Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Whole-genome sequencing of Burkholderia glumae strains from Thailand reveals potential horizontal gene transfer with Burkholderia pseudomallei

View through CrossRef
Burkholderia glumae is an emerging phytopathogen that causes bacterial panicle blight in rice and has been implicated in rare human infections. In Thailand, B. glumae and the human pathogen Burkholderia pseudomallei coexist in rice fields. Given the high genomic plasticity of Burkholderia species, including frequent genome rearrangements, variability in mobile genetic elements, and recombination events that facilitate horizontal gene transfer, there are concerns about the emergence of novel traits that may affect both plant and human health. In this study, we performed whole-genome sequencing and a comparative genomic analysis of 16 B. glumae strains isolated from rice fields across seven Thai provinces. Our phylogenomic analysis, based on core-genome single-nucleotide polymorphisms, revealed high genetic diversity and a polyclonal population structure, with evidence of a globally distributed clonal lineage. All isolates harbored plasmids and diverse prophage elements, which indicated extensive mobilome variability. A total of 572 putative horizontally transferred genes were identified. Most of these genes originated from unclassified or plant-associated Burkholderia species. Notably, two strains shared a chromosomal island that carried genes that were very similar to those found in B. pseudomallei . This genomic region contained genes associated with mobile genetic elements, phage defense, and a type VI secretion system, including genes that encode a PAAR domain–containing protein, a putative nuclease, and an immunity protein. Our findings highlight the genomic heterogeneity of B. glumae in Thailand and provide evidence of interspecies horizontal gene acquisition from human pathogenic B. pseudomallei . The presence of B. pseudomallei -derived genes in B. glumae chromosomes underscores the potential for genetic exchange in shared environmental niches, which could affect the evolutionary dynamics and pathogenicity of B. glumae . Hence, our findings also emphasize the critical need for environmental surveillance and genome-based monitoring to track emerging genomic combinations relevant to both plant and human health.
Title: Whole-genome sequencing of Burkholderia glumae strains from Thailand reveals potential horizontal gene transfer with Burkholderia pseudomallei
Description:
Burkholderia glumae is an emerging phytopathogen that causes bacterial panicle blight in rice and has been implicated in rare human infections.
In Thailand, B.
glumae and the human pathogen Burkholderia pseudomallei coexist in rice fields.
Given the high genomic plasticity of Burkholderia species, including frequent genome rearrangements, variability in mobile genetic elements, and recombination events that facilitate horizontal gene transfer, there are concerns about the emergence of novel traits that may affect both plant and human health.
In this study, we performed whole-genome sequencing and a comparative genomic analysis of 16 B.
glumae strains isolated from rice fields across seven Thai provinces.
Our phylogenomic analysis, based on core-genome single-nucleotide polymorphisms, revealed high genetic diversity and a polyclonal population structure, with evidence of a globally distributed clonal lineage.
All isolates harbored plasmids and diverse prophage elements, which indicated extensive mobilome variability.
A total of 572 putative horizontally transferred genes were identified.
Most of these genes originated from unclassified or plant-associated Burkholderia species.
Notably, two strains shared a chromosomal island that carried genes that were very similar to those found in B.
pseudomallei .
This genomic region contained genes associated with mobile genetic elements, phage defense, and a type VI secretion system, including genes that encode a PAAR domain–containing protein, a putative nuclease, and an immunity protein.
Our findings highlight the genomic heterogeneity of B.
glumae in Thailand and provide evidence of interspecies horizontal gene acquisition from human pathogenic B.
pseudomallei .
The presence of B.
pseudomallei -derived genes in B.
glumae chromosomes underscores the potential for genetic exchange in shared environmental niches, which could affect the evolutionary dynamics and pathogenicity of B.
glumae .
Hence, our findings also emphasize the critical need for environmental surveillance and genome-based monitoring to track emerging genomic combinations relevant to both plant and human health.

Related Results

Teaching & Learning Guide for: Buddhism and Thai Art
Teaching & Learning Guide for: Buddhism and Thai Art
This guide accompanies the following article(s): Chirapravati, P, Buddhism and Thai Art, Religion Compass 3/4 (2009) : pp. 566–579, 10.1...
Deteksi Molekuler Burkholderia glumae, Penyebab Penyakit Hawar Malai Padi
Deteksi Molekuler Burkholderia glumae, Penyebab Penyakit Hawar Malai Padi
The presence of bacterial panicle blight disease caused by Burkholderia glumae have been reported to infect rice plants in Indonesia. There have been no reports of yield losses due...
First Report of Burkholderia glumae Isolated from Symptomless Rice Seeds in China
First Report of Burkholderia glumae Isolated from Symptomless Rice Seeds in China
Burkholderia glumae causes grain rot and seedling rot of rice (Oryza sativa L.). It is seedborne and has caused severe damage in Japan (1). Since 1997, efforts have been made to de...
Detection and differentiation of Burkholderia species with pathogenic potential in environmental soil samples
Detection and differentiation of Burkholderia species with pathogenic potential in environmental soil samples
The Burkholderia pseudomallei phylogenetic cluster includes B. pseudomallei, B. mallei, B. thailandensis, B. oklahomensis, B. humptydooensis and B. singularis. Regarded as the only...
Inhibitory effects of Trichoderma asperellum culture filtrates on pathogenic bacteria, Burkholderia pseudomallei
Inhibitory effects of Trichoderma asperellum culture filtrates on pathogenic bacteria, Burkholderia pseudomallei
Background Burkholderia pseudomallei is a soil- and water-dwelling bacterium that causes the life-threatening infection melioidosis. Patients typically acquire this ...
Burkholderia pseudomallei biofilm phenotypes confined but surviving in neutrophil extracellular traps of varying appearance
Burkholderia pseudomallei biofilm phenotypes confined but surviving in neutrophil extracellular traps of varying appearance
Melioidosis is a fatal infectious disease caused by Burkholderia pseudomallei. Complications following treatment are usually due to antibiotic resistance and relapse is mainly caus...
A molecular epidemiological analysis of Burkholderia pseudomallei in southern Thailand
A molecular epidemiological analysis of Burkholderia pseudomallei in southern Thailand
Melioidosis, a severe bacterial illness caused by Burkholderia pseudomallei, is prevalent in most parts of Thailand, including its southern region situated within the Malay Peninsu...
Next Generation Sequencing and Comparative Genomic Analysis Reveal Extreme Plasticity of Two Burkholderia glumae Strains HN1 and HN2
Next Generation Sequencing and Comparative Genomic Analysis Reveal Extreme Plasticity of Two Burkholderia glumae Strains HN1 and HN2
Burkholderia glumae is an important rice pathogen, thus the genomic and evolutionary history may be helpful to control this notorious pathogen. Here, we present two complete genome...

Back to Top