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

Systematic genome-guided discovery of antagonistic interactions between archaea and bacteria

View through CrossRef
ABSTRACT The social life of archaea is poorly understood. In particular, even though competition and conflict are common themes in microbial communities, there is scant evidence documenting antagonistic interactions between archaea and their abundant prokaryotic brethren: bacteria. Do archaea specifically target bacteria for destruction? If so, what molecular weaponry do they use? Here, we present an approach to infer antagonistic interactions between archaea and bacteria from genome sequence. We show that a large and diverse set of archaea encode peptidoglycan hydrolases, enzymes that recognize and cleave a structure – peptidoglycan – that is a ubiquitous component of bacterial cell walls but absent from archaea. We predict the bacterial targets of archaeal peptidoglycan hydrolases using a structural homology approach and demonstrate that the predicted target bacteria tend to inhabit a similar niche to the archaeal producer, indicative of ecologically relevant interactions. Using a heterologous expression system, we demonstrate that two peptidoglycan hydrolases from the halophilic archaeaon Halogranum salarium B-1 kill the halophilic bacterium Halalkalibacterium halodurans, a predicted target, and do so in a manner consistent with peptidoglycan hydrolase activity. Our results suggest that, even though the tools and rules of engagement remain largely unknown, archaeal-bacterial conflicts are likely common, and we present a roadmap for the discovery of additional antagonistic interactions between these two domains of life. Our work has implications for understanding mixed microbial communities that include archaea and suggests that archaea might represent a large untapped reservoir of novel antibacterials.
Title: Systematic genome-guided discovery of antagonistic interactions between archaea and bacteria
Description:
ABSTRACT The social life of archaea is poorly understood.
In particular, even though competition and conflict are common themes in microbial communities, there is scant evidence documenting antagonistic interactions between archaea and their abundant prokaryotic brethren: bacteria.
Do archaea specifically target bacteria for destruction? If so, what molecular weaponry do they use? Here, we present an approach to infer antagonistic interactions between archaea and bacteria from genome sequence.
We show that a large and diverse set of archaea encode peptidoglycan hydrolases, enzymes that recognize and cleave a structure – peptidoglycan – that is a ubiquitous component of bacterial cell walls but absent from archaea.
We predict the bacterial targets of archaeal peptidoglycan hydrolases using a structural homology approach and demonstrate that the predicted target bacteria tend to inhabit a similar niche to the archaeal producer, indicative of ecologically relevant interactions.
Using a heterologous expression system, we demonstrate that two peptidoglycan hydrolases from the halophilic archaeaon Halogranum salarium B-1 kill the halophilic bacterium Halalkalibacterium halodurans, a predicted target, and do so in a manner consistent with peptidoglycan hydrolase activity.
Our results suggest that, even though the tools and rules of engagement remain largely unknown, archaeal-bacterial conflicts are likely common, and we present a roadmap for the discovery of additional antagonistic interactions between these two domains of life.
Our work has implications for understanding mixed microbial communities that include archaea and suggests that archaea might represent a large untapped reservoir of novel antibacterials.

Related Results

Archaea
Archaea
AbstractAnalysis of nucleotide sequences of ribosomalribonucleic acid(RNA) led in the 1970s to the recognition of the existence of three domains of life, named Eukarya (Eukaryotes)...
Bacteriocins in archaea & archaeocins in bacteria
Bacteriocins in archaea & archaeocins in bacteria
ABSTRACT Archaea and bacteria routinely live side by side in microbial communities and must interact at least on occasion. Whether such cross-Dom...
Antagonistic properties of rhizobacteria in relation to phytopatogens of wheat
Antagonistic properties of rhizobacteria in relation to phytopatogens of wheat
Plant protection from phytopathogens is becoming an increasingly severe problem in modern agriculture and agricultural microbiology. Today, there is a trend around the world toward...
Archaeal Cells
Archaeal Cells
AbstractAt a first glance, Archaea are structurally seen quite similar to Bacteria, and for a long time they were named ‘Archaebacteria’. They can form cocci, rods, spirals or irre...
Archaeal Cells
Archaeal Cells
AbstractAt a first glance, Archaea are quite similar to Bacteria on a structural level, and for a long time they were named ‘Archaebacteria’. They can form cocci, rods, spirals or ...
Archaea and oral cavity
Archaea and oral cavity
Archaea et cavité orale L’analyse du microbiote oral et de son évolution séculaire se fait principalement à partir de l’analyse du tartre dentaire ancien des popula...
Effect of Gram-positive bacteria on antibiotic resistance in Gram-negative bacteria
Effect of Gram-positive bacteria on antibiotic resistance in Gram-negative bacteria
Antibiotics are one of the most common treatments for bacterial infections, but the emergence of antibiotic resistance is a major threat to the control of infectious diseases. Many...
7 th International Symposium on Enabling Technologies for Life Sciences (ETP)
7 th International Symposium on Enabling Technologies for Life Sciences (ETP)
The seventh in the series of ETP Symposia (see Rapid Communications in Mass Spectrometry 2012, 26 , ...

Back to Top