Javascript must be enabled to continue!
Genomic comparison of chromosome 4 of human Plasmodium species
View through CrossRef
Abstract
Background:
Malaria, a devastating disease primarily caused by five
Plasmodium
species in humans, continues to pose a significant global health challenge, particularly in sub-Saharan Africa. The parasite’s ability to evade the host immune system through antigenic variation is a major obstacle to malaria control. Genes responsible for this variation are concentrated in subtelomeric regions of chromosomes, with chromosome 4 being a notable locus for such genes. This study presents a comparative genomic analysis of chromosome 4 across the five human-infecting
Plasmodium
species:
Plasmodium falciparum, Plasmodium malariae, Plasmodium ovale, Plasmodium vivax
, and
Plasmodium knowlesi
.
Methodology:
The complete nucleotide sequences of chromosome 4 for the five
Plasmodium
species were retrieved from the National Center for Biotechnology Information GenBank database. We performed a comprehensive bioinformatic analysis to compare their genomic features. This included calculation of GC content and sequence length,
de novo
gene prediction using AUGUSTUS, functional annotation of predicted genes through Basic Local Alignment Search Tool against the PlasmoDB database, and gene ontology (GO) enrichment analysis. Phylogenetic relationships were inferred using Multiple Alignment using Fast Fourier Transform for multiple sequence alignment and PhyML for maximum likelihood tree construction.
Results:
Our analysis revealed significant differences in the genomic landscape of chromosome 4 among the five species.
P. knowlesi
exhibited the highest GC content (39.65%) and gene density, with 192 predicted genes. In contrast,
P. ovale
had the smallest chromosome 4 and the lowest gene count. Phylogenetic analysis confirmed that the common ancestor of
P. falciparum, P. vivax, P. malariae
, and
P. ovale
diverged from the lineage leading to
P. knowlesi
. We identified a set of conserved genes across all five species, as well as species-specific genes, including some known virulence factors such as the
var
and
rifin
gene families in
P. falciparum
. GO analysis of the predicted genes revealed enrichment for terms related to pathogenesis and immune evasion.
Conclusion:
This comparative genomic study provides a detailed profile of chromosome 4 in human
Plasmodium
species, highlighting both conserved and species-specific features. These findings offer valuable insights into the evolutionary dynamics of this chromosome and its role in host–parasite interactions. The identification of species-specific genes and their functional annotation may pave the way for the development of novel, targeted interventions, such as species-specific vaccines and antimalarial drugs.
Ovid Technologies (Wolters Kluwer Health)
Title: Genomic comparison of chromosome 4 of human Plasmodium species
Description:
Abstract
Background:
Malaria, a devastating disease primarily caused by five
Plasmodium
species in humans, continues to pose a significant global health challenge, particularly in sub-Saharan Africa.
The parasite’s ability to evade the host immune system through antigenic variation is a major obstacle to malaria control.
Genes responsible for this variation are concentrated in subtelomeric regions of chromosomes, with chromosome 4 being a notable locus for such genes.
This study presents a comparative genomic analysis of chromosome 4 across the five human-infecting
Plasmodium
species:
Plasmodium falciparum, Plasmodium malariae, Plasmodium ovale, Plasmodium vivax
, and
Plasmodium knowlesi
.
Methodology:
The complete nucleotide sequences of chromosome 4 for the five
Plasmodium
species were retrieved from the National Center for Biotechnology Information GenBank database.
We performed a comprehensive bioinformatic analysis to compare their genomic features.
This included calculation of GC content and sequence length,
de novo
gene prediction using AUGUSTUS, functional annotation of predicted genes through Basic Local Alignment Search Tool against the PlasmoDB database, and gene ontology (GO) enrichment analysis.
Phylogenetic relationships were inferred using Multiple Alignment using Fast Fourier Transform for multiple sequence alignment and PhyML for maximum likelihood tree construction.
Results:
Our analysis revealed significant differences in the genomic landscape of chromosome 4 among the five species.
