Annotation Categories of the Plasmid Cluster







Summary of the plasmid cluster

Basic Information about the Plasmid Cluster

  Cluster Information   Plasmid Cluster ID   C749
  Reference Plasmid   NZ_CP054355.1
  Reference Plasmid Size   78886
  Reference Plasmid GC Content   0.50
  Reference Plasmid Mobility Type   conjugative





Mutation sites in the plasmid cluster


The table lists mutations identified in the plasmid cluster.
Note: Mutations identified in this plasmid cluster are listed below. Click on a mutation ID to view full details..

mutid gname pos count tissue frequnt biotype consequence impact nucchange aachange
M0174744 BMAKDPDL_00027 24974 4 Gut 0.22 protein_coding missense_variant MODERATE 169A>G Asn57Asp
M0174745 BMAKDPDL_00031 28067 5 Gut 0.28 protein_coding missense_variant MODERATE 389T>C Leu130Pro
M0174746 BMAKDPDL_00033 29116 5 Gut 0.28 protein_coding missense_variant MODERATE 457A>G Thr153Ala






Analysis of virulence factors contributing to bacterial pathogenicity


This table presents virulence factors identified within the plasmid cluster.
      Note: Virulence factor analysis was performed using VFDB. Genes in plasmid clusters showing strong homology (identity > 70%, coverage > 70%, E-value < 1e-5) to known virulence factors are listed.

Gene Name vf_gene_id vf_name identity evalue qstart qend query_coverage subject_coverage vf_category gene_description condition
BMAKDPDL_00025 VFG001827 ShET2 99.7 7.9e-225 1 391 1.0 1 Exotoxin enterotoxin experiment
BMAKDPDL_00025 VFG036084 Enterotoxin SenB/TieB 100 1.2e-224 1 391 1.0 1 Exotoxin enterotoxin production-related protein TieB prediction







        Analysis of biocide and heavy metal resistance genes to assess antimicrobial risk and environmental impact


This table presents biocides and heavy metals resistance genes identified within the plasmid cluster.
      Note: Analyzing biocide and heavy metal resistance genes based on BacMet to evaluate bacterial resistance risk and the potential impact of environmental heavy metal contamination. Genes in plasmid clusters showing strong homology (identity > 70%, subject coverage > 70%, E-value < 1e-5) to known biocide and heavy metal resistance genes are listed.

Gene Name compound identity evalue qstart qend query_coverage subject_coverage group






        Analyzing antimicrobial resistance genes to assess bacterial resistance to antibiotics and other antimicrobial agents


This table presents antimicrobial resistance genes identified within the plasmid cluster.
      Note: Antimicrobial resistance was performed using CARD. Genes in plasmid clusters showing strong homology (identity > 70%, coverage > 70%, E-value < 1e-5) to known antimicrobial resistance genes are listed.

Gene Name aro_accession identity evalue qstart qend query_coverage subject_coverage drug_class amr_gene_family resistance_mechanism






Analysis of pathogenicity genes to explore pathogen-host interactions


This table presents host pathogen-host interactions within the plasmid cluster.
      Note: Analyzing pathogenicity-related genes using PHI-base to understand pathogen virulence mechanisms and their impact on host interactions. Genes in plasmid clusters showing strong homology (identity > 70%, subject coverage > 70%, and E-value < 1e-5) to known pathogenicity-related genes are listed.

Gene Name phi_molconn_id host gene_name identity evalue qstart qend query_coverage subject_coverage host_descripton disease_name function phenotype_of_mutant
BMAKDPDL_00022 PHI:10792 cjrA 100 5.6e-166 1 291 1.0000 1.0000 primates neonatal meningitis iron-regulated protein increased virulence (hypervirulence)
BMAKDPDL_00023 PHI:10793 cjrB 100 1.7e-137 1 258 1.0000 1.0000 primates neonatal meningitis colicin Js sensitivity protein increased virulence (hypervirulence)
BMAKDPDL_00024 PHI:10794 cjrC 100 0 1 753 1.0000 1.0000 primates neonatal meningitis TonB-dependent colicin J protein increased virulence (hypervirulence)
BMAKDPDL_00025 PHI:10795 senB 100 4.2e-225 1 391 1.0000 1.0000 primates neonatal meningitis enterotoxin increased virulence (hypervirulence)






        Analyzing carbohydrate-active enzyme genes to uncover mechanisms of nutrient degradation


This table presents carbohydrate-active enzyme genes identified within the plasmid cluster.
      Note: Annotation of carbohydrate-active enzyme genes was performed using CAZy to explore mechanisms of nutrient breakdown and utilization. Genes in plasmid clusters showing strong homology (identity > 70%, subject coverage > 70%, and E-value < 1e−5) to known CAZyme genes are listed.

Gene Name cazy_id identity evalue qstart qend query_coverage subject_coverage





        Analyzing transport proteins to understand bacterial strategies for substrate uptake and detoxification


This table presents transport proteins within the plasmid cluster.
      Note: Investigation of transport proteins based on TCDB to uncover bacterial mechanisms of substrate transport and environmental detoxification. Genes in plasmid clusters showing strong homology (identity > 70%, subject coverage > 70%, and E-value < 1e−5) to known transport protein entries are listed.

Gene Name tcid identity evalue qstart qend query_coverage subject_coverage class_field class_term subclass subclass_term family family_term
BMAKDPDL_00023 2.C.1.1.3 100 3.7e-137 1 258 1.0000 1.0000 2 Electrochemical Potential-driven Transporters 2.C Ion-gradient-driven energizers 2.C.1 The TonB-ExbB-ExbD/TolA-TolQ-TolR Outer Membrane Receptor Energizers and Stabilizers (TonB/TolA) Family
BMAKDPDL_00024 1.B.14.7.1 100 0 1 753 1.0000 1.0000 1 Channels/Pores 1.B β-Barrel Porins 1.B.14 The Outer Membrane Receptor (OMR) Family
BMAKDPDL_00038 2.A.108.2.10 100 5e-101 3 175 0.9886 1.0000 2 Electrochemical Potential-driven Transporters 2.A Porters (uniporters, symporters, antiporters) 2.A.108 The Iron/Lead Transporter (ILT) Family
BMAKDPDL_00039 2.A.108.2.10 100 0 1 646 1.0000 3.7341 2 Electrochemical Potential-driven Transporters 2.A Porters (uniporters, symporters, antiporters) 2.A.108 The Iron/Lead Transporter (ILT) Family