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Strain Species Genotype
EG8080 C. elegans oxTi444 unc-119(ed3) III. Show Description
oxTi444 [ttTi5605 + NeoR(+) + unc-18(+)]. Unc. Grows best at 20C on HB101. Strain contains a universal MosSCI insertion site that is compatible with targeting vectors for the ttTi5605 site (for example, pCFJ150 derivatives). This site is generally permissive for germline expression. Transgenic animals are NeoR and carry an extra copy of unc-18(+). Please see www.wormbuilder.org for more details.
CA1205 C. elegans unc-119(ed3) III; ieSi59 III. Show Description
ieSi59 [eft-3p::degron::GFP::unc-54 3'UTR + Cbr-unc-119(+)] III. Single copy transgene inserted into chromosome III (oxTi444) expressing degron::GFP at low levels in the soma. This strain can be combined with different TIR1 strains to test auxin-inducible degradation (AID) of protein in somatic tissue. Reference: Zhang L, et al. Development. 2015 Nov 9. pii: dev.129635.
CA1206 C. elegans ieSi57 II; ieSi59 III. Show Description
ieSi57 [eft-3p::TIR1::mRuby::unc-54 3'UTR + Cbr-unc-119(+)] II. ieSi59 [eft-3p::degron::GFP::unc-54 3'UTR + Cbr-unc-119(+)] III. ieSi57 is a single copy transgene inserted into chromosome II (oxTi179) expressing modified Arabidopsis thaliana TIR1 tagged with mRuby in the soma. ieSi59 is a single copy transgene inserted into chromosome III (oxTi444) expressing degron::GFP at low levels in the soma. This strain can be used as control for auxin-inducible degradation (AID) in somatic tissues. Reference: Zhang L, et al. Development. 2015 Nov 9. pii: dev.129635.
CZ20310 C. elegans juSi164 unc-119(ed3) III. Show Description
juSi164 [mex-5p::HIS-72::miniSOG + Cbr-unc-119(+)] III. Maintain in the covered box to avoid unnecessary exposure to ambient light. Wild-type behavior in movement, mating, growth and brood size. Upon blue light treatment (460 nm LED light for 30 min at 4 Hz with 2 mW/mm2), Histone-miniSOG in the germline can induce heritable mutations. Wild-type behavior in movement, mating, growth and brood size. MosSCI insertion into oxTi444 on Chr. III. Reference: Noma K & Jin Y. Nature Communications, 2015.