P.
knowlesi
exhibited the highest GC content (39.
65%) and gene density, with 192 predicted genes.
In contrast,
P.
ovale
had the smallest chromosome 4 and the lowest gene count.
Phylogenetic analysis confirmed that the common ancestor of
P.
falciparum, P.
vivax, P.
malariae
, and
P.
ovale
diverged from the lineage leading to
P.
knowlesi
.
We identified a set of conserved genes across all five species, as well as species-specific genes, including some known virulence factors such as the
var
and
rifin
gene families in
P.
falciparum
.
GO analysis of the predicted genes revealed enrichment for terms related to pathogenesis and immune evasion.
Conclusion:
This comparative genomic study provides a detailed profile of chromosome 4 in human
Plasmodium
species, highlighting both conserved and species-specific features.
These findings offer valuable insights into the evolutionary dynamics of this chromosome and its role in host–parasite interactions.
The identification of species-specific genes and their functional annotation may pave the way for the development of novel, targeted interventions, such as species-specific vaccines and antimalarial drugs.
Related Results
Development of a Novel Cytochrome b Real-Time PCR Assay for Identification of Plasmodium malariae
Development of a Novel Cytochrome b Real-Time PCR Assay for Identification of Plasmodium malariae
This article aims to establish a novel cytochrome b real-time PCR assay using Taqman probe for identification of P. malariae and its discrimination from other Plasmodium human infe...
Prevalence of Plasmodium Species among Humans and Monkeys at Mole National Park in Northern Ghana
Prevalence of Plasmodium Species among Humans and Monkeys at Mole National Park in Northern Ghana
Malaria is one of the most severe public health problems in Ghana. In developing countries such as Ghana, with high of prevalence of malaria, the procedures for diagnoses and detec...
PLASMODIUM DOMINAN DALAM NYAMUK ANOPHELES BETINA (Anopheles spp.) PADA BEBERAPA TEMPAT DI DISTRIK MANOKWARI BARAT
PLASMODIUM DOMINAN DALAM NYAMUK ANOPHELES BETINA (Anopheles spp.) PADA BEBERAPA TEMPAT DI DISTRIK MANOKWARI BARAT
Malaria contagious by mosquito Anopheles Betina bringing protozoa parasite in its body (Plasmodium). Plasmodium there are four specieses that is Plasmodium vivax, Plasmodium ovale,...
Malaria and Molecular Diagnosis
Malaria and Molecular Diagnosis
It is an endemic vector-borne parasitic disease caused by protozoan parasites of the genus Plasmodium in tropical and subtropical regions worldwide. In each endemic area, malaria i...
Pola Kejadian Malaria Pada Tenaga Kerja Di Area Lowland PT Freeport Indonesia
Pola Kejadian Malaria Pada Tenaga Kerja Di Area Lowland PT Freeport Indonesia
Malaria is caused by the plasmodium parasite and is transmitted through the bite of an infected female Anopheles mosquito. Plasmodium falciparum and plasmodium vivax are the most c...
Section-level genome sequencing and comparative genomics of Aspergillus sections Cavernicolus and Usti
Section-level genome sequencing and comparative genomics of Aspergillus sections Cavernicolus and Usti
Fig. S1. A cladogram representation of the phylogenetic relations between the species in this paper. The red labels show bootstrap values of 100 % and the black labels show bootstr...
Molecular Cytogenetics in Domestic Bovids: A Review
Molecular Cytogenetics in Domestic Bovids: A Review
The discovery of the Robertsonian translocation (rob) involving cattle chromosomes 1 and 29 and the demonstration of its deleterious effects on fertility focused the interest of ma...
Assessing the diagnostic performance of a novel RT-PCR fluorescence method for the detection of human plasmodium species
Assessing the diagnostic performance of a novel RT-PCR fluorescence method for the detection of human plasmodium species
Background
Malaria elimination effort is hampered not only by the lack of effective medication but also due to the lack of sensitive diagnostic tools to detect ...

