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Tripartite species interaction: eukaryotic hosts suffer more from phage susceptible than from phage resistant bacteria
by
Wendling, Carolin C.
, Piecyk, Agnes
, Refardt, Dominik
, Liesegang, Heiko
, Roth, Olivia
, Hertel, Robert
, Bunk, Boyke
, Overmann, Jörg
, Chibani, Cynthia
in
Animal Systematics/Taxonomy/Biogeography
/ Animals
/ Bacteria
/ Bacteria-phage infection network
/ Bacterial infections
/ Bacteriophages - genetics
/ Bacteriophages - physiology
/ Biological Evolution
/ Biomedical and Life Sciences
/ Categories
/ Deoxyribonucleic acid
/ DNA
/ Entomology
/ Evolution
/ Evolutionary Biology
/ Fish Diseases - virology
/ Fishes - classification
/ Fitness
/ Gene expression
/ Genes
/ Genetics and Population Dynamics
/ Genome, Bacterial
/ Genomes
/ Host-Pathogen Interactions
/ Hyperparasitism
/ Infections
/ Life Sciences
/ Lysogeny
/ Parasites
/ Phages
/ Phylogeny
/ Prophages
/ Reproductive fitness
/ Research Article
/ Speciation and evolutionary genetics
/ Temperate phages
/ Tripartite interaction
/ Vibrio
/ Vibrio - genetics
/ Vibrio - immunology
/ Vibrio - virology
/ Vibrio Infections - veterinary
/ Vibrio Infections - virology
/ Virulence
/ Waterborne diseases
2017
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Tripartite species interaction: eukaryotic hosts suffer more from phage susceptible than from phage resistant bacteria
by
Wendling, Carolin C.
, Piecyk, Agnes
, Refardt, Dominik
, Liesegang, Heiko
, Roth, Olivia
, Hertel, Robert
, Bunk, Boyke
, Overmann, Jörg
, Chibani, Cynthia
in
Animal Systematics/Taxonomy/Biogeography
/ Animals
/ Bacteria
/ Bacteria-phage infection network
/ Bacterial infections
/ Bacteriophages - genetics
/ Bacteriophages - physiology
/ Biological Evolution
/ Biomedical and Life Sciences
/ Categories
/ Deoxyribonucleic acid
/ DNA
/ Entomology
/ Evolution
/ Evolutionary Biology
/ Fish Diseases - virology
/ Fishes - classification
/ Fitness
/ Gene expression
/ Genes
/ Genetics and Population Dynamics
/ Genome, Bacterial
/ Genomes
/ Host-Pathogen Interactions
/ Hyperparasitism
/ Infections
/ Life Sciences
/ Lysogeny
/ Parasites
/ Phages
/ Phylogeny
/ Prophages
/ Reproductive fitness
/ Research Article
/ Speciation and evolutionary genetics
/ Temperate phages
/ Tripartite interaction
/ Vibrio
/ Vibrio - genetics
/ Vibrio - immunology
/ Vibrio - virology
/ Vibrio Infections - veterinary
/ Vibrio Infections - virology
/ Virulence
/ Waterborne diseases
2017
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Tripartite species interaction: eukaryotic hosts suffer more from phage susceptible than from phage resistant bacteria
by
Wendling, Carolin C.
, Piecyk, Agnes
, Refardt, Dominik
, Liesegang, Heiko
, Roth, Olivia
, Hertel, Robert
, Bunk, Boyke
, Overmann, Jörg
, Chibani, Cynthia
in
Animal Systematics/Taxonomy/Biogeography
/ Animals
/ Bacteria
/ Bacteria-phage infection network
/ Bacterial infections
/ Bacteriophages - genetics
/ Bacteriophages - physiology
/ Biological Evolution
/ Biomedical and Life Sciences
/ Categories
/ Deoxyribonucleic acid
/ DNA
/ Entomology
/ Evolution
/ Evolutionary Biology
/ Fish Diseases - virology
/ Fishes - classification
/ Fitness
/ Gene expression
/ Genes
/ Genetics and Population Dynamics
/ Genome, Bacterial
/ Genomes
/ Host-Pathogen Interactions
/ Hyperparasitism
/ Infections
/ Life Sciences
/ Lysogeny
/ Parasites
/ Phages
/ Phylogeny
/ Prophages
/ Reproductive fitness
/ Research Article
/ Speciation and evolutionary genetics
/ Temperate phages
/ Tripartite interaction
/ Vibrio
/ Vibrio - genetics
/ Vibrio - immunology
/ Vibrio - virology
/ Vibrio Infections - veterinary
/ Vibrio Infections - virology
/ Virulence
/ Waterborne diseases
2017
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Tripartite species interaction: eukaryotic hosts suffer more from phage susceptible than from phage resistant bacteria
Journal Article
Tripartite species interaction: eukaryotic hosts suffer more from phage susceptible than from phage resistant bacteria
2017
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Overview
Background
Evolutionary shifts in bacterial virulence are often associated with a third biological player, for instance temperate phages, that can act as hyperparasites. By integrating as prophages into the bacterial genome they can contribute accessory genes, which can enhance the fitness of their prokaryotic carrier (lysogenic conversion). Hyperparasitic influence in tripartite biotic interactions has so far been largely neglected in empirical host-parasite studies due to their inherent complexity. Here we experimentally address whether bacterial resistance to phages and bacterial harm to eukaryotic hosts is linked using a natural tri-partite system with bacteria of the genus
Vibrio
, temperate vibriophages and the pipefish
Syngnathus typhle
. We induced prophages from all bacterial isolates and constructed a three-fold replicated, fully reciprocal 75 × 75 phage-bacteria infection matrix.
Results
According to their resistance to phages, bacteria could be grouped into three distinct categories: highly susceptible (HS-bacteria), intermediate susceptible (IS-bacteria), and resistant (R-bacteria). We experimentally challenged pipefish with three selected bacterial isolates from each of the three categories and determined the amount of viable
Vibrio
counts from infected pipefish and the expression of pipefish immune genes. While the amount of viable
Vibrio
counts did not differ between bacterial groups, we observed a significant difference in relative gene expression between pipefish infected with phage susceptible and phage resistant bacteria.
Conclusion
These findings suggest that bacteria with a phage-susceptible phenotype are more harmful against a eukaryotic host, and support the importance of hyperparasitism and the need for an integrative view across more than two levels when studying host-parasite evolution.
Publisher
BioMed Central,BMC
Subject
Animal Systematics/Taxonomy/Biogeography
/ Animals
/ Bacteria
/ Bacteria-phage infection network
/ Biomedical and Life Sciences
/ DNA
/ Fitness
/ Genes
/ Genetics and Population Dynamics
/ Genomes
/ Lysogeny
/ Phages
/ Speciation and evolutionary genetics
/ Vibrio
/ Vibrio Infections - veterinary
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