← Back to catalog

Plasmodium gaboni

taxon 647221

Also known as: Plasmodium sp. PD-2009a

Indigenous / local names

No local or indigenous names recorded yet.

Genome browser

Sequence records

genome (fasta)

mirrored

Origin: hub

22 downloads

First synced: 9/1/2026 · Last updated: 9/1/2026

Source: NCBI GCA_001602025.1 · View at source ↗

Download annotation (GFF3) · Download CDS (FASTA) · Download proteins (FASTA)

Sequencing: Illumina MiSeq · Velvet v. 1.1.06; SSPACE v. 2.0; PAGIT v. 1; GapFiller v. 1.11 · 90x coverage

publiccc0AFDSI-SEQ-743

GoaT: Contig assembly · 0.02 Gb · scaffold N50 706 · BUSCO 1.7% complete · View at source ↗

Publicly accessible — no request needed.

genome (fasta)

mirrored

Origin: hub

23 downloads

First synced: 9/1/2026 · Last updated: 9/1/2026

Source: NCBI GCF_001602025.1 · View at source ↗

Download annotation (GFF3) · Download CDS (FASTA) · Download proteins (FASTA)

Sequencing: Illumina MiSeq · Velvet v. 1.1.06; SSPACE v. 2.0; PAGIT v. 1; GapFiller v. 1.11 · 90x coverage

publiccc0AFDSI-SEQ-745

GoaT: Contig assembly · 0.02 Gb · scaffold N50 706 · BUSCO 1.7% complete · View at source ↗

Publicly accessible — no request needed.

transcriptome (fasta)

mirrored

Origin: hub

0 downloads

First synced: 9/2/2026 · Last updated: 9/2/2026

Source: NCBI XM_018783488.1 · View at source ↗

Released: 2016-10-20

publiccc0AFDSI-SEQ-998

Publicly accessible — no request needed.

AlphaFold DB proteome: UP000831156

Metabolic Profiles (external sources)

KEGG: KEGG genome-based metabolic profile (pgab) (View at source ↗) — Genome-based pathway inference (KEGG) — reflects which metabolic pathways this species' annotated genes place it in, not experimentally measured metabolite presenceAFDSI-METABPROF-163

Cellular & Molecular Imaging (external sources)

BioImage Archive: Rhoptry biogenesis in Plasmodium sporozoites is uncoupled from mitosis and forms distinct pairs (View on source archive ↗)AFDSI-CELL-1106

BioImage Archive: Actomyosin forces and the energetics of red blood cell invasion by the malaria parasite Plasmodium falciparum (View on source archive ↗)AFDSI-CELL-1107

BioImage Archive: tRNA lysidinylation is essential for the minimal translation system found in the apicoplast of Plasmodium falciparum (View on source archive ↗)AFDSI-CELL-1108

BioImage Archive: Striated fiber assemblins in Plasmodium berghei (View on source archive ↗)AFDSI-CELL-1109

BioImage Archive: Plasmodium falciparum impairs Ang-1 secretion by pericytes in a 3D brain microvessel model (View on source archive ↗)AFDSI-CELL-1110

BioImage Archive: Machine Learning-based Phenotypic Imaging to Characterise the Targetable Biology of Plasmodium falciparum Male Gametocytes for Transmission-Blocking Antimalarials (View on source archive ↗)AFDSI-CELL-1111

BioImage Archive: Striated fiber assemblins and associated proteins in Plasmodium falciparum (View on source archive ↗)AFDSI-CELL-1112

BioImage Archive: A machine learning approach to define antimalarial drug action from heterogeneous cell-based screens (OME-NGFF) (View on source archive ↗)AFDSI-CELL-1113

BioImage Archive: The CCCH-type zinc-finger PfMD3 promotes translation for malaria parasite transmission (View on source archive ↗)AFDSI-CELL-1114

BioImage Archive: Automated confocal feedback imaging of Plasmodium berghei liver stage translation (View on source archive ↗)AFDSI-CELL-1115