Cluster: HRGMv2_3850_CGC28
🧬 Cluster Details
- Gene Count: 8
- CAZyme Count: 2
- Substrate:
- Genome ID: HRGMv2_3850
- Continent: Asia
- Source Study: Ma et al., 2024 →
| Gene Type | Contig ID | Protein ID | Start | Stop | Direction | Protein Family |
|---|---|---|---|---|---|---|
| TC | HRGMv2_3850_34 | HRGMv2_3850_34_25 | 20846 | 23056 | + | 3.A.7.7.1 |
| CAZyme | HRGMv2_3850_34 | HRGMv2_3850_34_26 | 23290 | 24375 | + | GH126 |
| NULL(UNKNOWN) | HRGMv2_3850_34 | HRGMv2_3850_34_27 | 24356 | 25009 | + |
NULL(UNKNOWN)
[View Structural Homologs] |
| pfam | HRGMv2_3850_34 | HRGMv2_3850_34_28 | 25193 | 26920 | + | DUF2334 |
| CAZyme | HRGMv2_3850_34 | HRGMv2_3850_34_29 | 26913 | 28175 | + | GT2 |
| pfam | HRGMv2_3850_34 | HRGMv2_3850_34_30 | 28172 | 29416 | + | BcsB |
| NULL(UNKNOWN) | HRGMv2_3850_34 | HRGMv2_3850_34_31 | 29508 | 30275 | + |
NULL(UNKNOWN)
[View Structural Homologs] |
| TC | HRGMv2_3850_34 | HRGMv2_3850_34_32 | 30713 | 32533 | + | 2.A.3.14.3 |
Gene ID: HRGMv2_3850_34_25
Type: TC
Location: 20846 - 23056 (+)
Type: TC
Location: 20846 - 23056 (+)
Gene ID: HRGMv2_3850_34_26
Type: CAZyme
Location: 23290 - 24375 (+)
Type: CAZyme
Location: 23290 - 24375 (+)
Gene ID: HRGMv2_3850_34_27
Type:
Location: 24356 - 25009 (+)
Type:
Location: 24356 - 25009 (+)
Gene ID: HRGMv2_3850_34_28
Type: pfam
Location: 25193 - 26920 (+)
Type: pfam
Location: 25193 - 26920 (+)
Gene ID: HRGMv2_3850_34_29
Type: CAZyme
Location: 26913 - 28175 (+)
Type: CAZyme
Location: 26913 - 28175 (+)
Gene ID: HRGMv2_3850_34_30
Type: pfam
Location: 28172 - 29416 (+)
Type: pfam
Location: 28172 - 29416 (+)
Gene ID: HRGMv2_3850_34_31
Type:
Location: 29508 - 30275 (+)
Type:
Location: 29508 - 30275 (+)
Gene ID: HRGMv2_3850_34_32
Type: TC
Location: 30713 - 32533 (+)
Type: TC
Location: 30713 - 32533 (+)
Taxonomic Lineage
Domain
Bacteria
Phylum
Bacillota
Class
Bacilli
Order
Bacillales
Family
Bacillaceae
Genus
Bacillus
Species
Bacillus velezensis
Gene Level Read Mapping
Gene level read mapping in Diet Intervention Studies (De Filippis et al., 2019)
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No differentially abundant genes found in the 2019 study.