Acyrthosiphon (Genus)
Species List
2 species in genus Acyrthosiphon
Related Symbionts
56 recordsSymbiont records associated with Acyrthosiphon genus
Classification | Host | Function | Function Tags | Reference | |
---|---|---|---|---|---|
Buchnera aphidicola
Pseudomonadota |
Bacteria
|
Buchnera the nutritional endosymbiont of A. pisum is located inside of bacteriocytes and requires aspartate from the aphid host, because it cannot ma… |
Digestive enzymes
Sugar metabolism
|
||
Serratia symbiotica
Pseudomonadota |
Bacteria
|
process of regression from winged to wingless morph was inhibited by Serratia symbiotica. The existence of the symbiont did not affect the body mass … |
Growth and Development
|
||
Serratia symbiotica
Pseudomonadota |
Bacteria
|
harboring Serratia improved host aphid growth and fecundity but reduced longevity. Serratia defends aphids against P. japonica by impeding the predat… |
Growth and Development
Fertility
Natural enemy resistance
|
||
Rickettsiella
Pseudomonadota |
Bacteria
|
changes the insects’ body color from red to green in natural populations, the infection increased amounts of blue-green polycyclic quinones, whereas … |
- | ||
Candidatus Hamiltonella defensa
Pseudomonadota |
Bacteria
|
In response to ladybirds, symbiont-infected pea aphids exhibited proportionately fewer evasive defences (dropping and walking away) than non-infected… |
Natural enemy resistance
|
||
Hamiltonella defensa
Pseudomonadota |
Bacteria
|
symbiont have a weak effect on the ability of aphids to defend themselves against the parasitic wasps Aphidius ervi during the attack and a strong ef… |
Natural enemy resistance
|
||
Regiella insecticola
Pseudomonadota |
Bacteria
|
symbiont have a weak effect on the ability of aphids to defend themselves against the parasitic wasps Aphidius ervi during the attack and a strong ef… |
Natural enemy resistance
|
||
Candidatus Hamiltonella defensa
Pseudomonadota |
Bacteria
|
the effects of attack by parasitoid wasps are ameliorated by infection with H. defensa: the wasp larva dies prematurely, allowing the aphid host to d… |
Natural enemy resistance
|
||
Buchnera aphidicola
Pseudomonadota |
Bacteria
|
It supplies the host with vitamins and essential amino acids, such as arginine and methionine that aphids cannot synthesize or derive insufficiently … |
Nutrient provision
|
||
Spiroplasma
Mycoplasmatota |
Bacteria
|
injected two Spiroplasma isolates into secondary symbiont-free aphids and found that wasps showed a significant preference for plants previously atta… |
Natural enemy resistance
|
||
Regiella
Pseudomonadota |
Bacteria
|
against this entomopathogen Pandora neoaphidis, reduce mortality and also decrease fungal sporulation on dead aphids which may help protect nearby ge… |
Pathogen interaction
|
||
Rickettsia
Pseudomonadota |
Bacteria
|
against this entomopathogen Pandora neoaphidis, reduce mortality and also decrease fungal sporulation on dead aphids which may help protect nearby ge… |
Pathogen interaction
|
||
Rickettsiella
Pseudomonadota |
Bacteria
|
against this entomopathogen Pandora neoaphidis, reduce mortality and also decrease fungal sporulation on dead aphids which may help protect nearby ge… |
Pathogen interaction
|
||
Spiroplasma
Mycoplasmatota |
Bacteria
|
against this entomopathogen Pandora neoaphidis, reduce mortality and also decrease fungal sporulation on dead aphids which may help protect nearby ge… |
Pathogen interaction
|
||
Buchnera aphidicola
Pseudomonadota |
Bacteria
|
metabolic constraints or antisense transcripts may reduce Buchnera-mediated production of pantothenate, resulting in poor aphid performance on pantot… |
Nutrient provision
|
||
Serratia symbiotica
Pseudomonadota |
Bacteria
|
with a single naturally occurring isolate of Serratia symbiotica, wasps showed a significant preference for plants that had been fed on by aphids wit… |
Natural enemy resistance
|
||
Candidatus Regiella insecticola 5.15
Pseudomonadota |
Bacteria
|
provides strong protection against parasitoid wasps; Negative effects of R5.15 on host survival and lifetime reproduction were limited and frequently… |
Natural enemy resistance
|
||
Buchnera aphidicola
Pseudomonadota |
Bacteria
|
Purine metabolism genes in the symbiotic bacterium Buchnera complement aphid genes, and Buchnera can meet its nucleotide requirement from aphid-deriv… |
Nutrient provision
|
||
Regiella insecticola
Pseudomonadota |
Bacteria
|
protects pea aphids from the aphid-specific fungal entomopathogen Zoophthora occidentalis but not from the generalist insect fungal pathogen Beauveri… |
Pathogen interaction
|
||
Rickettsiella sp.
