Functional Symbionts

291 records

Records of insect symbionts with verified function from literatures.

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  • Phylum (e.g., "Proteobacteria")
Host Insect Classification Localization Function Function Tags Year Edit
Acidimonas

Pseudomonadota

Osmia bicornis

Hymenoptera

Bacteria
Extracellular

food uptake and host survival

2013

Acidimonas

Pseudomonadota

Osmia bicornis

Hymenoptera

Bacteria
Extracellular

food uptake and host survival

2013

Craurococcus

Pseudomonadota

Osmia bicornis

Hymenoptera

Bacteria
Extracellular

food uptake and host survival

2013

Saccharibacter

Pseudomonadota

Osmia bicornis

Hymenoptera

Bacteria
Extracellular

food uptake and host survival

2013

Tanticharoenia

Pseudomonadota

Osmia bicornis

Hymenoptera

Bacteria
Extracellular

food uptake and host survival

2013

Termitidae

Blattodea

Bacteria
Extracellular

The ability of these arthropods to feed on wood, foliage and detritus is likely to involve catalysis by different types of cellulases/hemicellulases that are secreted by gut microbiota to digest the structural and recalcitrant lignocellulosic residues in their foods.

2013

Termitidae

Blattodea

Bacteria
Extracellular

The ability of these arthropods to feed on wood, foliage and detritus is likely to involve catalysis by different types of cellulases/hemicellulases that are secreted by gut microbiota to digest the structural and recalcitrant lignocellulosic residues in their foods.

2013

Termitidae

Blattodea

Bacteria
Extracellular

The ability of these arthropods to feed on wood, foliage and detritus is likely to involve catalysis by different types of cellulases/hemicellulases that are secreted by gut microbiota to digest the structural and recalcitrant lignocellulosic residues in their foods.

2013

Termitidae

Blattodea

Bacteria
Extracellular

The ability of these arthropods to feed on wood, foliage and detritus is likely to involve catalysis by different types of cellulases/hemicellulases that are secreted by gut microbiota to digest the structural and recalcitrant lignocellulosic residues in their foods.

2013

Termitidae

Blattodea

Bacteria
Extracellular

The ability of these arthropods to feed on wood, foliage and detritus is likely to involve catalysis by different types of cellulases/hemicellulases that are secreted by gut microbiota to digest the structural and recalcitrant lignocellulosic residues in their foods.

2013

Termitidae

Blattodea

Bacteria
Extracellular

The ability of these arthropods to feed on wood, foliage and detritus is likely to involve catalysis by different types of cellulases/hemicellulases that are secreted by gut microbiota to digest the structural and recalcitrant lignocellulosic residues in their foods.

2013

Termitidae

Blattodea

Bacteria
Extracellular

The ability of these arthropods to feed on wood, foliage and detritus is likely to involve catalysis by different types of cellulases/hemicellulases that are secreted by gut microbiota to digest the structural and recalcitrant lignocellulosic residues in their foods.

2013

Bacteria
Extracellular

The ability of these arthropods to feed on wood, foliage and detritus is likely to involve catalysis by different types of cellulases/hemicellulases that are secreted by gut microbiota to digest the structural and recalcitrant lignocellulosic residues in their foods.

2013

Termitidae

Blattodea

Bacteria
Extracellular

The ability of these arthropods to feed on wood, foliage and detritus is likely to involve catalysis by different types of cellulases/hemicellulases that are secreted by gut microbiota to digest the structural and recalcitrant lignocellulosic residues in their foods.

2013

Termitidae

Blattodea

Bacteria
Extracellular

The ability of these arthropods to feed on wood, foliage and detritus is likely to involve catalysis by different types of cellulases/hemicellulases that are secreted by gut microbiota to digest the structural and recalcitrant lignocellulosic residues in their foods.

2013

Bacteria
Extracellular

The ability of these arthropods to feed on wood, foliage and detritus is likely to involve catalysis by different types of cellulases/hemicellulases that are secreted by gut microbiota to digest the structural and recalcitrant lignocellulosic residues in their foods.

2013

Bacteria
Extracellular

The ability of these arthropods to feed on wood, foliage and detritus is likely to involve catalysis by different types of cellulases/hemicellulases that are secreted by gut microbiota to digest the structural and recalcitrant lignocellulosic residues in their foods.

2013

Bacteria
Extracellular

The ability of these arthropods to feed on wood, foliage and detritus is likely to involve catalysis by different types of cellulases/hemicellulases that are secreted by gut microbiota to digest the structural and recalcitrant lignocellulosic residues in their foods.

2013

Bacteria
Extracellular

The ability of these arthropods to feed on wood, foliage and detritus is likely to involve catalysis by different types of cellulases/hemicellulases that are secreted by gut microbiota to digest the structural and recalcitrant lignocellulosic residues in their foods.

2013

Bacteria
Extracellular

The ability of these arthropods to feed on wood, foliage and detritus is likely to involve catalysis by different types of cellulases/hemicellulases that are secreted by gut microbiota to digest the structural and recalcitrant lignocellulosic residues in their foods.

2013

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