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环形泰勒虫感染对单核细胞中NOD样受体信号通路相关基因转录的影响

李四通 罗建勋 关贵全 刘军龙 刘爱红 李有全 赵洪喜 赵帅阳 何欣 陈银银 殷宏

中国兽医科学2017,Vol.38Issue(8):964-968,5.
中国兽医科学2017,Vol.38Issue(8):964-968,5.DOI:10.16656/j.issn.1673-4696.2017.08.005

环形泰勒虫感染对单核细胞中NOD样受体信号通路相关基因转录的影响

Theileria annulata-infected effection of the transcription levels of 10 genes associated with NOD-like receptors signal pathway

李四通 1罗建勋 1关贵全 1刘军龙 1刘爱红 1李有全 1赵洪喜 1赵帅阳 2何欣 1陈银银 1殷宏1

作者信息

  • 1. 中国农业科学院兰州兽医研究所家畜疫病病原生物学国家重点实验室甘肃省动物寄生虫病重点实验室,甘肃兰州730046
  • 2. 宁夏大学农学院,宁夏银川750021
  • 折叠

摘要

Abstract

To detect 10 genes(NOD1,NOD2,NLRP1,NLRP3,NLRC4,NAIP,RIP2,CASPI,IL-18 and IL-1β) in bovine NOD-like receptor signal pathway and quantify those gene's transcription levels in the F10 TaNM cells infected with Theileria annulata,the specifical primers of those genes were designed according the sequences which were reported in GenBank.The reaction conditions of real-time PCRs were optimized.The specificity,sensitivity and repeatability of the i0 real-time quantitative PCRs were evaluatied.The results showed that the i0 real-time PCR methods had a signal peak in a dissociation curve,respectivelyed,and their sensitivity were from 1 to i00 copies/μL.It also indicated that those methods were good in specificity and sensitivity.The transcription levels of NOD1,NOD2,NLRP1,NLRP3,NLRC4,NAIP,RIP2,CASP1 and IL-18 in the F10 TaNM cells were lower than that of control group(peripheral blood lymphocytes) NAIP(P<0.01),but the transcription levels of IL-1βwas sensitively higher than that of control group(P<0.01).This study laid the foundation for further researches about effection of host immunity function by Theileria annulata infection.

关键词

NLRs/real-time PCR/环形泰勒虫/转录水平

Key words

NLRs/real-time PCR/Theileria annulata/transcription levels

分类

农业科技

引用本文复制引用

李四通,罗建勋,关贵全,刘军龙,刘爱红,李有全,赵洪喜,赵帅阳,何欣,陈银银,殷宏..环形泰勒虫感染对单核细胞中NOD样受体信号通路相关基因转录的影响[J].中国兽医科学,2017,38(8):964-968,5.

基金项目

国家重点基础研究发展计划(973)项目(2015CB150300) (973)

国家自然科学基金项目(31402189、31072130、31372432) (31402189、31072130、31372432)

农业科技创新工程(ASTIP)国家肉牛牦牛产业技术体系项目(NBCIS CARS-38) (ASTIP)

中国兽医科学

OA北大核心CSCDCSTPCD

1673-4696

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