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Open access Aug 2026

A single-cell transcriptome atlas reveals paradoxical monoallelic expression of RNA editing and heterozygous SNPs

Abstract Both genomic mutations and RNA editing contribute to functional complexity and drive adaptive evolution. Single-cell profiling offers deep insight into the cis-regulatory mechanisms underlying these variations. Using 13 025 single-cell Smart-Seq libraries from whole-body Drosophila melanogaster, we unexpectedly found that 94.0% of adenosine-to-inosine RNA editing sites and 92.8% of heterozygous single nucleotide polymorphismss (SNPs) with sufficient “unique fragment support” exhibit binary expression (0 or 1) in a single cell. The genotypes of representative heterozygous SNPs were validated by Sanger sequencing. Meanwhile, binary RNA editing itself is logically questionable due to elusive mechanism, compromised condition specificity, and untenable heterozygote advantage. This fact that for most cases in Smart-Seq, only a single allele (out of the various haplotypes) is finally maintained per cell, raises the following concern. Regardless of the biological or technical explanations like monoallelic transcriptional burst, dropout, or amplification bias that might account for this binary expression pattern, our findings conservatively indicate that Smart-Seq may not be good at analyzing molecular diversity and that the results need to be interpreted with caution.

Y. Duan, Jiyao Liu, Shiwen Xu et al. · 0 citations
Open access Jul 2026

Chromosome-level genome assembly of Corizus hyoscyami (Linnaeus, 1758) (Heteroptera: Rhopalidae)

Corizus hyoscyami (Heteroptera: Rhopalidae) is a widely distributed and highly polyphagous insect, making it a relevant species for understanding the evolution of herbivory and host adaptation in true bugs. However, the genome of Corizus hyoscyami has not yet been sequenced, limiting investigations into its biological characteristics. In this study, a high-quality chromosome-level genome assembly was generated by integrating MGI DNBSEQ-T7 short-read, PacBio Sequel II long-read, and Hi-C scaffolding technologies. The assembly was assessed to be 97.6% complete by BUSCO. The final genome was assembled into a size of 1.47 Gb, with a contig N50 of 1.61 Mb and a scaffold N50 of 198.34 Mb. The GC content was determined to be 34%, and 94.90% of the sequences were anchored onto 6 chromosome-level scaffolds, representing the major chromosomal elements of the genome. Repetitive sequences accounted for 69.79% of the genome, and 18,540 protein-coding genes were annotated. This genome assembly is expected to facilitate research on adaptive evolution in Heteroptera.

Ye Xu, Yuzhou Zhao, Rong Ji et al. · 0 citations