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爱德华氏菌减毒疫苗免疫虹鳜后全基因表达谱分析

Global gene expression in channel catfish after vaccination with an attenuated Edwardsiella ictaluri.

机构信息

Aquatic Animal Health Research Unit, USDA-ARS, 990 Wire Road, Auburn, AL 36832, USA.

出版信息

Fish Shellfish Immunol. 2012 Apr;32(4):524-33. doi: 10.1016/j.fsi.2011.12.013. Epub 2012 Jan 8.

DOI:10.1016/j.fsi.2011.12.013
PMID:22245589
Abstract

To understand the global gene expression in channel catfish after immersion vaccination with an attenuated Edwardsiella ictaluri (AquaVac-ESC™), microarray analysis of 65,182 UniGene transcripts was performed. With a filter of false-discovery rate less than 0.05 and fold change greater than 2, a total of 52 unique transcripts were found to be upregulated in vaccinated fish at 48 h post vaccination, whereas a total of 129 were downregulated. The 52 upregulated transcripts represent genes with putative functions in the following seven major categories: (1) hypothetical (25%); (2) novel (23%); (3) immune response (17%); (4) signal transduction (15%); (5) cell structure (8%); (6) metabolism (4%); and (7) others (8%). The 129 downregulated transcripts represent genes with putative functions in the following ten major categories: (1) novel (25%); (2) immune response (23%); (3) hypothetical (12%); (4) metabolism (10%); (5) signal transduction (7%); (6) protein synthesis (6.2%); (7) cell structure (5%); (8) apoptosis (3%); (9) transcription/translation (2%); and (10) others (6%). Microarray analysis revealed that apolipoprotein A-I was upregulated the most (8.5 fold, P = 0.011) at 48 h post vaccination whereas a novel protein (accession no. CV995854) was downregulated the most (342 fold, P = 0.001). Differential regulation of several randomly selected transcripts in vaccinated fish was also validated by quantitative PCR. Our results suggest that these differentially regulated genes elicited by the vaccination might play important roles in the protection of channel catfish against E. ictaluri.

摘要

为了了解经减毒爱德华氏菌(AquaVac-ESC™)浸泡免疫接种后斑点叉尾鮰的全球基因表达情况,对 65182 个 UniGene 转录本进行了微阵列分析。使用错误发现率小于 0.05 和倍数变化大于 2 的筛选标准,共发现 52 个独特的转录本在接种后 48 小时的疫苗接种鱼中上调,而总共下调了 129 个。上调的 52 个转录本代表了具有以下七个主要类别中假定功能的基因:(1)假设(25%);(2)新(23%);(3)免疫反应(17%);(4)信号转导(15%);(5)细胞结构(8%);(6)代谢(4%);和(7)其他(8%)。下调的 129 个转录本代表了具有以下十个主要类别中假定功能的基因:(1)新(25%);(2)免疫反应(23%);(3)假设(12%);(4)代谢(10%);(5)信号转导(7%);(6)蛋白质合成(6.2%);(7)细胞结构(5%);(8)细胞凋亡(3%);(9)转录/翻译(2%);和(10)其他(6%)。微阵列分析显示,载脂蛋白 A-I 在接种后 48 小时上调最多(8.5 倍,P=0.011),而一种新型蛋白质(注册号 CV995854)下调最多(342 倍,P=0.001)。通过定量 PCR 也验证了疫苗接种鱼中随机选择的几个转录本的差异调节。我们的研究结果表明,这些由疫苗接种引起的差异调节基因可能在保护斑点叉尾鮰抵抗爱德华氏菌方面发挥重要作用。

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