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Thousands of RNA-cached copies of whole chromosomes are present in the ciliate Oxytricha during development

机译:纤毛Oxytricha中有成千上万条RNA缓存的整个染色体拷贝

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摘要

The ciliate Oxytricha trifallax maintains two genomes: a germline genome that is active only during sexual conjugation and a transcriptionally active, somatic genome that derives from the germline via extensive sequence reduction and rearrangement. Previously, we found that long noncoding (lnc) RNA “templates”—telomere-containing, RNA-cached copies of mature chromosomes—provide the information to program the rearrangement process. Here we used a modified RNA-seq approach to conduct the first genome-wide search for endogenous, telomere-to-telomere RNA transcripts. We find that during development, Oxytricha produces long noncoding RNA copies for over 10,000 of its 16,000 somatic chromosomes, consistent with a model in which Oxytricha transmits an RNA-cached copy of its somatic genome to the sexual progeny. Both the primary sequence and expression profile of a somatic chromosome influence the temporal distribution and abundance of individual template RNAs. This suggests that Oxytricha may undergo multiple rounds of DNA rearrangement during development. These observations implicate a complex set of thousands of long RNA molecules in the wiring and maintenance of a highly elaborate somatic genome architecture.
机译:纤毛虫Oxytricha trifallax维持两个基因组:一个仅在有性共轭过程中才有活性的种系基因组,以及一个通过广泛的序列还原和重排而从该种系衍生而来的转录活跃的体细胞基因组。以前,我们发现长的非编码(lnc)RNA“模板”(包含成熟染色体的端粒,RNA缓存副本)为编程重排过程提供了信息。在这里,我们使用一种改良的RNA-seq方法进行了全基因组范围内的内源性端粒至端粒RNA转录本的首次搜索。我们发现,在发育过程中,Oxytricha为其16,000个体细胞染色体中的10,000个产生了较长的非编码RNA副本,这与Oxytricha将其体细胞基因组的RNA缓存副本传递给性后代的模型相符。体染色体的主要序列和表达谱都影响单个模板RNA的时间分布和丰度。这表明Oxytricha在发育过程中可能会经历多轮DNA重排。这些观察结果暗示了复杂的数千个长RNA分子集合在高度复杂的体细胞基因组结构的连接和维持中。

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