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Changes of the Transcriptional Levels of Molecules Associated with Endogenous Antigen Processing and Presentation in Porcine Skin-derived Dendritic Cells Infected with PCV2 in vivo 被引量:1
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作者 李建东 李焕荣 +2 位作者 聂晓华 遇奇 崔德凤 《Agricultural Science & Technology》 CAS 2012年第5期1089-1092,共4页
[Objective] This study aimed to investigate the changes of the transcriptional levels of molecules associated with endogenous antigen processing and presenta- tion in porcine skin-derived dendritic cells infected with... [Objective] This study aimed to investigate the changes of the transcriptional levels of molecules associated with endogenous antigen processing and presenta- tion in porcine skin-derived dendritic cells infected with PCV2 in vivo. [Method] Healthy 40-day-old Landrace piglets were infected with porcine circovirus type 2 (PCV2) and euthanized on the 34, 7rd, 14th, 21st and 35th d post inoculation (DPI). The porcine skin-derived dendritic cells (DCs) were collected to analyze the transcrip- tional levels of molecules (LMP7, UBP, MHC-I, calreticulin) associated with endogenous antigen processing and presentation by using real-time fluorescent quantitative PCR (real-time FQ-PCR). [Result] The results showed that the level of LMP7 mR- NAs was reduced significantly on the 3DPI (P〈0.05); the level of UBP mRNAs was consistently up-regulated, which increased significantly on the 21DPI and 35DPI (P〈 0.05); the level of MHC-I mRNAs was significantly down-regulated on the 7DPI (P〈 0.05); the level of calreticulin mRNAs was up-regulated slightly without significant dif- ference. [Conclusion] PCV2 can inhibit the endogenous antigen processing and presentation ability of porcine skin-derived DCs at early stages of infection. 展开更多
关键词 Porcine circovirus type 2 Skin-derived dendritic cells Endogenous antigen processing and presentation Real-time fluorescent quantitative PCR
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山楂幼树人工促花技术
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作者 孙德高 《山东农机化》 1995年第12期23-23,共1页
人工促花,就是利用机械损伤树皮和利用生长素控制其生长,积蓄养分,为花芽分化创造条件,达到促花的目的。山楂幼树人工促花的技术措施,主要有以下几种: 一、主干环剥。为促进花芽的分化。
关键词 人工促花 山楂幼树 花芽分化 主干环剥 乙烯利 关键技术措施 机械损伤 生长素 环状树皮 木质部
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