Mutant strain: LMJ.RY0402.106376

Overview

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.RY0402.106376_1 Cre10.g454450 (1 of 1) PTHR13832//PTHR13832:SF25//PTHR13832:SF330 - PROTEIN PHOSPHATASE 2C // PROTEIN PHOSPHATASE 2C 12-RELATED // PROTEIN PHOSPHATASE 2C 15-RELATED 3'UTR 95
LMJ.RY0402.106376_2 Cre10.g454450 (1 of 1) PTHR13832//PTHR13832:SF25//PTHR13832:SF330 - PROTEIN PHOSPHATASE 2C // PROTEIN PHOSPHATASE 2C 12-RELATED // PROTEIN PHOSPHATASE 2C 15-RELATED 3'UTR 95
LMJ.RY0402.106376_3 Cre17.g747247 FAP2 TPR-domain Flagellar Associated Protein 2; (1 of 1) IPR002151//IPR003593//IPR013026//IPR019734//IPR027417 - Kinesin light chain // AAA+ ATPase domain // Tetratricopeptide repeat-containing domain // Tetratricopeptide repeat // P-loop containing nucleoside triphosphate hydrolase intron 95
LMJ.RY0402.106376_4 Cre17.g747247 FAP2 TPR-domain Flagellar Associated Protein 2; (1 of 1) IPR002151//IPR003593//IPR013026//IPR019734//IPR027417 - Kinesin light chain // AAA+ ATPase domain // Tetratricopeptide repeat-containing domain // Tetratricopeptide repeat // P-loop containing nucleoside triphosphate hydrolase intron 95

If you use this mutant for your work, please cite: Li et al. 2019 Nature Genetics.

Phenotypes

This mutant exhibited a phenotype under the following conditions:

Paromomycin, screen 5 of 6 (~50.0% improved growth)
Paromomycin, screen 6 of 6 (~60.0% improved growth)

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.