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Spliced leader trans-splicing in the nematode Trichinella spiralis uses highly polymorphic noncanonical spliced leaders

机译:线虫旋毛虫​​中的剪接前导反剪使用高度多态的非规范剪接前导

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摘要

The trans-splicing of short spliced leader (SL) RNAs onto the 5′ ends of mRNAs occurs in a diverse range of taxa. In nematodes, all species so far characterized utilize a characteristic, conserved spliced leader, SL1, as well as variants that are employed in the resolution of operons. Here we report the identification of spliced leader trans-splicing in the basal nematode Trichinella spiralis, and show that this nematode does not possess a canonical SL1, but rather has at least 15 distinct spliced leaders, encoded by at least 19 SL RNA genes. The individual spliced leaders vary in both size and primary sequence, showing a much higher degree of diversity compared to other known trans-spliced leaders. In a survey of T. spiralis mRNAs, individual mRNAs were found to be trans-spliced to a number of different spliced leader sequences. These data provide the first indication that the last common ancestor of the phylum Nematoda utilized spliced leader trans-splicing and that the canonical spliced leader, SL1, found in Caenorhabditis elegans, evolved after the divergence of the major nematode clades. This discovery sheds important light on the nature and evolution of mRNA processing in the Nematoda.
机译:短剪接的前导(SL)RNA转拼到mRNA的5'端发生在各种各样的分类单元中。在线虫中,到目前为止,所有已表征的物种都利用了一个特征性的,保守的剪接前导序列SL1以及用于操纵子操纵子的变体。在这里我们报告了在底线虫旋毛虫​​中剪接的前导转拼的鉴定,并表明该线虫不具有典型的SL1,而是具有至少15个不同的剪接的前导,由至少19个SL RNA基因编码。各个拼接的前导序列在大小和主要序列上都不同,与其他已知的反式拼接前导序列相比,显示出更高的多样性。在对螺旋旋毛虫mRNA的调查中,发现单个mRNA被反式剪接成许多不同的剪接前导序列。这些数据首次表明,线虫门的最后一个共同祖先利用了剪接的先导反式剪接,并且在秀丽隐杆线虫中发现的典型的剪接的先导SL1在主要的线虫进化支分化之后进化了。这一发现为线虫中mRNA加工的性质和进化提供了重要的启示。

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