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Differential expression of long non-coding RNAs in three genetic lines of rainbow trout in response to infection with Flavobacterium psychrophilum

机译:长虹鳟鱼三个遗传系中长非编码RNA响应精神病杆菌感染的差异表达

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摘要

Bacterial cold-water disease caused by Flavobacterium psychrophilum is one of the major causes of mortality of salmonids. Three genetic lines of rainbow trout designated as ARS-Fp-R (resistant), ARS-Fp-C (control) and ARS-Fp-S (susceptible) have significant differences in survival rate following F. psychrophilum infection. Previous study identified transcriptome differences of immune-relevant protein-coding genes at basal and post infection levels among these genetic lines. Using RNA-Seq approach, we quantified differentially expressed (DE) long non-coding RNAs (lncRNAs) in response to F. psychrophilum challenge in these genetic lines. Pairwise comparison between genetic lines and different infection statuses identified 556 DE lncRNAs. A positive correlation existed between the number of the differentially regulated lncRNAs and that of the protein-coding genes. Several lncRNAs showed strong positive and negative expression correlation with their overlapped, neighboring and distant immune related protein-coding genes including complement components, cytokines, chemokines and several signaling molecules involved in immunity. The correlated expressions and genome-wide co-localization suggested that some lncRNAs may be involved in regulating immune-relevant protein-coding genes. This study provides the first evidence of lncRNA-mediated regulation of the anti-bacterial immune response in a commercially important aquaculture species and will likely help developing new genetic markers for rainbow trout disease resistance.
机译:嗜冷黄杆菌引起的细菌冷水病是鲑鱼死亡的主要原因之一。虹鳟鱼的三个遗传系分别称为ARS-Fp-R(抗药性),ARS-Fp-C(对照)和ARS-Fp-S(易感性),在嗜热链球菌感染后存活率有显着差异。先前的研究确定了在这些遗传系中,基础和感染后免疫相关蛋白编码基因的转录组差异。使用RNA序列方法,我们量化差异表达(DE)的长非编码RNA(lncRNA),以响应这些遗传系中嗜热镰刀菌的挑战。遗传系和不同感染状态之间的成对比较可鉴定出556种DE lncRNA。差异调节的lncRNA的数量与蛋白质编码基因的数量之间存在正相关。几种lncRNA与它们重叠,相邻和远距离的免疫相关蛋白编码基因(包括补体成分,细胞因子,趋化因子和参与免疫的几种信号分子)表现出强烈的正向和负向表达相关性。相关的表达和全基因组共定位表明,一些lncRNA可能参与调节免疫相关的蛋白质编码基因。这项研究提供了在商业上重要的水产养殖物种中,lncRNA介导的抗细菌免疫反应调控的第一个证据,并且可能有助于开发针对虹鳟鱼疾病抗性的新遗传标记。

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