Abstract Background Marine phages are spectacularly diverse in nature. Dozens of roseophages infecting members of Roseobacter clade bacteria were isolated and characterized, exhibiting a very high degree of genetic diversity. In the present study, the induction of two temperate bacteriophages, namely, vB_ThpS-P1 and vB_PeaS-P1, was performed in Roseobacter clade bacteria isolated from the deep-sea water, Thiobacimonas profunda JLT2016 and Pelagibaca abyssi JLT2014, respectively. Two novel phages in morphological, genomic and proteomic features were presented, and their phylogeny and evolutionary relationships were explored by bioinformatic analysis. Results Electron microscopy showed that the morphology of the two phages were similar to tha...
Marinobacter is the abundant and important algal-associated and hydrocarbon biodegradation bacteria ...
The seawater temperature rise promotes the growth of potentially human pathogenic Vibrio species. In...
Marine viruses (phages) alter bacterial diversity and evolution with impacts on marine biogeochemica...
The Roseobacter clade is abundant and widespread in marine environments and plays an important role ...
Viruses are ubiquitous components of the marine environment, frequently reaching concentrations of 1...
Abstract Roseophage RDJLΦ1 is a siphovirus isolated from South China Sea on Roseobacter denitrifican...
Viruses are the most abundant biological entities in seawater. They influence the population dynamic...
BackgroundMarine bacteriophages play key roles in the community structure of microorganisms, biogeoc...
Viruses in aquatic environments play a key role in microbial population dynamics and nutrient cyclin...
The genus Pseudoalteromonas of the class Gammaproteobacteria represents a ubiquitous clade of marine...
The incidence of potentially pathogenic Vibrio species in the marine environment around Europe, is c...
Viruses are the most abundant biological entities in the ocean and are believed to contribute to nut...
P>Roseophage SIO1 is a lytic marine phage that infects Roseobacter SIO67, a member of the Roseobacte...
Temperate phages are important players in genetic diversification of their bacterial host by transfo...
Marinobacter is the abundant and important algal-associated and hydrocarbon biodegradation bacteria ...
Marinobacter is the abundant and important algal-associated and hydrocarbon biodegradation bacteria ...
The seawater temperature rise promotes the growth of potentially human pathogenic Vibrio species. In...
Marine viruses (phages) alter bacterial diversity and evolution with impacts on marine biogeochemica...
The Roseobacter clade is abundant and widespread in marine environments and plays an important role ...
Viruses are ubiquitous components of the marine environment, frequently reaching concentrations of 1...
Abstract Roseophage RDJLΦ1 is a siphovirus isolated from South China Sea on Roseobacter denitrifican...
Viruses are the most abundant biological entities in seawater. They influence the population dynamic...
BackgroundMarine bacteriophages play key roles in the community structure of microorganisms, biogeoc...
Viruses in aquatic environments play a key role in microbial population dynamics and nutrient cyclin...
The genus Pseudoalteromonas of the class Gammaproteobacteria represents a ubiquitous clade of marine...
The incidence of potentially pathogenic Vibrio species in the marine environment around Europe, is c...
Viruses are the most abundant biological entities in the ocean and are believed to contribute to nut...
P>Roseophage SIO1 is a lytic marine phage that infects Roseobacter SIO67, a member of the Roseobacte...
Temperate phages are important players in genetic diversification of their bacterial host by transfo...
Marinobacter is the abundant and important algal-associated and hydrocarbon biodegradation bacteria ...
Marinobacter is the abundant and important algal-associated and hydrocarbon biodegradation bacteria ...
The seawater temperature rise promotes the growth of potentially human pathogenic Vibrio species. In...
Marine viruses (phages) alter bacterial diversity and evolution with impacts on marine biogeochemica...