{"title":"伊拉克摩苏尔赛鸽毛滴虫基因序列及系统发育分析","authors":"Mohammed Altememy, M. Saeed","doi":"10.21608/javs.2023.217967.1245","DOIUrl":null,"url":null,"abstract":"This is the first study in Mosul to use genetic sequencing technology to diagnose and document the type, strain, and genotype of Trichomonos gallinae in racing pigeons. It was distinguished by the geographical sequence of Mosul, Iraqi city. Thirty isolates of T. gallinae were chosen from a total of 56 that had been molecularly characterized to examine the extent to which these isolates matched in terms of genetic sequencing. The DNA from the T. gallinae parasite was extracted, and the master mix for all of the polymerization reaction components was created based on the needed quantities of the reaction components for each sample. The acquired sequences were matched to known sequences in databases to determine the trichomonos species parasite and strain responsible for the infection. The results of the DNA sequencing examination revealed that after the polymerase chain reaction amplification products were sent to Macrogen, Korea, to determine the genetic variation of the local strains, the products of the small subunit rRNA-Gene and the reaction product of bp 194 of the Trichomonos gallinae parasite were sent to the National Centre for Biotechnology Information, NCBI Gen Bank, for recording. Based on the small partial ribosomal RNA according to blast in GenBank of the NCBI, the percentage of match in the genetic sequence was 100% between the genetic sequence in Mosul and the genetic sequences in Brazil and Portugal. France, Spain, Iran, Poland, Prague, Hungary, Australia, and the United States are among the countries involved. The Trichomonas gallinae genetic sequence in racing pigeons from Mosul has been discovered for the first time in the GenBank database, revealing a 100% match with other countries' sequences. This discovery reveals the pathogen's worldwide dissemination and interconnection, aiding in the development of effective diagnostic procedures, preventive measures, and targeted treatments. The discovery also emphasises the need for cooperation in monitoring and regulating the spread of the infection, supporting a collaborative strategy against avian diseases.","PeriodicalId":15040,"journal":{"name":"Journal of Applied Veterinary Sciences","volume":null,"pages":null},"PeriodicalIF":0.0000,"publicationDate":"2023-08-15","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Genetic sequence and phylogenetic analysis of Trichomonos gallinae in racing pigeons at Mosul city, Iraq\",\"authors\":\"Mohammed Altememy, M. 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The results of the DNA sequencing examination revealed that after the polymerase chain reaction amplification products were sent to Macrogen, Korea, to determine the genetic variation of the local strains, the products of the small subunit rRNA-Gene and the reaction product of bp 194 of the Trichomonos gallinae parasite were sent to the National Centre for Biotechnology Information, NCBI Gen Bank, for recording. Based on the small partial ribosomal RNA according to blast in GenBank of the NCBI, the percentage of match in the genetic sequence was 100% between the genetic sequence in Mosul and the genetic sequences in Brazil and Portugal. France, Spain, Iran, Poland, Prague, Hungary, Australia, and the United States are among the countries involved. The Trichomonas gallinae genetic sequence in racing pigeons from Mosul has been discovered for the first time in the GenBank database, revealing a 100% match with other countries' sequences. 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引用次数: 0
摘要
这是摩苏尔第一个使用基因测序技术诊断和记录赛鸽中鸡毛滴虫的类型、菌株和基因型的研究。它以伊拉克城市摩苏尔的地理顺序而闻名。从56株鸡鸡绦虫分离株中选择30株进行分子鉴定,以检验这些分离株在基因测序方面的匹配程度。提取鸡绦虫的DNA,并根据每个样品所需的反应组分的数量创建所有聚合反应组分的主混合物。获得的序列与数据库中的已知序列相匹配,以确定引起感染的滴虫种类、寄生虫和菌株。DNA测序结果显示,鸡毛滴虫的聚合酶链反应扩增产物送到韩国Macrogen公司进行遗传变异鉴定后,小亚基rRNA-Gene的产物和bp 194的反应产物送到国立生物技术信息中心(NCBI Gen Bank)进行记录。根据NCBI GenBank中blast的小片段核糖体RNA,摩苏尔的基因序列与巴西和葡萄牙的基因序列的匹配率为100%。涉及的国家包括法国、西班牙、伊朗、波兰、布拉格、匈牙利、澳大利亚和美国。摩苏尔赛鸽的鸡毛滴虫基因序列首次在基因库数据库中被发现,与其他国家的基因序列100%匹配。这一发现揭示了病原体在世界范围内的传播和相互联系,有助于制定有效的诊断程序、预防措施和有针对性的治疗。这一发现还强调了在监测和控制这种感染的传播方面进行合作的必要性,从而支持针对禽类疾病的合作战略。
Genetic sequence and phylogenetic analysis of Trichomonos gallinae in racing pigeons at Mosul city, Iraq
This is the first study in Mosul to use genetic sequencing technology to diagnose and document the type, strain, and genotype of Trichomonos gallinae in racing pigeons. It was distinguished by the geographical sequence of Mosul, Iraqi city. Thirty isolates of T. gallinae were chosen from a total of 56 that had been molecularly characterized to examine the extent to which these isolates matched in terms of genetic sequencing. The DNA from the T. gallinae parasite was extracted, and the master mix for all of the polymerization reaction components was created based on the needed quantities of the reaction components for each sample. The acquired sequences were matched to known sequences in databases to determine the trichomonos species parasite and strain responsible for the infection. The results of the DNA sequencing examination revealed that after the polymerase chain reaction amplification products were sent to Macrogen, Korea, to determine the genetic variation of the local strains, the products of the small subunit rRNA-Gene and the reaction product of bp 194 of the Trichomonos gallinae parasite were sent to the National Centre for Biotechnology Information, NCBI Gen Bank, for recording. Based on the small partial ribosomal RNA according to blast in GenBank of the NCBI, the percentage of match in the genetic sequence was 100% between the genetic sequence in Mosul and the genetic sequences in Brazil and Portugal. France, Spain, Iran, Poland, Prague, Hungary, Australia, and the United States are among the countries involved. The Trichomonas gallinae genetic sequence in racing pigeons from Mosul has been discovered for the first time in the GenBank database, revealing a 100% match with other countries' sequences. This discovery reveals the pathogen's worldwide dissemination and interconnection, aiding in the development of effective diagnostic procedures, preventive measures, and targeted treatments. The discovery also emphasises the need for cooperation in monitoring and regulating the spread of the infection, supporting a collaborative strategy against avian diseases.