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Multitasking of the piRNA Silencing Machinery: Targeting Transposable Elements and Foreign Genes in the Bdelloid Rotifer Adineta vaga

机译:piRNA沉默机器的多任务处理:靶向Bdelloid Rotifer Adineta vaga中的转座因子和外源基因

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摘要

RNA-mediated silencing processes play a key role in silencing of transposable elements, especially in the germ line, where piwi-interacting RNAs (piRNAs) are responsible for suppressing transposon mobility and maintaining genome integrity. We previously reported that the genome of Adineta vaga, the first sequenced representative of the phylum Rotifera (class Bdelloidea), is characterized by massive levels of horizontal gene transfer, by unusually low transposon content, and by highly diversified RNA-mediated silencing machinery. Here, we investigate genome-wide distribution of pi-like small RNAs, which in A. vaga are 25–31 nucleotides in length and have a strong 5′-uridine bias, while lacking ping-pong amplification signatures. In agreement with expectations, 71% of mapped reads corresponded to annotated transposons, with 93% of these reads being in the antisense orientation. Unexpectedly, a significant fraction of piRNAs originate from predicted coding regions corresponding to genes of putatively foreign origin. The distribution of piRNAs across foreign genes is not biased toward 3′-UTRs, instead resembling transposons in uniform distribution pattern throughout the gene body, and in predominantly antisense orientation. We also find that genes with small RNA coverage, including a number of genes of metazoan origin, are characterized by higher occurrence of telomeric repeats in the surrounding genomic regions, and by higher density of transposons in the vicinity, which have the potential to promote antisense transcription. Our findings highlight the complex interplay between RNA-based silencing processes and acquisition of genes at the genome periphery, which can result either in their loss or eventual domestication and integration into the host genome.
机译:RNA介导的沉默过程在转座因子沉默中起着关键作用,尤其是在种系中,piwi相互作用的RNA(piRNA)负责抑制转座子的移动并维持基因组的完整性。我们先前曾报道过Adineta vaga的基因组,即轮虫门(Bdelloidea类)的第一个测序代表,其特征是水平水平的基因转移水平高,转座子含量低,RNA介导的沉默机制高度多样化。在这里,我们研究了pi样小RNA的全基因组分布,其在曲霉中的长度为25-31个核苷酸,并具有很强的5'-尿苷偏倚性,而缺乏乒乓放大特征。与预期一致,映射阅读的71%对应于注释的转座子,其中93%的阅读处于反义方向。出乎意料的是,很大一部分piRNAs来自与推测为外源基因相对应的预测编码区。 piRNAs在外源基因中的分布不偏向于3'-UTR,而是类似于转座子,其在整个基因体中的分布方式均匀,并且主要是反义方向。我们还发现具有较小RNA覆盖范围的基因,包括许多后生起源基因,其特征是周围基因组区域端粒重复的发生率较高,并且附近转座子的密度较高,具有促进反义的潜力。转录。我们的发现突显了基于RNA的沉默过程与基因组外围基因的获取之间的复杂相互作用,这可能导致其丢失或最终驯化并整合到宿主基因组中。

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