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小 RNA 类别的获得和丢失 - 寄生线虫科 Strongyloididae 中小 RNA 的特征。

Gain and Loss of Small RNA Classes-Characterization of Small RNAs in the Parasitic Nematode Family Strongyloididae.

机构信息

Department of Integrative Evolutionary Biology, Max Planck Institute for Developmental Biology, Tübingen, Germany.

出版信息

Genome Biol Evol. 2017 Oct 1;9(10):2826-2843. doi: 10.1093/gbe/evx197.

Abstract

The nematode family Strongyloididae is of particular interest because it contains important parasites of medical and veterinary relevance. In addition, species of this family can form parasitic and free-living generations and it also occupies an interesting phylogenetic position within the nematodes. Nematodes differ in several ways from other taxa with respect to their small noncoding RNAs. Recent comparative studies revealed that there is also considerable variability within the nematodes. However, no Strongyloididae species or close relative was included in these studies. We characterized the small RNAs of two developmental stages of three different Strongyloididae species and compared them with the well-studied free-living nematodes Caenorhabditis elegans and Pristionchus pacificus. Strongyloididae have conserved and taxon-specific microRNAs, many of which are differentially regulated between the two developmental stages. We identified a novel class of around 27-nucleotide-long RNAs starting with 5'G or A, of which a large fraction have the potential to target transposable elements. These RNAs most likely have triphosphates at their 5' ends and are therefore presumably synthesized by RNA-dependent RNA polymerases. In contrast to C. elegans but similarly to some other nematode taxa, Strongyloididae have no Piwi-interacting RNAs, nor do their genomes encode Argonaute proteins of the Piwi family. Finally, we attempted but failed to detect circulating parasite small RNAs in the blood of hosts.

摘要

线虫科 Strongyloididae 家族特别有趣,因为它包含了对医学和兽医具有重要意义的寄生虫。此外,该家族的物种可以形成寄生和自由生活的世代,并且在线虫中占据了一个有趣的进化位置。与其他分类群相比,线虫在其小非编码 RNA 方面存在多种差异。最近的比较研究表明,线虫内部也存在相当大的变异性。然而,这些研究中没有包括 Strongyloididae 物种或近亲。我们对三种不同 Strongyloididae 物种的两个发育阶段的小 RNA 进行了表征,并将其与研究得很好的自由生活线虫秀丽隐杆线虫和 Pristionchus pacificus 进行了比较。Strongyloididae 具有保守和分类特异性的 microRNAs,其中许多在两个发育阶段之间存在差异调节。我们鉴定了一类大约 27 个核苷酸长的 RNA,它们以 5'G 或 A 开头,其中很大一部分具有靶向转座元件的潜力。这些 RNA 的 5' 端很可能有三磷酸,因此推测是由 RNA 依赖性 RNA 聚合酶合成的。与秀丽隐杆线虫不同,但与其他一些线虫分类群相似,Strongyloididae 没有 Piwi 相互作用 RNA,其基因组也没有编码 Piwi 家族的 Argonaute 蛋白。最后,我们试图但未能在宿主血液中检测到循环寄生虫小 RNA。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df3f/5737618/6ad6a52d22a2/evx197f1.jpg

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