Functional Symbionts
161 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 | |
---|---|---|---|---|---|---|---|
Fusarium solani
Ascomycota |
Anoplophora glabripennisColeoptera |
Fungi
|
Extracellular
|
weight and head capsule width were higher in larvae fed on F. solani, and gut lignocellulose activities were elevated in fed larvae |
2024 |
||
Pseudomonas
Pseudomonadota |
Osmia cornifronsHymenoptera |
Bacteria
|
Extracellular
|
this bacterium has been shown to contribute to the synthesis of a defensive toxin in the beetle, Paederus fuscipes, and promotes arginine metabolism under in vitro conditions |
2024 |
||
Gilliamella apicola
Pseudomonadota |
Apis melliferaHymenoptera |
Bacteria
|
Extracellular
|
Gilliamella apicola carries the gene for the desaturase FADS2, which is able to metabolize polyunsaturated fatty acids from pollen and synthesize endocannabinoid, a lipogenic neuroactive substance, thereby modulating reward learning and memory in honeybees. |
2024 |
||
Bombella apis
Pseudomonadota |
Apis ceranaHymenoptera |
Bacteria
|
Extracellular
|
Bombella apis could restore larval-to-pupal transition disrupted by antibiotic treatment |
2024 |
||
Wolbachia wMelPop
Pseudomonadota |
Drosophila melanogasterDiptera |
Bacteria
|
Intracellular
|
The virulent wMelPop can improve the learning and memory capacity of Drosophila. |
2024 |
||
Anthophora bomboidesHymenoptera |
Bacteria and Fungi
|
Intracellular
|
provide key fitness advantages through larval development and diapause |
2024 |
|||
Serratia symbiotica
Pseudomonadota |
Acyrthosiphon pisumHemiptera |
Bacteria
|
Intracellular
|
harboring Serratia improved host aphid growth and fecundity but reduced longevity. Serratia defends aphids against P. japonica by impeding the predator's development and predation capacity, and modulating its foraging behavior |
2024 |
||
Burkholderia
Pseudomonadota |
Riptortus pedestrisHemiptera |
Bacteria
|
Extracellular
|
this bacterial enrichment played a significant role in enhancing insect host reproduction |
2024 |
||
Wolbachia
Pseudomonadota |
Drosophila suzukiiDiptera |
Bacteria
|
Intracellular
|
Wolbachia positively affected female fecundity and offspring mass after a diet shift |
2024 |
||
Hermetia illucensDiptera |
Bacteria
|
Extracellular
|
the microbiota modulates its host expression profile during ontogeny which suggests that the microbiota is essential to BSFL’s normal development. |
2023 |
|||
Caballeronia insecticola
Pseudomonadota |
Riptortus pedestrisHemiptera |
Bacteria
|
Extracellular
|
Gut symbiont resulted in increase in the body size and weight of male adults;increased dispersal capacity of male adults especially for flight |
2023 |
||
Candidatus Hamiltonella
Pseudomonadota |
Aphis gossypiiHemiptera |
Bacteria
|
Extracellular
|
Hamiltonella retarded the growth and development of cotton aphids accompanied by the downregulation of genes related to energy synthesis and nutrient metabolism |
2023 |
||
Pantoea agglomerans
Pseudomonadota |
Frankliniella occidentalisThysanoptera |
Bacteria
|
Extracellular
|
gut symbionts are required for their development |
2023 |
||
Pantoea agglomerans
Pseudomonadota |
Frankliniella intonsaThysanoptera |
Bacteria
|
Extracellular
|
gut symbionts are required for their development |
2023 |
||
Pantoea dispersa
Pseudomonadota |
Thrips tabaciThysanoptera |
Bacteria
|
Extracellular
|
gut symbionts are required for their development |
2023 |
||
Hamiltonella defensa
Pseudomonadota |
Rhopalosiphum maidisHemiptera |
Bacteria
|
aphid strain infected with H. defensa performed shortened developmental duration for 1st instar and total nymph stages, reduced aphid survival rate, offspring, and longevity |
2023 |
|||
Regiella insecticola
Pseudomonadota |
Rhopalosiphum maidisHemiptera |
Bacteria
|
the Regiella-infected strain performed delayed developmental duration and lower adult weight |
2023 |
|||
Caballeronia jiangsuensis
Pseudomonadota |
Riptortus pedestrisHemiptera |
Bacteria
|
Extracellular
|
in laboratory conditions, C. jiangsuensis significantly enhanced the development, body size, and reproductive potentials of R. pedestris, compared to individuals with no symbiotic bacteria. |
2023 |
||
Burkholderia insecticola
Pseudomonadota |
Riptortus pedestrisHemiptera |
Bacteria
|
Extracellular
|
symbiont colonization induces the development of the midgut crypts via finely regulating the enterocyte cell cycles, enabling it to stably and abundantly colonize the generated spacious crypts of the bean bug host |
2023 |
||
Wolbachia
Pseudomonadota |
Habrobracon hebetorHymenoptera |
Bacteria
|
Intracellular
|
indicate significant effects of the intracellular symbiotic bacterium Wolbachia on the metabolism of H. hebetor larvae and on the activity of its digestive enzymes |
2023 |