Cluster: CGMR064067_CGC7
🧬 Cluster Details
- Gene Count: 9
- CAZyme Count: 1
- Substrate:
- Genome ID: CGMR064067
- CGC Family ID: CGCFAM_02816
- Continent: Asia
- Source Study: Huang et al., 2024 →
| Gene Type | Contig ID | Protein ID | Start | Stop | Direction | Protein Family |
|---|---|---|---|---|---|---|
| TC | k141_496 | k141_496_64 | 59823 | 61640 | - | 3.A.1.135.5 |
| TC | k141_496 | k141_496_65 | 61633 | 63348 | - | 3.A.1.135.5 |
| TC | k141_496 | k141_496_66 | 63522 | 64448 | - | 2.A.7.3.31 |
| STP | k141_496 | k141_496_67 | 64654 | 66684 | + | EAL | GGDEF | PAS | PAS |
| TC | k141_496 | k141_496_68 | 66943 | 67548 | + | 2.A.88.1.1 |
| pfam | k141_496 | k141_496_69 | 67545 | 68558 | + | Radical_SAM | BATS |
| TC | k141_496 | k141_496_70 | 68778 | 69230 | - | 2.A.79.1.7 |
| TC | k141_496 | k141_496_71 | 69244 | 69996 | - | 2.A.79.1.5 |
| CAZyme | k141_496 | k141_496_72 | 70125 | 71495 | + | CE4 |
Gene ID: k141_496_64
Type: TC
Location: 59823 - 61640 (-)
Type: TC
Location: 59823 - 61640 (-)
Gene ID: k141_496_65
Type: TC
Location: 61633 - 63348 (-)
Type: TC
Location: 61633 - 63348 (-)
Gene ID: k141_496_66
Type: TC
Location: 63522 - 64448 (-)
Type: TC
Location: 63522 - 64448 (-)
Gene ID: k141_496_67
Type: STP
Location: 64654 - 66684 (+)
Type: STP
Location: 64654 - 66684 (+)
Gene ID: k141_496_68
Type: TC
Location: 66943 - 67548 (+)
Type: TC
Location: 66943 - 67548 (+)
Gene ID: k141_496_69
Type: pfam
Location: 67545 - 68558 (+)
Type: pfam
Location: 67545 - 68558 (+)
Gene ID: k141_496_70
Type: TC
Location: 68778 - 69230 (-)
Type: TC
Location: 68778 - 69230 (-)
Gene ID: k141_496_71
Type: TC
Location: 69244 - 69996 (-)
Type: TC
Location: 69244 - 69996 (-)
Gene ID: k141_496_72
Type: CAZyme
Location: 70125 - 71495 (+)
Type: CAZyme
Location: 70125 - 71495 (+)
Taxonomic Lineage
Domain
Bacteria
Phylum
Bacillota
Class
Bacilli
Order
Bacillales_A
Family
Planococcaceae
Genus
Kurthia
Species
Kurthia gibsonii
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.