Bacteroides fragilis subspp. Thetaotus

Information

Microbe Identification

Bacteroides fragilis subspp. Thetaotus

Microbe id: PMDBM51
Level: Subspecies
NCBI Taxonomy ID: n.a.
Taxonomy Species: Bacteroides fragilis [817]
Taxonomy Genus: Bacteroides [816]
Taxonomy Family: Bacteroidaceae [815]

Interactions between microbe and active substances


ⓘ How do we work out MGCs and BGCs of one specific species?


Metabolic gene clusters of Bacteroides fragilis subspp. Thetaotus

Identified MGC Region
(click for details)
MGC Cluster (Most Similar) Similarity Compound metabolized by the MGC Type of MGC Reference(PubMed ID)
Unclassified gene clustern.a.TPP fatty acidsPMID: 36782070
Unclassified gene clusterAmino acidsTPP AA metabolismPMID: 36782070
PorA C. sporogenesCholine/proline/tryptophan/Tyr/Phe/leucine/valinePorAPMID: 31831639
Rnf complex C. sporogenesEnergy-capturing-relatedRnf complexPMID: 23269825
Succinate to propionate B. thetaSuccinateSuccinate to propionatePMID: 24553467
Pyruvate to acetate-formate B. thetaiotaomicronPyruvatePyruvate to acetate-formatePMID: 20622067
NADH dehydrogenase I Bacteroides sp.Energy-capturing-relatedNADH dehydrogenase IPMID: 26443736
Fumarate to succinate B. thetaiotaomicronFumarateFumarate to succinatePMID: 28049145
PFOR II pathway B. thetaiotaomicronPyruvatePFOR II pathwayPMID: 32301184

n.s. indicates that no significant matches were found by KnownClusterBlast.

View gutSMASH Detailed Result
Biosynthetic gene clusters of Bacteroides fragilis subspp. Thetaotus


Identified BGC Region
(click for details)
BGC Cluster (Most Similar) Similarity Compound Synthesized by the BGC Type of BGC Reference (PubMed ID)
Unclassified gene clustern.a.NRPS-likePMID: 34019648
Polysaccharide CPolysaccharide CRRE-containingPMID: 10377135

n.s. indicates that no significant matches were found by KnownClusterBlast.

View antiSMASH Detailed Result
Map of Bacteroides fragilis subspp. Thetaotus distribution in human body and influence of diseases distribution in human body and influence of diseases


ⓘ How do you use the microbe distribution map?
ⓘ How did we get the relative abundance and microbe change in the map?
bodymap Oral Nose Esophagus Stomach Trachea Upper respiratory tract Vagina Blood Urethral Lung Cervix Rectum Skin Duodenum Fallopian tube Fallopian tube Peritoneal fluid Uterus Ear Ovary Ovary Colon Ileum Cecum
Disease id Bodysite Relative abundance (%) Disease name Microbe_change

Relative abundance landscape of Bacteroides fragilis subspp. Thetaotus in human gut microbiota samples



Abundance lanscape in healthy samples (by patients' age)
Abundance lanscape in healthy samples (by patients' country)
Abundance lanscape in disease samples
⚠ About the relative abundance profile

The relative taxonomical abundance data (pre-processed using a unified analysis pipeline) was retrieved from curatedMetagenomicData resource [Edoardo Pasolli, et al. Nat Methods. 2017;14(11):1023-1024]. Data retrieved here was pre-processed as unified relative abundance: at each taxonomic level (e.g., species, genus, family), the sum of microbial abundance of individual microbiota sample was 1, and relative abundance of each microbe was log10 transformed [relative abundance ranges from -7 to 0].

Healthy samples and disease samples (only disease types with >= 20 samples were included) were grouped by age periods, patients?country, or disease type to plot the relative abundance landscape using ggplot2 R package.



Comparative analysis of human gut metagenomes between disease and healthy samples of Bacteroides fragilis subspp. Thetaotus

Data source: Phenotype comparisons were obtained from GMrepo . We summarized all comparisons that included healthy samples as controls and overlapped with microbes represented in MASI.

Note: LDA scores below 0 indicate taxa enriched in healthy samples, whereas scores above 0 indicate taxa enriched in disease samples.

