首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Posttraumatic regeneration involves differential expression of long terminal repeat (LTR) retrotransposons.
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Posttraumatic regeneration involves differential expression of long terminal repeat (LTR) retrotransposons.

机译:创伤后再生涉及长末端重复(LTR)逆转座子的差异表达。

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Background: Retrotransposons are mobile genetic elements that constitute a sizable proportion of eukaryote genomes. Although retroelements are known to play significant roles in embryogenesis, stress reactions, and disease progression, they have never been studied in the context of animal regeneration. Results: In this study, high-throughput transcriptome analysis revealed unexpectedly large-scale changes in transcriptional activity of retrotransposons in regenerating radial organs of the sea cucumber Holothuria glaberrima. In particular, we identified 36 long terminal repeat (LTR) retroelements, of which 20 showed significant changes in their expression during regeneration (11 up-regulated, 8 down-regulated, and one was initially up-regulated, but later down-regulated). We then studied in detail the most significantly up-regulated element, Gypsy-1_Hg. This transposon showed a drastic (>50-fold) increase in expression in regeneration and started to return to the normal levels only after the anatomical organization of the injured tissues was restored. All cells expressing Gypsy-1_Hg were located in the vicinity of the wound and included glia and neurons of the radial nerve. The retrotransposon-expressing cells survived programmed cell death and contributed to regeneration. Conclusions: Our findings demonstrate considerable changes in transcriptional activity of retrotransposons (both over-expression and down-regulation) associated with posttraumatic regeneration in an echinoderm. Developmental Dynamics 241:1625-1636, 2012. ? 2012 Wiley Periodicals, Inc.
机译:背景:逆转录转座子是构成大量真核生物基因组的流动遗传元件。尽管已知逆转录元素在胚胎发生,应激反应和疾病进展中起重要作用,但从未在动物再生的背景下对其进行过研究。结果:在这项研究中,高通量转录组分析揭示了海参Holothuria glaberrima再生radial器官中逆转座子转录活性的出乎意料的大规模变化。特别是,我们确定了36个长末端重复序列(LTR)逆转录元件,其中20个在再生过程中表达明显改变(11个上调,8个下调,其中一个最初上调,但后来下调) 。然后,我们详细研究了最明显上调的元素Gypsy-1_Hg。该转座子显示出再生中的表达急剧增加(> 50倍),并且仅在受伤组织的解剖结构恢复后才开始恢复正常水平。所有表达Gypsy-1_Hg的细胞都位于伤口附近,包括神经胶质细胞和the神经。表达反转录转座子的细胞在程序性细胞死亡中存活下来并有助于再生。结论:我们的研究结果表明,与棘皮动物创伤后再生相关的逆转座子转录活性发生了显着变化(过度表达和下调)。发展动力学241:1625-1636,2012。 2012 Wiley期刊公司

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