遇见数据集

Proteome data from: Genome of the myiasis-causing fly Chrysomya bezziana, the Old-World Screwworm

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Zenodo2025-05-27 更新2026-05-26 收录
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Description This dataset contains the predicted set of protein sequences associated with the work: "Genome of the myiasis-causing fly Chrysomya bezziana, the Old-World Screwworm" in Cunha and Ferreira et al. submitted to Genome Biology and Evolution. (File MD5: bcfdb607ae67059cbbb26fd010226d07 cbez_prot.aa) Title: Genome of the myiasis-causing fly Chrysomya bezziana, the Old-World Screwworm Vanessa A. S. Cunha1*§, Diniz L. Ferreira1*§, Pedro Mariano-Martins1§, Farlin Nefho2, Eko Setyo Purwanto2, Dyah Haryuningtyas Sawitri2, Tatiana Teixeira Torres1§, and April H. Wardhana2 1Department of Genetics and Evolutionary Biology. Institute of Biosciences. University of São Paulo. Rua do Matão, 277, São Paulo, SP, Brazil - 05508-0902Research Centre for Veterinary Science. Organization Research for Health. The National Research and Innovation Agency. BRIN. Meatpro Building. Kawasan Sains dan Teknologi (KST) Soekarno. Jl. Raya Jakarta -Bogor KM 46, Cibinong - West Java Province, Indonesia - 16911 *These authors contributed equally to the work.§Author for Correspondence: Tatiana Teixeira Torres, Department of Genetics and Evolutionary Biology. Institute of Biosciences. University of São Paulo, São Paulo, Brazil, +55-11-30918759, tttorres@ib.usp.br AbstractChrysomya bezziana, the Old-World Screwworm, is a parasitic blowfly that causes myiasis, an infestation where larvae feed on live tissues of vertebrate hosts. Myiasis caused by C. bezziana poses a threat for public health and livestock economy in Asia with a potential risk of global spread by human travelers and animals. Genome resources for this parasite are urgently needed as these can facilitate the development of novel control methods to mitigate the impact of C. bezziana on public health and livestock industries. Here, we present the first genome assembly and annotation for C. bezziana. The genome exhibits high quality with a size of 472 Mb and an N50 of 1.8 Mb and 98.4% of BUSCO single and 0.5% of duplicated genes, showing high completeness and haploid resolution. This initiative, when combined with other blowfly genomes available, will contribute to the ongoing effort to understand the evolutionary origin and molecular underpinnings of parasitic behavior in blowflies. Furthermore, it will also contribute to the development of pest management strategies to control the spread and the impact of this harmful parasite. Key-words: blowfly, myiasis, parasitism, genome assembly, genome annotation

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2025-05-27
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