Disease Project ID LDA score Experiment Type
Kidney Failure, Chronic PRJEB65297🔗4.11120128742891mNGS
Hypertension PRJNA509999🔗4.73286333708258mNGS
Colorectal Neoplasms PRJNA731589🔗3.93720679804186mNGS
Colorectal Neoplasms PRJNA763023🔗4.16591209003749mNGS
Colorectal Neoplasms PRJNA888860🔗4.31917647431893mNGS
Lupus Erythematosus, Systemic PRJEB55711🔗4.76437525194615mNGS
Parkinson Disease PRJEB59350🔗3.61279549774685mNGS
Colitis, Ulcerative PRJNA813736🔗3.92579456987913mNGS
Colitis, Ulcerative PRJEB42155🔗4.29486386849721mNGS
Colitis, Ulcerative PRJNA398089🔗4.37899034221727mNGS
Colitis, Ulcerative PRJNA429990🔗4.64458828493983mNGS
Campylobacter Infections PRJNA660443🔗4.59145425989081mNGS
Crohn Disease PRJNA993675🔗3.46335132378287mNGS
Crohn Disease PRJEB42155🔗4.1823521550003mNGS
Crohn Disease PRJNA398089🔗4.52517534593072mNGS
Crohn Disease PRJNA793776🔗4.6069084891126mNGS
Crohn Disease PRJNA429990🔗4.94218217572608mNGS
Dermatitis, Atopic PRJEB45443🔗-3.9718479381943mNGS
Arthritis, Rheumatoid PRJNA896336🔗-4.05473729377287mNGS
Arthritis, Rheumatoid PRJNA356102🔗3.67842535026643mNGS
Anorexia PRJNA674716🔗4.34375304817211mNGS
Neuroblastoma PRJNA716780🔗-3.99608650179516mNGS
Irritable Bowel Syndrome PRJEB37924🔗3.38466754647784mNGS
Depressive Disorder, Major PRJNA762199🔗3.90589162539477mNGS
Clostridium Infections PRJNA648321🔗-4.5523042992979mNGS
Amyotrophic Lateral Sclerosis PRJEB32767🔗3.84299045408625mNGS
Cystic Fibrosis PRJNA314903🔗-3.95879810172798mNGS

Microbe-Therapeutic Substance associations are summarized based on THREE types of association evidence, these include:

Association of microbe alteration of therapeutic substances; Microbe and a specific substance will be associated when the microbe can metabolize the substance.
Association of therapeutic substance alteration of microbes; Microbe and a specific substance will be associated when the substance can make the abundance of a microbe increase or decrease.
Association of metabolic reactions of microbes (newly updated in MASI v2.0); This part of data came from microbe metabolic reconstructions based on genome via AGORA2 [Ref: Nature Biotechnology, 41 (2023) 1320?331]. A microbe and a specific substance will be associated when the microbe carries a specific gene whose product can metabolize the substance.





Therapeutic substance that metabolized by Bacteroides fragilis subspp. Thetaotus



Microbe Name Substance Name Substance Category Substance Subcategory Metabolism Type Metabolites Effects on Substance Experimental System Experimental Organism Experimental Disease Condition Alteration Mechanism Alteration Outcome Reference (PubMed ID)




Therapeutic Substances that affect the Bacteroides fragilis subspp. Thetaotus



Microbe Name Substance Name Substance Category Substance Subcategory Substance Details Effect on Microbe Effect Strength Experimental System Experimental Organism Experimental Disease Condition Reference (PubMed ID)


Drug involved metabolizing or transporting reactions that are carried out by Bacteroides fragilis subspp. Thetaotus

No data available!

ⓘ How do we get these drug reactions?

To obtain the reactions associated with therapeutic substances, we followed a multi-step process:
Downloading Reconstructions: We started by downloading microbial genome-scale metabolic reconstructions from the AGORA2 [Ref: Nature Biotechnology, 41 (2023) 1320?331] database.
Identifying Drug-Associated Reactions: Next, we extracted all reactions that are linked to therapeutic substances from these reconstructions. This involved filtering and identifying reactions specifically related to drug metabolism and transport.
Linking Reaction to Microbes: Utilizing the identified reaction related genes (UidA, Tdc etc.), we machted the corresponding drug-associated reactions to existing microbes in the reconstructions in AGORA2. We could link the presence of these genes in different microbes to the potential for those microbes to carry out the corresponding drug-related reactions.
Putative Drug Reactions: As a result, the drug reactions identified in this manner are putative, meaning they are inferred based on the presence of specific gene sequences. This provides a hypothetical but informed prediction of the microbial capability to interact with therapeutic substances.



Statistical Charts
Detailed Information in Table
Original GEM Files (AGORA2)

Classification of Metabolizing or Transporting Related Reactions

Pie Chart of Functionally Related Protein Families

We provide links to the Genomic-Scale Metabolic Models (GEMs) used in this part, sourced from AGORA2, allowing access to the original .mat files. For more details, visit the AGORA2 repository.

# Model Download
No records found

Detailed Information of drug reactions

Metabolism
Transport
Drug Substrate Drug Metabolite Gene responsible for the reaction Reaction Description Reaction Formula Reaction Subsystem Subsystem Class type Subsystem Class level 1 Subsystem Class level 2 Subsystem Class level 3 Reference (PubMed ID) Microbe Name
Substance Name Gene responsible for the reaction Reaction Description Reaction Subsystem Subsystem Class type Subsystem Class level 1 Subsystem Class level 2 Subsystem Class level 3 Reference (PubMed ID) Microbe Name




Microbe-Herbal Substance associations are summarized based on TWO types of association evidence, these include:

Association of microbe alteration of herbal substances; Microbe and a specific substance will be associated when the microbe can metabolize the substance.
Association of herbal substance alteration of microbes; Microbe and a specific substance will be associated when the substance can make the abundance of a microbe increase or decrease.





