Title : Induced accumulation of cuticular waxes enhances drought tolerance in Arabidopsis by changes in development of stomata.

Pub. Date : 2011 Dec

PMID : 22078383






3 Functional Relationships(s)
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1 We applied the methoxyfenozide gene switching system to regulate expression of the WIN1/SHN1 gene (WAX INDUCER 1/SHINE1; At1G15360), a transcriptional activator, to regulate production of cuticular waxes and cutin and followed changes of gene expression, metabolites, and drought tolerance. methoxyfenozide Integrase-type DNA-binding superfamily protein Arabidopsis thaliana
2 We applied the methoxyfenozide gene switching system to regulate expression of the WIN1/SHN1 gene (WAX INDUCER 1/SHINE1; At1G15360), a transcriptional activator, to regulate production of cuticular waxes and cutin and followed changes of gene expression, metabolites, and drought tolerance. methoxyfenozide Integrase-type DNA-binding superfamily protein Arabidopsis thaliana
3 We applied the methoxyfenozide gene switching system to regulate expression of the WIN1/SHN1 gene (WAX INDUCER 1/SHINE1; At1G15360), a transcriptional activator, to regulate production of cuticular waxes and cutin and followed changes of gene expression, metabolites, and drought tolerance. methoxyfenozide Integrase-type DNA-binding superfamily protein Arabidopsis thaliana