Title : Arabidopsis CHLI2 can substitute for CHLI1.

Pub. Date : 2009 Jun

PMID : 19363094






5 Functional Relationships(s)
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1 In addition, we show that a semidominant chli1 mutant allele and the chli1/chli1 chli2/chli2 double mutant accumulated Lhcb1 transcripts when treated with the herbicide norflurazon, indicating that knocking out the CHLI activity causes the genome-uncoupled phenotype. norflurazone P-loop containing nucleoside triphosphate hydrolases superfamily protein Arabidopsis thaliana
2 In addition, we show that a semidominant chli1 mutant allele and the chli1/chli1 chli2/chli2 double mutant accumulated Lhcb1 transcripts when treated with the herbicide norflurazon, indicating that knocking out the CHLI activity causes the genome-uncoupled phenotype. norflurazone P-loop containing nucleoside triphosphate hydrolases superfamily protein Arabidopsis thaliana
3 In addition, we show that a semidominant chli1 mutant allele and the chli1/chli1 chli2/chli2 double mutant accumulated Lhcb1 transcripts when treated with the herbicide norflurazon, indicating that knocking out the CHLI activity causes the genome-uncoupled phenotype. norflurazone P-loop containing nucleoside triphosphate hydrolases superfamily protein Arabidopsis thaliana
4 In addition, we show that a semidominant chli1 mutant allele and the chli1/chli1 chli2/chli2 double mutant accumulated Lhcb1 transcripts when treated with the herbicide norflurazon, indicating that knocking out the CHLI activity causes the genome-uncoupled phenotype. norflurazone magnesium chelatase i2 Arabidopsis thaliana
5 In addition, we show that a semidominant chli1 mutant allele and the chli1/chli1 chli2/chli2 double mutant accumulated Lhcb1 transcripts when treated with the herbicide norflurazon, indicating that knocking out the CHLI activity causes the genome-uncoupled phenotype. norflurazone magnesium chelatase i2 Arabidopsis thaliana