Organism ID:   | NPO41897 |
Organism Name:   | A new engineered strain of Saccharomyces cerevisiae INVSc1 [CYP88D6, CYP72A154, CYP72A63] |
Native / Engineered Organism:   | Engineered Organism |
Matched Taxonomy Level:   | Strain |
Organism External ID:   | NCBI_Taxonomy_ID[ n.a.] |
Organism Synonyms:   | |
Genus:   | Saccharomyces |
Family:   | Saccharomycetaceae |
Kingdom:   | Fungi |
SuperKingdom:   | Eukaryota |
Natural Product ID | Prefer Name (or InChiKey) | IUPAC Name | Number of Targets | Number of Activity Records |
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NPC490785 | Chitinimide D | n.a. | 0 | 0 |
Organism Name | Producer Organism | Inducer Organism | NP ID | NP Name | Effect of Co-culture | Reference |
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Organism Name | Parent Organism Name | Engineered Gene in Organism | Purpose of Engineering | Engineering Category | Engineering Description | NP ID | NP Name | NP Yeild of Parent Organism | NP Yeild of Engineered Organism | Yeild Change | Reference |
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A new engineered strain of Saccharomyces cerevisiae INVSc1 | Saccharomyces cerevisiae INVSc1 | CYP88D6, CYP72A154, CYP72A63 | Increase NP yield | n.a. | we developed a novel and highly efficient pathway for the synthesis of GA and 11-oxo-β-amyrin in Saccharomyces cerevisiae by introducing efficient cytochrome P450s (CYP450s: Uni25647 and CYP72A63) and pairing their reduction systems from legume plants through transcriptome and genome-wide screening and identification. Increase the copy number of Uni25647 and pairing cytochrome P450 reductases (CPRs) from various plant sources. | NPC490785 | chitinimide D | n.a. | 18.9 mg/L | 945.6-fold |
PMID[29196123] |
Organism ID | NP ID | Organism Material Preparation | Organism Part | NP Quantity (Standard) | NP Quantity (Minimum) | NP Quantity (Maximum) | Quantity Unit | Reference |
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