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首页> 外文期刊>BMC Genomics >Functional prediction of de novo uni-genes from chicken transcriptomic data following infectious bursal disease virus at 3-days post-infection
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Functional prediction of de novo uni-genes from chicken transcriptomic data following infectious bursal disease virus at 3-days post-infection

机译:在感染后3天内传染性愈伤症病毒患儿鸡转录组数据中鸡转录组数据的功能预测

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摘要

Infectious bursal disease (IBD) is an economically very important issue to the poultry industry and it is one of the major threats to the nation’s food security. The pathogen, a highly pathogenic strain of a very virulent IBD virus causes high mortality and immunosuppression in chickens. The importance of understanding the underlying genes that could combat this disease is now of global interest in order to control future outbreaks. We had looked at identified novel genes that could elucidate the pathogenicity of the virus following infection and at possible disease resistance genes present in chickens. A set of sequences retrieved from IBD virus-infected chickens that did not map to the chicken reference genome were de novo assembled, clustered and analysed. From six inbred chicken lines, we managed to assemble 10,828 uni-transcripts and screened 618 uni-transcripts which were the most significant sequences to known genes, as determined by BLASTX searches. Based on the differentially expressed genes (DEGs) analysis, 12 commonly upregulated and 18 downregulated uni-genes present in all six inbred lines were identified with false discovery rate of q-value ?0.05. Yet, only 9 upregulated and 13 downregulated uni-genes had BLAST hits against the Non-redundant and Swiss-Prot databases. The genome ontology enrichment keywords of these DEGs were associated with immune response, cell signalling and apoptosis. Consequently, the Weighted Gene Correlation Network Analysis R tool was used to predict the functional annotation of the remaining unknown uni-genes with no significant BLAST hits. Interestingly, the functions of the three upregulated uni-genes were predicted to be related to innate immune response, while the five downregulated uni-genes were predicted to be related to cell surface functions. These results further elucidated and supported the current molecular knowledge regarding the pathophysiology of chicken’s bursal infected with IBDV. Our data revealed the commonly up- and downregulated novel uni-genes identified to be immune- and extracellular binding-related, respectively. Besides, these novel findings are valuable contributions in improving the current existing integrative chicken transcriptomics annotation and may pave a path towards the control of viral particles especially towards the suppression of IBD and other infectious diseases in chickens.
机译:感染性Bursal疾病(IBD)对家禽行业是一个经济上非常重要的问题,它是国家粮食安全的主要威胁之一。病原体,一种非常毒性的IBD病毒的高致病菌菌株导致鸡的高死亡率和免疫抑制。理解可以打击这种疾病的潜在基因的重要性现在是为了控制未来爆发的全球利益。我们研究了鉴定的新基因,可以阐明感染后病毒的致病性,并且在鸡中可能存在的抗病性基因。从IBD病毒感染的鸡中检索的一组序列,该鸡没有映射到鸡参考基因组是De Novo组装,聚类和分析。从六条近交鸡排水管,我们设法组装10,828个Uni-agrocripts,并筛选了618个Uni-assicript,其是已知基因最重要的序列,如通过BLASTX搜索所确定的。基于差异表达的基因(DEGS)分析,在所有六种近交系中存在的12个通常上调的和18个下调的UNI-基因以Q值的假发现速率鉴定出所有六条近交系中的下调的单一基因。?0.05。然而,只有9个上调和13个下调的Uni-基因对非冗余和瑞士语文数据库进行了爆炸的命中。这些DEG的基因组本体富集关键词与免疫应答,细胞信号传导和凋亡有关。因此,加权基因相关网络分析R工具用于预测剩余的未知Uni-基因的功能注释,没有明显的爆炸点击。有趣的是,预计三种上调的单基因的功能与先天免疫应答有关,而预计五个下调的单基因与细胞表面功能有关。这些结果进一步阐述并支持了关于鸡氏菌感染IBDV的病理生理学的当前分子知识。我们的数据揭示了鉴定为免疫和细胞外结合相关的常见和下调的新型Uni-基因。此外,这些新的发现是改善现有现有的整合鸡转录组织注释的有价值的贡献,并且可以对抑制IBD和鸡中的其他传染病来铺平病毒颗粒的途径。

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