Background strain: | cMJ030 | Click here to order this strain from the Chlamydomonas Resource Center. The background strain comes free with every order. |
Transformation condition: | RY0402 | |
Antibiotic resistance: | resistant to paromomycin |
Insertion junctions | |||||
Insertion junction | Locus systematic id | Locus common name | Defline | Feature | Confidence (%) |
---|---|---|---|---|---|
LMJ.RY0402.150413_1 | Cre02.g111550 | (1 of 1) IPR000104//IPR000719//IPR001229//IPR002290//IPR011009//IPR020635 - Antifreeze protein, type I // Protein kinase domain // Jacalin-like lectin domain // Serine/threonine/dual specificity protein kinase, catalytic domain // Protein kinase-like domain // Tyrosine-protein kinase, catalytic domain | intron | 95 | |
LMJ.RY0402.150413_2 | Cre02.g111550 | (1 of 1) IPR000104//IPR000719//IPR001229//IPR002290//IPR011009//IPR020635 - Antifreeze protein, type I // Protein kinase domain // Jacalin-like lectin domain // Serine/threonine/dual specificity protein kinase, catalytic domain // Protein kinase-like domain // Tyrosine-protein kinase, catalytic domain | intron | 95 |
If you use this mutant for your work, please cite: Li et al. 2019 Nature Genetics.
This mutant exhibited a phenotype under the following conditions:
Carbon concentrating mechanism, screen 1 of 11 (~60.0% growth defect) |
High temperature, screen 1 of 7 (~30.0% growth defect) |
High temperature, screen 2 of 7 (~40.0% growth defect) |
High temperature in minimal media, screen 1 of 1 (~30.0% growth defect) |
Photosynthesis, screen 1 of 5 (~60.0% growth defect) |
Photosynthesis, screen 2 of 5 (~50.0% growth defect) |
Rose Bengal, screen 2 of 4 (~10.0% growth defect) |
Note: Not all phenotypes can be confidently associated with a specific gene or insertion; phenotypes can be caused by unmapped second-site mutations. Please see the gene pages for statistically significant gene-phenotype links. These data are from a pooled phenotyping experiment.
If you reference the phenotypic data above in a manuscript, please cite: Fauser et al. 2022 Nature Genetics.