AbstractBiological diversity arises among genetically equal subpopulations in the same environment, a phenomenon called phenotypic heterogeneity. The life cycle of the enteric bacterium Photorhabdus luminescens involves a symbiotic interaction with nematodes as well as a pathogenic association with insect larvae. P. luminescens exists in two distinct phenotypic forms designated as primary (1°) and secondary (2°). In contrast to 1° cells, 2° cells are non-pigmented due to the absence of natural compounds, especially anthraquinones (AQs). We identified a novel type of transcriptional regulator, AntJ, which activates expression of the antA-I operon responsible for AQ production. AntJ heterogeneously activates the AQ production in single P. lum...
Phenotypic heterogeneity in microbial communities enables genetically identical organisms to behave ...
Phenotypic heterogeneity in microbial communities enables genetically identical organisms to behave ...
Photorhabdus luminescens TTO1 and Xenorhabdus nematophila HGB081 are insect pathogenic bacteria and ...
Biological diversity arises among genetically equal subpopulations in the same environment, a phenom...
Biological diversity arises among genetically equal subpopulations in the same environment, a phenom...
Biological diversity arises among genetically equal subpopulations in the same environment, a phenom...
AbstractBiological diversity arises among genetically equal subpopulations in the same environment, ...
The Gram-negative bacteria Photorhabdus and Xenorhabdus are known to produce a variety of different ...
The Gram-negative bacteria Photorhabdus and Xenorhabdus are known to produce a variety of different ...
Phenotypic heterogeneity in microbial communities enables genetically identical organisms to behave ...
Photorhabdus is a genus of Gram-negative entomopathogenic bacteria that also maintain a mutualistic ...
Photorhabdus is a genus of Gram-negative entomopathogenic bacteria that also maintain a mutualistic ...
Phenotypic heterogeneity in microbial communities enables genetically identical organisms to behave ...
Phenotypic heterogeneity in microbial communities enables genetically identical organisms to behave ...
Photorhabdus and Xenorhabdus bacteria live in a highly specific symbiosis with nematodes that belong...
Phenotypic heterogeneity in microbial communities enables genetically identical organisms to behave ...
Phenotypic heterogeneity in microbial communities enables genetically identical organisms to behave ...
Photorhabdus luminescens TTO1 and Xenorhabdus nematophila HGB081 are insect pathogenic bacteria and ...
Biological diversity arises among genetically equal subpopulations in the same environment, a phenom...
Biological diversity arises among genetically equal subpopulations in the same environment, a phenom...
Biological diversity arises among genetically equal subpopulations in the same environment, a phenom...
AbstractBiological diversity arises among genetically equal subpopulations in the same environment, ...
The Gram-negative bacteria Photorhabdus and Xenorhabdus are known to produce a variety of different ...
The Gram-negative bacteria Photorhabdus and Xenorhabdus are known to produce a variety of different ...
Phenotypic heterogeneity in microbial communities enables genetically identical organisms to behave ...
Photorhabdus is a genus of Gram-negative entomopathogenic bacteria that also maintain a mutualistic ...
Photorhabdus is a genus of Gram-negative entomopathogenic bacteria that also maintain a mutualistic ...
Phenotypic heterogeneity in microbial communities enables genetically identical organisms to behave ...
Phenotypic heterogeneity in microbial communities enables genetically identical organisms to behave ...
Photorhabdus and Xenorhabdus bacteria live in a highly specific symbiosis with nematodes that belong...
Phenotypic heterogeneity in microbial communities enables genetically identical organisms to behave ...
Phenotypic heterogeneity in microbial communities enables genetically identical organisms to behave ...
Photorhabdus luminescens TTO1 and Xenorhabdus nematophila HGB081 are insect pathogenic bacteria and ...