Bacteria and diatoms are primary colonizers of marine surfaces and hence play a crucial role in the attachment and subsequent growth of macroorganisms. It has been suggested that the temperate green alga Ulvalactuca relies on the defence provided by the epiphytic bacterial community to regulate surface fouling of colonising organisms. In this study, ten resident bacterial isolates from tropical U. lactuca were tested for their antibacterial and antidiatom properties that may regulate surface colonization on the algae. Sixty percent of the epiphytic isolates expressed antibacterial properties against other resident bacteria and 80% had antidiatom activity against the pennate diatom, Cylindrothecafusiformis. Isolates of the Pseudoalteromonas ...
The biofouling of surfaces submerged in the marine environment includes primary colonization of the ...
187-188Toluene-methanol extracts of 15 species of marine algae were screened for their antimicrobial...
International audienceMarine macroalgae are particularly prone to epiphytism. The colonisation of th...
It is widely accepted that bacterial epiphytes can inhibit the colonization of surfaces by common fo...
The surfaces of marine eukaryotes provide a unique habitat for colonizing microorganisms where compe...
Bacteria that produce inhibitory compounds on the surface of marine algae are thought to contribute ...
Bacteria that produce inhibitory compounds on the surface of marine algae are thought to contribute ...
diversity. The surfaces of marine eukaryotes provide a unique habitat for colonizing microorganisms ...
Heterotrophic bacteria associated with the green alga <i>Ulva rigida</i>, collected from the coast o...
Heterotrophic bacteria associated with the green alga Ulva rigida, collected from the coast of Tunis...
Heterotrophic bacteria associated with the green alga Ulva rigida, collected from the coast of Tunis...
We investigated the diversity of epibiotic bacteria possessing antimicrobial activity isolated from ...
The biofouling of surfaces submerged in the marine environment includes primary colonization of the ...
International audienceThe inhibition of bacterial colonization by seaweeds belonging to the Florideo...
International audienceThe inhibition of bacterial colonization by seaweeds belonging to the Florideo...
The biofouling of surfaces submerged in the marine environment includes primary colonization of the ...
187-188Toluene-methanol extracts of 15 species of marine algae were screened for their antimicrobial...
International audienceMarine macroalgae are particularly prone to epiphytism. The colonisation of th...
It is widely accepted that bacterial epiphytes can inhibit the colonization of surfaces by common fo...
The surfaces of marine eukaryotes provide a unique habitat for colonizing microorganisms where compe...
Bacteria that produce inhibitory compounds on the surface of marine algae are thought to contribute ...
Bacteria that produce inhibitory compounds on the surface of marine algae are thought to contribute ...
diversity. The surfaces of marine eukaryotes provide a unique habitat for colonizing microorganisms ...
Heterotrophic bacteria associated with the green alga <i>Ulva rigida</i>, collected from the coast o...
Heterotrophic bacteria associated with the green alga Ulva rigida, collected from the coast of Tunis...
Heterotrophic bacteria associated with the green alga Ulva rigida, collected from the coast of Tunis...
We investigated the diversity of epibiotic bacteria possessing antimicrobial activity isolated from ...
The biofouling of surfaces submerged in the marine environment includes primary colonization of the ...
International audienceThe inhibition of bacterial colonization by seaweeds belonging to the Florideo...
International audienceThe inhibition of bacterial colonization by seaweeds belonging to the Florideo...
The biofouling of surfaces submerged in the marine environment includes primary colonization of the ...
187-188Toluene-methanol extracts of 15 species of marine algae were screened for their antimicrobial...
International audienceMarine macroalgae are particularly prone to epiphytism. The colonisation of th...