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Updated: Jul 14, 2026

Combined Nucleotide and Protein Extractions in Caenorhabditis elegans
Published on: March 17, 2019
Combined experimental and computational approach to identify non-protein-coding RNAs in the deep-branching eukaryote
Xiaowei Sylvia Chen1, Timofey S Rozhdestvensky, Lesley J Collins
1Allan Wilson Centre, IMBS, Massey University, Palmerston North, New Zealand.
Abstract:
Non-protein-coding RNAs represent a large proportion of transcribed sequences in eukaryotes. These RNAs often function in large RNA-protein complexes, which are catalysts in various RNA-processing pathways. As RNA processing has become an increasingly important area of research, numerous non-messenger RNAs have been uncovered in all the model eukaryotic organisms. However, knowledge on RNA processing in deep-branching eukaryotes is still limited. This study focuses on the identification of non-protein-coding RNAs from the diplomonad parasite Giardia intestinalis, showing that a combined experimental and computational search strategy is a fast method of screening reduced or compact genomes. The analysis of our Giardia cDNA library has uncovered 31 novel candidates, including C/D-box and H/ACA box snoRNAs, as well as an unusual transcript of RNase P, and double-stranded RNAs. Subsequent computational analysis has revealed additional putative C/D-box snoRNAs. Our results will lead towards a future understanding of RNA metabolism in the deep-branching eukaryote Giardia, as more ncRNAs are characterized.
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