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Edwards, R. T. M.

Publications and source records attributed to Edwards, R. T. M..

2 recordsLinked to original sources

CRISPR-Cas9 and PiggyBac Mediated Genetic Modification of Sand Fly Vectors Targeting Olfactory and Non-Lethal Phenotypic Genes

Leishmania spp. are protozoan parasites transmitted by female sand flies (Diptera) that cause a spectrum of devastating human pathologies affecting millions. Control of leishmaniases has proved immensely difficult: vector control strategies remain challenging and available chemotherapeutics imperfect. Gene editing of insect vectors offers prospects to interrupt disease transmission; for example by introducing antiparasite effectors or heritable modifications of genes implicated in fecundity. Here we present convergent evidence for successful gene editing using both CRISPR-Cas9 and PiggyBac approaches in two medically important sand fly species (Lutzomyia longipalpis and Phlebotomus papatasi). Targeted mutagenesis in G0 and G1 generations is supported by three independent lines of evidence, namely observable phenotypic changes, PCR-based detection assays, and confirmatory in silico algorithmic analysis of gene sequences which together provide a robust demonstration of targeted genome editing.

bioengineering↗

Transcriptome analysis of the winter tick (Dermacentor albipictus) reveals sex-specific expression patterns

The winter tick, Dermacentor albipictus, is a significant ectoparasite of ruminants across North America, posing health risks to wildlife and occasionally humans. Despite its ecological importance, limited genomic resources exist for this species. This study provides the first comprehensive transcriptome analysis of D. albipictus, focusing on early-stage embryos, sexed adults, dissected ovaries, and dissected male reproductive systems. Differential gene expression analyses revealed significant sex-biased expression patterns, and functional annotations identified candidate genes involved in sex determination. Notably, we identified the first documented case of sex-specific splicing of a doublesex-like gene in chelicerates, a mechanism previously thought to be absent in this group. This discovery suggests that ticks may share more insect-like features of sexual differentiation, with implications for understanding the evolution of sex determination pathways in arthropods These transcriptome data serve as a critical resource for understanding the biology of D. albipictus and will facilitate the development of novel genetic control strategies.

genomics↗