revealed positive result in 23/30 (n=15 sheep and n=8 goats) (76.66%). The positive results represented by the presence of negatively stained oval-shape virus particles. Using the (RPO30) gene-based PCR assay, out of 30 total of positive samples after egg inoculation (n=19 sheep and n=11 goats) were screened, 27 (90%) samples (n=17 sheep and n=10 goats) were positive. The given band sizes of sheep and goats were 172 and 152 bp, respectively.
    CONCLUSIONS: PCR assay depended on RPO30 gene can be used lonely for the detection, identification, and differentiation of CaPVs. RPO30 gene-based PCR assay in combination with gene sequencing helps in molecular epidemiological studies of CaPV infection.
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