Pseudomonadota |
Bacteria
|
in an experiment with a single-injected isolate of Rickettsiella sp. wasps were also attracted to plants fed on by aphids without secondary symbionts |
Natural enemy resistance
|
||
Serratia
Pseudomonadota |
Bacteria
|
Serratia defends aphids against P. japonica by impeding the predator's development and predation capacity, and modulating its foraging behavior |
Natural enemy resistance
|
||
Hamiltonella phage APSE
Pseudomonadota |
Bacteria
|
confers protection against parasitoid wasps, but only when H. defensa is itself infected by the phage A. pisum secondary endosymbiont (APSE) |
Natural enemy resistance
|
||
Hamiltonella defensa
Pseudomonadota |
Bacteria
|
attenuate the systemic release of volatiles by plants after aphid attack, reducing parasitic wasp recruitment and increasing aphid fitness. |
Natural enemy resistance
|
||
Candidatus Hamiltonella defensa
Pseudomonadota |
Bacteria
|
hyperparasitoid (either Aphidius ervi or Aphelinus abdominalis) hatch rate was substantially affected by the presence of the symbiont |
- | ||
Candidatus Hamiltonella defensa 5AT
Pseudomonadota |
Bacteria
|
can block larval development of the solitary endoparasitoid wasps Aphidius ervi and Aphidius eadyi, rescuing the aphid hos |
Natural enemy resistance
|
||
Serratia symbiotica
Pseudomonadota |
Bacteria
|
enzymes from S. symbiotica may facilitate the digestion of plant proteins, thereby helping to suppress plant defense |
Digestive enzymes
Plant defense
|
||
Serratia symbiotica
Pseudomonadota |
Bacteria
|
impairs plant defence response by suppressing Ca2+ elevation and ROS accumulation, allowing colonization of aphids |
Plant defense
|
||
Rickettsiella viridis
Pseudomonadota |
Bacteria
|
young red aphid larvae infected whith symbiont become greener at adulthood,which can reduce predation risk |
Pigmentation alteration
|
||
Hamiltonella defensa
Pseudomonadota |
Bacteria
|
source of resistance to A. ervi is infection by the facultative bacterial symbiont Hamiltonella defensa |
Natural enemy resistance
|
||
Hamiltonella defensa
Pseudomonadota |
Bacteria
|
aphid larvae become darker green when co-infected with Rickettsiella viridis and Hamiltonella defensa |
Pigmentation alteration
|
||
Serratia symbiotica
Pseudomonadota |
Bacteria
|
Serratia promoted development and growth of its aphid host through enhancing fatty acid biosynthesis |
Growth and Development
|
||
Buchnera aphidicola
Pseudomonadota |
Bacteria
|
in senescent bacteriocytes, the endosymbionts are degraded through a lysosomal-dependent mechanism |
- | ||
Fukatsuia
Pseudomonadota |
Bacteria
|
facultative symbiont aided the recovery of the obligate symbiont and the host after heat stress |
- | ||
Regiella
Pseudomonadota |
Bacteria
|
facultative symbiont aided the recovery of the obligate symbiont and the host after heat stress |
- | ||
Candidatus Regiella insecticola
Pseudomonadota |
Bacteria
|
Regiella reduces winged offspring production and changes the timing of sexual morph production |
- | ||
Buchnera aphidicola
Pseudomonadota |
Bacteria
|
the pea aphid lacks the capacity to synthesize arginine, which is produced by Buchnera APS |
Nutrient provision
|
||
Rickettsiella
Pseudomonadota |
Bacteria
|
Rickettsiella changes the insects’ body color from red to green in natural populations |
Pigmentation alteration
|
||
Hamiltonella defensa
Pseudomonadota |
Bacteria
|
kills parasitoid wasp larvae, allowing aphid hosts to survive and reproduce |
Natural enemy resistance
|
||
Hamiltonella defensa
Pseudomonadota |
Bacteria
|
can provide a defence against hymenopteran parasitoids to their aphid hosts |
Natural enemy resistance
|
||
Serratia symbiotica SAp
Pseudomonadota |
Bacteria
|
closer to an obligate endosymbiont than to other facultative S. symbiotica |
- | ||
Candidatus Regiella insecticola 5.15
Pseudomonadota |
Bacteria
|
significantly reduced parasitoid success and increased aphid survivorship |
Natural enemy resistance
|
||
Xenorhabdus bovienii
Pseudomonadota |
Bacteria
|
have the gene PIN1 encoding the protease inhibitor protein against aphids |
- | ||
Buchnera aphidicola
Pseudomonadota |
Bacteria
|
involved in the biosynthesis of more than 10 essential amino acids |
Nutrient provision
|
||
Candidatus Hamiltonella defensa
Pseudomonadota |
Bacteria
|
provides protection against parasitism by the wasp, Aphidius ervi |
Natural enemy resistance
|
||
Buchnera aphidicola
Pseudomonadota |
Bacteria
|
can synthesize and provide some essential nutrients for its host |
Nutrient provision
|
||
Hamiltonella defensa
Pseudomonadota |
Bacteria
|
decreased adult survival on Acyrthosiphon pisum |
- | ||
Candidatus Hamiltonella defensa
Pseudomonadota |
Bacteria
|
confers protection against parasitoid wasps |
Natural enemy resistance
|
||
Buchnera aphidicola
Pseudomonadota |
Bacteria
|
Synthetic Essential amino acid tryptophan |
Nutrient provision
|
||
Buchnera aphidicola
Pseudomonadota |
Bacteria
|
producing essential amino acids (EAAs) |
Digestive enzymes
|
||
Buchnera
Pseudomonadota |
Bacteria
|
synthesize amino acids |
Nutrient provision
|
||
Regiella insecticola
Pseudomonadota |
Bacteria
|
Acyrthosiphon pisum |
- | ||
bacteria
- |
Bacteria
|
- |
- | ||
Buchnera aphidicola
Pseudomonadota |
Bacteria
|
- |
- | ||
Candidatus Regiella insecticola strain Tut
Pseudomonadota |
Bacteria
|
- |
- | ||
Candidatus Serratia symbiotica Strain IS
Pseudomonadota |
Bacteria
|
- |
- | ||
Spiroplasma
Mycoplasmatota |
Bacteria
|
- |
- |
Metagenome Information
0 recordsMetagenome sequencing data associated with Acyrthosiphon species
Run | Platform | Host | Location | Date | BioProject |
---|---|---|---|---|---|
No metagenomes foundNo metagenome records associated with Acyrthosiphon species. |
Amplicon Information
3 recordsAmplicon sequencing data associated with Acyrthosiphon species