Species List

1 species in genus Bombyx

Related Symbionts

35 records

Symbiont records associated with Bombyx genus

Classification Host Function Function Tags Reference
Bacteria

Bacillus subtilis generates a variety of primary and secondary metabolites (such as B vitamins and antimicrobial compounds) to provide micronutrients…

Amino Acid Provision B Vitamin Supplementation Antimicrobial Activity Pathogen Resistance
Bacteria

Pseudomonas fulva ZJU1 can degrade and utilize the mulberry-derived secondary metabolite, 1-deoxynojirimycin (DNJ) as the sole energy source, and aft…

Detoxification Enzymes Nutrient Provision
Bacteria

Stenotrophomonas maltophilia (Gut bacteria, Metagenome data) facilitates host resistance against organophosphate insecticides and provides essential …

Amino Acid Provision Pesticide Metabolization
Bacteria

Staphylococcus gallinarum KX912244 produces Staphyloxanthin pigment which exhibits considerable biological properties, including in vitro antimicrobi…

Antimicrobial Activity
Bacteria

Francisella tularensis inhibits the induction of host immune responses (melanization and nodulation) after infection, but pre-inoculation enhances th…

Antimicrobial Activity Pathogen Resistance
Bacteria

Mammaliicoccus sciuri produces the secreted chitinolytic lysozyme Msp1, which damages fungal cell walls and completely inhibits the spore germination…

Antimicrobial Activity Fungal Farming
Bacteria

The silkworm microbiome contains genes that encode functions, such as the chitinolytic lysozyme Msp1, that confer antimicrobial activity against fung…

Antimicrobial Activity Fungal Farming
Bacteria

Enterococcus faecalis LX10 exhibits anti-Nosema bombycis activity and plays an important role in protecting Bombyx mori silkworms from microsporidia …

Antimicrobial Activity
Aeromonas sp.

Pseudomonadota

Bacteria

Aeromonas sp. is able to utilize CM-cellulose and xylan, indicating degradation capabilities for various carbohydrates including pectin and starch.

Cellulose Hydrolysis Xylan Hydrolysis Carbohydrate Metabolism Pectin Hydrolysis
Bacteria

Bacillus pumilus SW41 processes a lipase gene and exhibits antiviral activity of its protein against B. mori Nucleopolyhedrovirus (BmNPV).

Lipase Antiviral Activity
Bacteria

Stenotrophomonas maltophilia SM-1 confers a significant fitness advantage to Bombyx mori via nutritional (amino acids) upgrading.

Amino Acid Provision
Stenotrophomonas

Pseudomonadota

Bacteria

Stenotrophomonas confers insecticide resistance against the toxic effects of organophosphate insecticides in Bombyx mori.

Pesticide Metabolization
Bacteria

Bacillus pumilus shows potent antiviral activity against the budded virions of Bombyx mori Nucleopolyhedrovirus (NPV).

Antimicrobial Activity
Streptomyces

Actinomycetota

Bacteria

Streptomyces produces Bombyxamycin A, which exhibits significant antibacterial and antiproliferative effects.

Antimicrobial Activity
Bacteria

Serratia liquefaciens is able to utilize three polysaccharides, including CM-cellulose, xylan, and pectin.

Cellulose Hydrolysis Xylan Hydrolysis
Bacteria

Bacillus aryabhattai exhibits cellulolytic activity in the gut of Bombyx mori.

Cellulose Hydrolysis
Bacteria

Klebsiella pneumoniae degrades cellulose, xylan, pectin, and starch.

Cellulose Hydrolysis Xylan Hydrolysis Carbohydrate Metabolism Pectin Hydrolysis
Citrobacter freundii

Pseudomonadota

Bacteria

Citrobacter freundii degrades cellulose, xylan, pectin, and starch.

Cellulose Hydrolysis Xylan Hydrolysis Carbohydrate Metabolism Pectin Hydrolysis
Coprinellus radians

Basidiomycota

Fungi

Coprinellus radians (Fungi) produces cellulase and amylase enzymes.

Cellulose Hydrolysis Carbohydrate Metabolism
Bacteria

Bacillus circulans degrades cellulose, xylan, pectin, and starch.

