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Transcription of highly repetitive tandemly organized DNA in amphibians and birds: A historical overview and modern concepts

机译:两栖动物和鸟类中高度重复的串联组织DNA的转录:历史回顾和现代概念

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摘要

Tandemly organized highly repetitive DNA sequences are crucial structural and functional elements of eukaryotic genomes. Despite extensive evidence, satellite DNA remains an enigmatic part of the eukaryotic genome, with biological role and significance of tandem repeat transcripts remaining rather obscure. Data on tandem repeats transcription in amphibian and avian model organisms is fragmentary despite their genomes being thoroughly characterized. Review systematically covers historical and modern data on transcription of amphibian and avian satellite DNA in somatic cells and during meiosis when chromosomes acquire special lampbrush form. We highlight how transcription of tandemly repetitive DNA sequences is organized in interphase nucleus and on lampbrush chromosomes. We offer LTR-activation hypotheses of widespread satellite DNA transcription initiation during oogenesis. Recent explanations are provided for the significance of high-yield production of non-coding RNA derived from tandemly organized highly repetitive DNA. In many cases the data on the transcription of satellite DNA can be extrapolated from lampbrush chromosomes to interphase chromosomes. Lampbrush chromosomes with applied novel technical approaches such as superresolution imaging, chromosome microdissection followed by high-throughput sequencing, dynamic observation in life-like conditions provide amazing opportunities for investigation mechanisms of the satellite DNA transcription.
机译:串联的高度重复的DNA序列是真核基因组的关键结构和功能元件。尽管有大量证据,但卫星DNA仍然是真核生物基因组的一个神秘部分,串联重复转录本的生物学作用和意义仍然相当模糊。尽管两栖和鸟类模型生物的基因组已得到全面表征,但有关串联重复数据的研究仍是零碎的。综述系统地涵盖了历史和现代数据,这些数据涉及在体细胞中和染色体减数分裂时染色体获得特殊电刷形式的两栖动物和鸟类卫星DNA的转录。我们重点介绍了在相间核和笔刷染色体中如何组织串联重复性DNA序列的转录。我们提供卵子发生过程中广泛的卫星DNA转录起始的LTR激活假说。提供了有关从串联组织的高度重复性DNA衍生的非编码RNA的高产量生产意义的最新解释。在许多情况下,有关卫星DNA转录的数据可以从笔刷染色体推断到相间染色体。运用新技术方法(如超分辨率成像,染色体显微切割,高通量测序,在栩栩如生的条件下进行动态观察)的Lampbrush染色体为卫星DNA转录的研究机制提供了惊人的机会。

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