首页> 外文期刊>Marine biotechnology >Long Non-Coding RNAs (lncRNAs) of Sea Cucumber: Large-Scale Prediction, Expression Profiling, Non-Coding Network Construction, and lncRNA-microRNA-Gene Interaction Analysis of lncRNAs in Apostichopus japonicus and Holothuria glaberrima During LPS Challenge and Radial Organ Complex Regeneration
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Long Non-Coding RNAs (lncRNAs) of Sea Cucumber: Large-Scale Prediction, Expression Profiling, Non-Coding Network Construction, and lncRNA-microRNA-Gene Interaction Analysis of lncRNAs in Apostichopus japonicus and Holothuria glaberrima During LPS Challenge and Radial Organ Complex Regeneration

机译:海参的长非编码RNA(lncRNA):在LPS攻击和Rad器官复杂再生过程中,刺参和中华绒螯蟹中lncRNA的大规模预测,表达谱分析,非编码网络构建和lncRNA-microRNA基因相互作用分析。

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摘要

Long non-coding RNA (lncRNA) structurally resembles mRNA but cannot be translated into protein. Although the systematic identification and characterization of lncRNAs have been increasingly reported in model species, information concerning non-model species is still lacking. Here, we report the first systematic identification and characterization of lncRNAs in two sea cucumber species: (1) Apostichopus japonicus during lipopolysaccharide (LPS) challenge and in heathy tissues and (2) Holothuria glaberrima during radial organ complex regeneration, using RNA-seq datasets and bioinformatics analysis. We identified A. japonicus and H. glaberrima lncRNAs that were differentially expressed during LPS challenge and radial organ complex regeneration, respectively. Notably, the predicted lncRNA-microRNA-gene trinities revealed that, in addition to targeting protein-coding transcripts, miRNAs might also target lncRNAs, thereby participating in a potential novel layer of regulatory interactions among non-coding RNA classes in echinoderms. Furthermore, the constructed coding-non-coding network implied the potential involvement of lncRNA-gene interactions during the regulation of several important genes (e.g., Toll-like receptor 1 [TLR1] and transglutaminase-1 [TGM1]) in response to LPS challenge and radial organ complex regeneration in sea cucumbers. Overall, this pioneer systematic identification, annotation, and characterization of lncRNAs in echinoderm pave the way for similar studies and future genetic, genomic, and evolutionary research in non-model species.
机译:长的非编码RNA(lncRNA)在结构上类似于mRNA,但不能翻译成蛋白质。尽管在模型物种中越来越多地报道了lncRNA的系统鉴定和表征,但仍缺乏有关非模型物种的信息。在这里,我们报告了两种海参物种中的lncRNA的第一个系统鉴定和表征:(1)使用RNA-seq数据集,在脂多糖(LPS)攻击和健康组织中的刺参,以及(2)在organ骨器官复合体再生过程中的剑兰(Hoholthuria glaberrima)和生物信息学分析。我们确定了LPS挑战和radial器官复杂再生期间差异表达的日本刺参和H. glaberrima lncRNAs。值得注意的是,预测的lncRNA-microRNA-基因三位一体表明,除了靶向蛋白质编码转录本以外,miRNA还可能靶向lncRNA,从而参与了棘皮动物非编码RNA类之间潜在的新型调控相互作用。此外,构建的编码-非编码网络暗示了在响应LPS攻击的几个重要基因(例如,Toll样受体1 [TLR1]和转谷氨酰胺酶-1 [TGM1])调控过程中lncRNA基因相互作用的潜在参与。和radial骨器官在海参中的再生。总体而言,这一先驱者在棘皮动物中对lncRNA的系统鉴定,注释和表征为类似研究以及未来非模型物种的遗传,基因组和进化研究铺平了道路。

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