Traditional medicines/herbs/herbal compounds that metabolized by Bacteroides fragilis subspp. Thetaotus


Microbe Name Substance Name Substance Category Substance Subcategory Metabolism Type Metabolites Effects on Substance Experimental System Experimental Organism Experimental Disease Condition Alteration Mechanism Alteration Outcome Reference (PubMed ID)




Traditional medicines/herbs/herbal compounds that affect the Bacteroides fragilis subspp. Thetaotus



Microbe Name Substance Name Substance Category Substance Subcategory Substance Details Effect on Microbe Effect Strength Experimental System Experimental Organism Experimental Disease Condition Reference (PubMed ID)

Microbe-Dietary Substance associations are summarized based on THREE types of association evidence, these include:

Association of microbe alteration of dietary substances; Microbe and a specific substance will be associated when the microbe can metabolize the substance.
Association of dietary substance alteration of microbes; Microbe and a specific substance will be associated when the substance can make the abundance of a microbe increase or decrease.
Association of metabolic reactions of microbes (newly updated in MASI v2.0); This part of data came from microbe metabolic reconstructions based on genome via AGREDA [Ref:Nature Communications, 12 (2021) 4728]. A microbe and a specific substance will be associated when the microbe carries a specific gene whose product can metabolize the substance.





Dietary Substances alter the abundance of Bacteroides fragilis subspp. Thetaotus

Microbe Name Substance Name Substance Category Substance Subcategory Substance Details Effect on Microbe Effect Strength Experimental System Experimental Organism Experimental Disease Condition Reference (PubMed ID)





Dietary substance that metabolized by Bacteroides fragilis subspp. Thetaotus

Microbe Name Substance Name Substance Category Substance Subcategory Substance Details Effect on Microbe Effect Strength Experimental System Experimental Organism Experimental Disease Condition Reference (PubMed ID)




Dietary Substance involved metabolizing or transporting reactions that are carried out by Bacteroides fragilis subspp. Thetaotus

ⓘ How do we get these diet reactions?

To obtain the reactions associated with dietary substances, we followed a multi-step process:
Downloading Reconstructions: We started by downloading microbial genome-scale metabolic reconstructions from the AGREDA [Ref:Nature Communications, 12 (2021) 4728] database.
Identifying Diet-Associated Reactions: Next, we extracted all reactions that are linked to dietary substances from these reconstructions. This involved filtering and identifying reactions specifically related to dietary substance metabolism and transport.
Linking Reactions to Microbes: Using the identified related genes (e.g., UidA, Tdc) for each drug metabolite reaction, we matched these reactions to microbes possessing the corresponding genes. This allowed us to link the presence of these genes in different microbes to their potential for carrying out the associated drug-related reactions.
Putative Drug Reactions: As a result, the diet reactions identified in this manner are putative, meaning they are inferred based on the presence of specific gene sequences. This provides a hypothetical but informed prediction of the microbial capability to interact with dietary substances.



Statistical Charts
Detailed Information in Table
Original GEM Files (AGREDA)

Classification of Metabolizing or Transporting Related Reactions

Pie Chart of Functionally Related Protein Families

We provide links to the Genomic-Scale Metabolic Models (GEMs) used in this part, sourced from AGREDA, allowing access to the original .xml files. For more details, visit the AGREDA repository.

# Model View
No records found

Detailed Information of diet reactions

Metabolism
Transport
Diet Substrate Enzyme Reaction Formula Reaction Subsystem Subsystem Class type Subsystem Class level 1 Subsystem Class level 2 Subsystem Class level 3 Reference (PubMed ID) Microbe Name
Dietary Substance Name Reaction Name Reaction Subsystem Subsystem Class type Subsystem Class level 1 Subsystem Class level 2 Subsystem Class level 3 Reference (PubMed ID) Microbe Name




Microbe-Environmental Substance associations are summarized based on TWO types of association evidence, these include:

Association of microbe alteration of environmental substances; Microbe and a specific substance will be associated when the microbe can metabolize the substance.
Association of environmental substance alteration of microbes; Microbe and a specific substance will be associated when the substance can make the abundance of a microbe increase or decrease.





Environmental Substances that metabolized by Bacteroides fragilis subspp. Thetaotus



Microbe Name Substance Name Substance Category Substance Subcategory Metabolism Type Metabolites Effects on Substance Experimental System Experimental Organism Experimental Disease Condition Alteration Mechanism Alteration Outcome Reference (PubMed ID)




Environmental Substances that affect the Bacteroides fragilis subspp. Thetaotus


Microbe Name Substance Name Substance Category Substance Subcategory Substance Details Effect on Microbe Effect Strength Experimental System Experimental Organism Experimental Disease Condition Reference (PubMed ID)
ⓘ Background And User Guideline

Microbe Taxonomy level Species Quorum Sensing (QS) Language QS Language Class Total No. of QS Languages of the Species Reference (PubMed ID)


Diseases associated with the microbe Bacteroides fragilis subspp. Thetaotus


No data available

Microbiota Site Disease Name Disease Association Class Disease Associated Abundence Change Reference (PubMed ID)



Landscape of Bacteria-Substance-Disease Interaction/Association Network



ⓘ How is the network built?