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Identification and expression analysis of long noncoding RNAs in embryogenesis and larval metamorphosis of Ciona savignyi

机译:枸杞胚胎发生中长度非划分RNA的鉴定及表达分析,CIONA Savignyi

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摘要

Long noncoding RNAs (lncRNAs) play important roles in diverse developmental and pathological processes through chromatin reprogramming, cis regulation and posttranscriptional modification. They have been extensively studied in both vertebrates and invertebrates. However, the information of lncRNAs in urochordate is still lacking. In this study, we used the RNA-Seq data from three developmental stages (18, 21 and 42 hours post fertilization, hpf) of embryos and larvae in Ciona savignyi to identify candidate lncRNAs and analyze their expression profiles. A total of 29,944 unigenes were predicted as lncRNAs, five of which had hits with lncRNAs in NONCODE database. The acquired lncRNAs had an average length of 466 nt. The peaks of length, GC content and minimum free energy of the lncRNAs were significantly lower than that of the message RNAs (mRNAs). The average expression levels of lncRNAs were also lower than those of mRNAs. Among the three developmental stages, highly expressed lncRNAs concentrated in 18 hpf embryos. While, for those lncRNAs specifically up regulated in 21 hpf embryos, their co-expressed mRNAs were enriched in GO terms of membrane, indicating these lncRNAs are involved in the regulation of luminal membrane biogenesis, and extracellular matrix secretion through membrane localized proteins during Ciona notochord tubulogenesis. The lncRNAs in 42 hpf larvae were distinct from those in 18 and 21 hpf embryos. This result is associated with the fact that swimming larvae are transiting into metamorphic juveniles at this stage, indicating lncRNAs are involved in the regulation of larval metamorphosis. Overall, our study identified a large number of lncRNAs in C. savignyi and revealed their expression characteristics and dynamics during Ciona embryogenesis and larval metamorphosis. The results will help to further understand the function of lncRNAs in chordate development and the evolution of lncRNAs.
机译:长期非编码RNA(LNCRNA)通过染色质重编程,CIS调节和翻译修改在不同的发展和病理过程中起重要作用。他们在脊椎动物和无脊椎动物中被广泛研究过。然而,Urochordate中LNCRNA的信息仍然缺乏。在这项研究中,我们在Ciona Savignyi中使用来自胚胎和幼虫的三个发育阶段(18,21和42小时,HPF)的RNA-SEQ数据,以识别候选LNCRNA并分析它们的表达谱。总共29,944个未预先作为LNCRNA,其中5个在非代码数据库中遇到LNCRNA。获得的LNCRNA平均长度为466nt。 LNCRNA的长度,GC含量和最小自由能的峰显着低于消息RNA(MRNA)的峰值。 LNCRNA的平均表达水平也低于MRNA的表达水平。在三个发育阶段中,高表达的LNCRNA浓缩成18 HPF胚胎。虽然对于在21个HPF胚胎中特别调节的那些LNCRNAS,其共表达的MRNA在膜的GO型膜中富集,表明这些LNCRNA参与了腔膜生物发生的调节,并且通过膜脊索期间通过膜局部蛋白质的细胞外基质分泌小管发生。 42 HPF幼虫中的LNCRNA与18和21个HPF胚胎中的不同。该结果与游泳幼虫在该阶段转向变质幼虫的事实有关,表明LNCRNA参与了幼虫变态的调节。总体而言,我们的研究确定了C. Savignyi中的大量LNCRNA,并在CIONA胚胎发生过程中揭示了它们的表达特征和动力学。结果将有助于进一步了解LNCRNA在脊索曲线发展中的功能和LNCRNA的演变。

著录项

  • 来源
    《Marine genomics》 |2018年第2018期|共9页
  • 作者

    Wei Jiankai; Dong Bo;

  • 作者单位

    Ocean Univ China Minist Educ Key Lab Marine Genet &

    Breeding Coll Marine Life Sci Qingdao 266003 Peoples R China;

    Ocean Univ China Minist Educ Key Lab Marine Genet &

    Breeding Coll Marine Life Sci Qingdao 266003 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 遗传学;
  • 关键词

    Ciona; lncRNAs; RNA-Seq; Embryogenesis; Larval metamorphosis;

    机译:ciona;lncrnas;rna-seq;胚胎发生;幼虫变态;

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