Functional Symbionts
2442 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 | |
|---|---|---|---|---|---|---|---|
|
Wolbachia
Pseudomonadota |
Habrobracon hebetorRussia |
Bacteria
|
Intracellular
|
Wolbachia significantly affects the metabolism of Habrobracon hebetor larvae and alters the activity of its digestive enzymes. |
2023 |
||
|
Serratia marcescens
Pseudomonadota |
Riptortus pedestrisChina |
Bacteria
|
Extracellular
|
Serratia marcescens mediates the detoxification of organophosphate pesticide (dimethoate) in Riptortus pedestris by possessing an organophosphorus-degrading MBL-fold metallo-hydrolase gene. It also enhances host survivorship when exposed to the pesticide. |
2023 |
||
|
Sphingomonas
Pseudomonadota |
Aphis gossypiiChina |
Bacteria
|
Sphingomonas mediates imidacloprid resistance in Aphis gossypii by utilizing hydroxylation and nitroreduction pathways. |
2023 |
|||
|
Acinetobacter
Pseudomonadota |
Anopheles sinensisSouth Korea |
Bacteria
|
Extracellular
|
Acinetobacter increases the resistance of Anopheles sinensis (by analogy to An. gambiae) to Plasmodium development, partly by inducing anti-Plasmodium factors in the Imd immune pathway. |
2023 |
||
|
Erwinia
Pseudomonadota |
Anopheles sinensisSouth Korea |
Bacteria
|
Extracellular
|
Erwinia has a potential role to interact with malaria parasites and confer pathogen resistance in Anopheles sinensis. |
2023 |
||
|
Enterobacteriaceae
Pseudomonadota |
Anopheles sinensisSouth Korea |
Bacteria
|
Extracellular
|
Enterobacteriaceae has a potential role to interact with malaria parasites and confer pathogen resistance in Anopheles sinensis. |
2023 |
||
|
Pantoea
Pseudomonadota |
Anopheles sinensisSouth Korea |
Bacteria
|
Extracellular
|
Pantoea has a potential role to interact with malaria parasites and confer pathogen resistance in Anopheles sinensis. |
2023 |
||
|
Pseudomonas
Pseudomonadota |
Anopheles sinensisSouth Korea |
Bacteria
|
Extracellular
|
Pseudomonas is the most prevalent microbiota in Plasmodium-negative Anopheles sinensis groups and protects mosquitoes from the invasion of malaria parasites, suggesting a role in pathogen resistance. |
2023 |
||
|
Serratia
Pseudomonadota |
Anopheles sinensisSouth Korea |
Bacteria
|
Extracellular
|
Serratia might block the sporogonic development of P. vivax parasites (by analogy to S. marcescens in An. albimanus), conferring pathogen resistance in Anopheles sinensis. |
2023 |
||
|
Staphylococcus
Bacillota |
Anopheles sinensisSouth Korea |
Bacteria
|
Extracellular
|
Staphylococcus has a potential role to interact with malaria parasites and confer pathogen resistance in Anopheles sinensis. |
2023 |
||
|
Arsenophonus nasoniae
Pseudomonadota |
Nasonia vitripennisHoge Veluwe, Germany |
Bacteria
|
Intracellular
|
Arsenophonus nasoniae is a causative agent of male killing in the parasitic wasp Nasonia vitripennis. |
2023 |
||
Paederus fuscipesIran |
Bacteria
|
2023 |
|||||
|
Rhodococcus rhodnii ATCC 35None71
Actinomycetota |
Bacteria
|
Rhodococcus rhodnii ATCC 35071 enhances host fitness by promoting faster development, higher survival, and increased egg laying in Rhodnius prolixus. |
2023 |
||||
|
Arsenophonus sp.
Pseudomonadota |
Agonoscena pistaciaeIran |
Bacteria
|
Extracellular
|
2023 |
|||
|
Candidatus Carsonella sp.
Pseudomonadota |
Agonoscena pistaciaeIran |
Bacteria
|
Extracellular
|
2023 |
|||
|
Candidatus Hamiltonella defensa
Pseudomonadota |
Agonoscena pistaciaeIran |
Bacteria
|
Extracellular
|
2023 |
|||
|
Wolbachia
Pseudomonadota |
Agonoscena pistaciaeIran |
Bacteria
|
Extracellular
|
2023 |
|||
|
Bacillus
Bacillota |
Helicoverpa armigeraChina |
Bacteria
|
2023 |
||||
|
Enterobacter
Pseudomonadota |
Helicoverpa armigeraChina |
Bacteria
|
2023 |
||||
|
Enterococcus
Bacillota |
Helicoverpa armigeraChina |
Bacteria
|
2023 |