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AP2 / EREBP Transcription Factors
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Locus Data & Links (May need to scroll right or left to show columns)
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WRI3
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Mutant Char.; yeast one-hybrid assays
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1 Ref
To, A., Joubes, J., Barthole, G., Lecureuil, A., Scagnelli, A., Jasinski, S., Lepiniec, L., and Baud, S. (2012). WRINKLED Transcription Factors Orchestrate Tissue-Specific Regulation of Fatty Acid Biosynthesis in Arabidopsis. Plant Cell 24 ,5007-5023.
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Direct transcriptional activator of some late fatty acid biosynthetic genes and lipogenic genes; significant decreases in the amount of major cutin monomers produced by triple mutant wri1wri3wri4 flowers. the main flower cutin monomer (10,16-dihydroxypalmitate) was decreased by more than 50%. Significant decrease in 18:2 DCA in inflorescence stem cutin of triple mutant. wax production was not affected by the triple mutant.
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WRI4
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Mutant Char.; yeast one-hybrid assays
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1 Ref
To, A., Joubes, J., Barthole, G., Lecureuil, A., Scagnelli, A., Jasinski, S., Lepiniec, L., and Baud, S. (2012). WRINKLED Transcription Factors Orchestrate Tissue-Specific Regulation of Fatty Acid Biosynthesis in Arabidopsis. Plant Cell 24 ,5007-5023.
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Direct transcriptional activator of some late fatty acid biosynthetic genes and lipogenic genes; significant decreases in the amount of major cutin monomers produced by triple mutant wri1wri3wri4 flowers. the main flower cutin monomer (10,16-dihydroxypalmitate) was decreased by more than 50%.
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WRI2
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Mutant Char.; OE lines
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1 Ref
To, A., Joubes, J., Barthole, G., Lecureuil, A., Scagnelli, A., Jasinski, S., Lepiniec, L., and Baud, S. (2012). WRINKLED Transcription Factors Orchestrate Tissue-Specific Regulation of Fatty Acid Biosynthesis in Arabidopsis. Plant Cell 24 ,5007-5023.
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The fatty acid concentrations of dry seeds remains unchanged in both mutants and OE lines. Thus may not be related to fatty acid biosynthesis
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WRI1
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Mutant Char.; in-planta Overexp'n; yeast one-hybrid assays; gel-shift assays.
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5 Refs
Focks, N., and Benning, C. (1998). wrinkled1: A novel, low-seed-oil mutant of Arabidopsis with a deficiency in the seed-specific regulation of carbohydrate metabolism. Plant Physiology 118 ,91-101.To, A., Joubes, J., Barthole, G., Lecureuil, A., Scagnelli, A., Jasinski, S., Lepiniec, L., and Baud, S. (2012). WRINKLED Transcription Factors Orchestrate Tissue-Specific Regulation of Fatty Acid Biosynthesis in Arabidopsis. Plant Cell 24 ,5007-5023.Cernac, A., and Benning, C. (2004). WRINKLED1 encodes an AP2/EREB domain protein involved in the control of storage compound biosynthesis in Arabidopsis. Plant J. 40 , 575-585.Masaki, T., Mitsui, N., Tsukagoshi, H., Nishii, T., Morikami, A., and Nakamura, K. (2005). ACTIVATOR of Spo(min):: LUC1/WRINKLED1 of a Arabidopsis thaliana transactivates sugar-inducible promoters. Plant and Cell Physiology 46 , 547-556.Baud, S., Santos-Mendoza, M., To, A., Harscoet, E., Lepiniec, L., and Dubreucq, B. (2007). WRINKLED1 specifies the regulatory action of LEAFY COTYLEDON2 towards fatty acid metabolism during seed maturation in Arabidopsis. Plant J. 50 , 825-838.
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Direct transcriptional activator of some late fatty acid biosynthetic genes and lipogenic genes, binds the AW cis-regulatory element
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Data
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Mutant Char.; Comple. of mutant; in-planta Overexp'n.; ChIP assay
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1 Ref
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DEWAX negatively regulates the expression of alkane-forming enzyme,long-chain acyl-CoA synthetase, ATP citrate lyase A subunit, enoyl-CoA reductase, and fatty acyl-CoA reductase.DEWAX directly interacts with the promoters of wax biosynthesis. slightly increased wax in mutant
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