Functional Symbionts
332 recordsRecords of insect symbionts with verified function from literatures.
Search by:
- • Host species (e.g., "Drosophila")
- • Symbiont name (e.g., "Wolbachia")
- • Function (e.g., "B vitamins")
- • Function Tag (e.g., "Nitrogen fixation")
- • Phylum (e.g., "Proteobacteria")
| Host Insect | Classification | Localization | Function | Function Tags | Year | Edit | |
|---|---|---|---|---|---|---|---|
|
Pectobacterium carotovorum
Pseudomonadota |
MuscidaeBrazil, USA, Singap… |
Bacteria
|
Extracellular
|
2017 |
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|
Psychrobacter sp. PRwf-1
Pseudomonadota |
CalliphoridaeBrazil, USA, Singap… |
Bacteria
|
Extracellular
|
Psychrobacter sp. PRwf-1 shows physiological adaptation to survival in warmer temperatures and has been previously associated with food spoilage. |
2017 |
||
|
Psychrobacter sp. PRwf-1
Pseudomonadota |
MuscidaeBrazil, USA, Singap… |
Bacteria
|
Extracellular
|
Psychrobacter sp. PRwf-1 shows physiological adaptation to survival in warmer temperatures and has been previously associated with food spoilage. |
2017 |
||
|
Wolbachiaspp.
Pseudomonadota |
CalliphoridaeBrazil, USA, Singap… |
Bacteria
|
Intracellular
|
Wolbachia spp. plays important roles in manipulating invertebrate reproductive biology by causing male killing, feminization, parthenogenesis, or cytoplasmic incompatibility. |
2017 |
||
|
Wolbachiaspp.
Pseudomonadota |
MuscidaeBrazil, USA, Singap… |
Bacteria
|
Intracellular
|
Wolbachia spp. plays important roles in manipulating invertebrate reproductive biology by causing male killing, feminization, parthenogenesis, or cytoplasmic incompatibility. |
2017 |
||
Apis melliferaUSA |
Fungi
|
Extracellular
|
2016 |
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Apis melliferaUSA |
Bacteria
|
Extracellular
|
2016 |
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Cochliomyia hominivoraxMalaysia |
Bacteria
|
Intracellular and Extracellular
|
The microbiome (amplicon) can influence chemical communication by altering the production of pheromones. |
2016 |
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|
Achromobacter
Pseudomonadota |
Aedes aegyptiUSA |
Bacteria
|
Achromobacter contributes to the gut microbiome homeostasis maintained by mosquito C-type lectins. |
2016 |
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|
Acinetobacter
Pseudomonadota |
Aedes aegyptiUSA |
Bacteria
|
Acinetobacter contributes to the gut microbiome homeostasis maintained by mosquito C-type lectins. |
2016 |
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|
Alcaligenes
Pseudomonadota |
Aedes aegyptiUSA |
Bacteria
|
Alcaligenes contributes to the gut microbiome homeostasis maintained by mosquito C-type lectins. |
2016 |
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|
Bacillus cereus
Bacillota |
Aedes aegyptiUSA |
Bacteria
|
Bacillus cereus contributes to the gut microbiome homeostasis maintained by mosquito C-type lectins. |
2016 |
|||
|
Chromobacterium aquaticum
Pseudomonadota |
Aedes aegyptiUSA |
Bacteria
|
Chromobacterium aquaticum contributes to the gut microbiome homeostasis maintained by mosquito C-type lectins. |
2016 |
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|
Chryseobacterium
Bacteroidota |
Aedes aegyptiUSA |
Bacteria
|
Chryseobacterium contributes to the gut microbiome homeostasis maintained by mosquito C-type lectins. |
2016 |
|||
|
Comamonas testosteroni
Pseudomonadota |
Aedes aegyptiUSA |
Bacteria
|
Comamonas testosteroni contributes to the gut microbiome homeostasis maintained by mosquito C-type lectins. |
2016 |
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|
Leucobacter
Actinomycetota |
Aedes aegyptiUSA |
Bacteria
|
Leucobacter contributes to the gut microbiome homeostasis maintained by mosquito C-type lectins. |
2016 |
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|
Bacillus simplex
Bacillota |
Aedes aegyptiUSA |
Bacteria
|
Bacillus simplex contributes to the gut microbiome homeostasis maintained by mosquito C-type lectins. |
2016 |
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|
Pseudomonas protegens
Pseudomonadota |
Aedes aegyptiUSA |
Bacteria
|
Pseudomonas protegens contributes to the gut microbiome homeostasis maintained by mosquito C-type lectins. |
2016 |
|||
|
Serratia marcescens
Pseudomonadota |
Aedes aegyptiUSA |
Bacteria
|
Serratia marcescens contributes to the gut microbiome homeostasis maintained by mosquito C-type lectins. |
2016 |
|||
|
Sphingobium
Pseudomonadota |
Aedes aegyptiUSA |
Bacteria
|
Sphingobium contributes to the gut microbiome homeostasis maintained by mosquito C-type lectins. |
2016 |