New T2T assembly of Cryptosporidium parvum IOWA annotated with reference genome gene identifiers
de Paula Baptista, R.; Xiao, R.; Li, Y.; Glenn, T. C.; Kissinger, J. C.
Show abstract
Cryptosporidium parvum is a significant pathogen causing gastrointestinal infections in humans and animals, that is spread through the ingestion of contaminated food and water. Despite its global impact on public health, generating a C. parvum genome sequence has always been challenging due to a lack of in vitro cultivation systems and challenging sub-telomeric gene families. A gapless telomere to telomere genome assembly has been created for Cryptosporidium parvum IOWA obtained from Bunch Grass Farms, named here as CpBGF. There are 8 chromosomes that total 9,259,183 bp. The new hybrid assembly which was generated with Illumina and Oxford Nanopore resolves complex sub-telomeric regions of chromosomes 1, 7 and 8. To facilitate ease of use and consistency with the literature, whenever possible, chromosomes have been oriented and genes in this annotation have been given the same gene IDs used in the current reference genome sequence generated in 2004. The annotation of this assembly utilized considerable RNA expression evidence, thus, untranslated regions, long noncoding RNAs and antisense RNAs are annotated. The CpBGF genome assembly serves as a valuable resource for understanding the biology, pathogenesis, and transmission of C. parvum, and it facilitates the development of diagnostics, drugs, and vaccines against cryptosporidiosis.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A new Plasmodium vivax reference genome for South American isolates 94%
- Intra-Strain Genetic Heterogeneity in Toxoplasma gondii ME49: Oxford Nanopore Long-Read Sequencing Reveals Copy Number Variation in the ROP8-ROP2A Locus 93%
- Analyses of Xenorhabdus griffiniae genomes reveal two distinct sub-species that display intra-species variation due to prophages. 92%
Similar papers in this journal
- ANASFV: a workflow for ASFV whole genome sequencing, assembly, and evaluation 94%
- Genomic Insights into the Diversity, Antimicrobial Resistance, and Zoonotic Potential of Campylobacter fetus Across Diverse Hosts and Geographies 93%
- Diminutive, degraded but dissimilar: Wolbachia genomes from filarial nematodes do not conform to a single paradigm 93%
Similar papers in this journal
Similar papers in this journal
- Co-evolution of Large inverted repeats and G-quadruplex DNA in fungal mitochondria may facilitate mitogenome stability: the case of Malassezia 93%
- Analysis of Plasmodium vivax schizont transcriptomes from field isolates reveals heterogeneity of expression of genes involved in host-parasite interactions 93%
- Exploring bycatch diversity of organisms in whole genome sequencing of Erebidae moths (Lepidoptera) 93%
Similar papers in this journal
- Genome improvement and genetic map construction for Aethionema arabicum, the first divergent branch in the Brassicaceae family 93%
- Application of an optimized annotation pipeline to the Cryptococcus deuterogattii genome reveals dynamic primary metabolic gene clusters and genomic impact of RNAi loss 92%
- Chromosome-level draft assemblies of the snow leopard, African leopard, and tiger (Panthera uncia, Panthera pardus pardus, and Panthera tigris) 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.