Functional Symbionts
2682 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 | |
|---|---|---|---|---|---|---|---|
|
Microbacterium arborescens
Actinomycetota |
Spodoptera frugiperdaBrasil |
Bacteria
|
Intracellular
|
Microbacterium arborescens may influence the metabolization of pesticides in insects. |
2017 |
||
|
Pseudomonas stutzeri
Pseudomonadota |
Spodoptera frugiperdaBrasil |
Bacteria
|
Pseudomonas stutzeri is involved in the degradation of lambda-cyhalothrin, deltamethrin, chlorpyrifos ethyl, lufenuron, and spinosyn. |
2017 |
|||
|
Pseudomonas psychrotolerans
Pseudomonadota |
Spodoptera frugiperdaBrasil |
Bacteria
|
Pseudomonas psychrotolerans is involved in the degradation of lambda-cyhalothrin, deltamethrin, chlorpyrifos ethyl, lufenuron, and spinosyn. |
2017 |
|||
|
Pseudomonas stutzeri
Pseudomonadota |
Spodoptera frugiperdaBrasil |
Bacteria
|
Intracellular
|
Pseudomonas stutzeri may influence the metabolization of pesticides in insects. |
2017 |
||
|
Pseudomonas psychrotolerans
Pseudomonadota |
Spodoptera frugiperdaBrasil |
Bacteria
|
Intracellular
|
Pseudomonas psychrotolerans may influence the metabolization of pesticides in insects. |
2017 |
||
|
Staphylococcus sciurisubsp.sciuri
Bacillota |
Spodoptera frugiperdaBrasil |
Bacteria
|
Intracellular
|
Staphylococcus sciuri subsp. sciuri may influence the metabolization of pesticides in insects. |
2017 |
||
|
Burkholderia
Pseudomonadota |
Riptortus pedestrisSouth Korea |
Bacteria
|
The lipopolysaccharide core oligosaccharide of Burkholderia is critical in maintaining a proper gut symbiosis, including symbiont titer, host growth, fitness, and defense against bacterial challenge. |
2017 |
|||
|
Enterobacter cloacae
Pseudomonadota |
MuscidaeBrazil, USA, Singap… |
Bacteria
|
Extracellular
|
2017 |
|||
|
Escherichia coli
Pseudomonadota |
CalliphoridaeBrazil, USA, Singap… |
Bacteria
|
Extracellular
|
2017 |
|||
|
Escherichia coli
Pseudomonadota |
MuscidaeBrazil, USA, Singap… |
Bacteria
|
Extracellular
|
2017 |
|||
|
Klebsiella pneumoniae
Pseudomonadota |
MuscidaeBrazil, USA, Singap… |
Bacteria
|
Extracellular
|
2017 |
|||
|
Pectobacterium carotovorum
Pseudomonadota |
MuscidaeBrazil, USA, Singap… |
Bacteria
|
Extracellular
|
2017 |
|||
|
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 |
||
|
Candidatus Erwinia dacicola
Pseudomonadota |
Bactrocera oleaeGreece |
Bacteria
|
Extracellular
|
Candidatus Erwinia dacicola contains a number of genes encoding detoxification and digestive enzymes, indicating a potential association with the ability of B. oleae to cope with green olives, and shows activated amino-acid metabolism during larval development. |
2017 |
||
|
Bacillus cereus
Bacillota |
Bacteria
|
Extracellular
|
Bacillus cereus might be a promising paratransgenesis candidate. |
2017 |
|||
|
Enterobacter sp.
Pseudomonadota |
Bacteria
|
Extracellular
|
Enterobacter sp. might be a promising paratransgenesis candidate. |
2017 |
|||
|
Enterococcus faecalis
Bacillota |
Bacteria
|
Extracellular
|
Enterococcus faecalis might be a promising paratransgenesis candidate. |
2017 |