Cellulose Hydrolysis Xylan Hydrolysis Carbohydrate Metabolism Pectin Hydrolysis
Proteus vulgaris

Pseudomonadota

Bacteria

Proteus vulgaris degrades cellulose, xylan, pectin, and starch.

Cellulose Hydrolysis Xylan Hydrolysis Carbohydrate Metabolism Pectin Hydrolysis
Alternaria sp.

Ascomycota

Fungi

Alternaria sp. (Fungi) produces cellulase and amylase enzymes.

Cellulose Hydrolysis Carbohydrate Metabolism
Bacteria

Enterococcus mundtii EMB156 efficiently produces lactic acid.

Amino Acid Provision
Bacteria

Bacillus megaterium produces amylase for starch degradation.

Carbohydrate Metabolism
Preussia sp.

Ascomycota

Fungi

Preussia sp. (Fungi) produces cellulase and amylase enzymes.

Cellulose Hydrolysis Carbohydrate Metabolism
Bacteria

Enterococcus mundtii facilitates lactic acid production.

Carbohydrate Metabolism
Bacteria

Enterococcus sp. produces cellulase and amylase enzymes.

Cellulose Hydrolysis Carbohydrate Metabolism
Stenotrophomonas

Pseudomonadota

Bacteria

Stenotrophomonas produces lipase in the gut environment.

Lipase
Corynebacterium

Actinomycetota

Bacteria

Corynebacterium produces lipase in the gut environment.

Lipase
Brevibacterium

Actinomycetota

Bacteria

Brevibacterium produces lipase in the gut environment.

Lipase
Bacteria

Staphylococcus produces lipase in the gut environment.

Lipase
Bacillus sp.

Bacillota

Bacteria

Bacillus sp. produces lipase in the gut environment.

Lipase
Erwinia sp.

Pseudomonadota

Bacteria

Erwinia sp. produces cellulase and amylase enzymes.

Cellulose Hydrolysis Carbohydrate Metabolism
Pantoea sp.

Pseudomonadota

Bacteria

Pantoea sp. produces cellulase and amylase enzymes.

Cellulose Hydrolysis Carbohydrate Metabolism
Klebsiella

Pseudomonadota

Bacteria

Klebsiella produces lipase in the gut environment.

Lipase
Back to Table

Metagenome Information

4 records

Metagenome sequencing data associated with Bombyx species

Run Platform Host Location Date BioProject
ILLUMINA

Illumina HiSeq 1000

Laos
2021-10/2021-12
PRJNA1111294
OXFORD_NANOPORE

MinION

India
2017-04
PRJNA724724
OXFORD_NANOPORE

MinION

India
2017-04
PRJNA724724
OXFORD_NANOPORE

MinION

India
2017-04
PRJNA724724

Amplicon Information

19 records

Amplicon sequencing data associated with Bombyx species

Run Classification Host Platform Location Environment
SRR27899706

AMPLICON

16S
-
China
-
SRR27899689

AMPLICON

16S
-
China
-
SRR27899690

AMPLICON

16S
-
China
-
SRR27899691

AMPLICON

16S
-
China
-
SRR27899692

AMPLICON

16S
-
China
-
SRR27899693

AMPLICON

16S
-
China
-
SRR27899694

AMPLICON

16S
-
China
-
SRR27899695

AMPLICON

16S
-
China
-
SRR27899696

AMPLICON

16S
-
China
-
SRR27899697

AMPLICON

16S
-
China
-
SRR27899698

AMPLICON

16S
-
China
-
SRR27899699

AMPLICON

16S
-
China
-
SRR27899700

AMPLICON

16S
-
China
-
SRR27899701

AMPLICON

16S
-
China
-
SRR27899702

AMPLICON

16S
-
China
-
SRR27899703

AMPLICON

16S
-
China
-
SRR27899704

AMPLICON

16S
-
China
-
SRR27899705

AMPLICON

16S
-
China
-
SRR21053554

AMPLICON

16S and ITS
-
Kenya

1.13 S 36.53 E

ENVO:02000022

ENVO:00002003