ArticleGenetics2026
A hybrid transcriptome assembly reveals coding and noncoding landscapes in Drosophila hemocytes.
Article in Genetics, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
Innate immune responses triggered by Drosophila larval hemocytes have been extensively characterized. However, the full extent of transcriptional and posttranscriptional regulation underlying these processes remains poorly understood. Here, we employed a hybrid sequencing strategy integrating Oxford Nanopore long-read and Illumina short-read sequencing to provide a more comprehensive transcriptome annotation. This enabled the discovery of full-length transcripts with novel 5' and 3' boundaries and uncovered 349 previously unannotated long noncoding RNAs highly induced during late stages of wasp infestation. To ensure high-confidence transcript models, we further eliminated potential intra-priming artifacts specific to long-read cDNA data. This highly confident full-length transcript models helped reveal cell type-specific long noncoding RNA (lncRNA) markers in lamellocytes and crystal cells by single-cell analyses, which recapitulated hemocyte differentiation trajectories. Notably, RNAi-based depletion of 2 highly induced lncRNAs impaired lamellocyte formation under wasp infestation, highlighting their functional relevance. Collectively, our findings provide detailed insights into the Drosophila larval immune transcriptomes through the long-read sequencing and highlight the regulatory roles of noncoding RNAs in innate immunity.
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