[No authors listed]
By means of yeast (Saccharomyces cerevisiae) two-hybrid screening, we identified basic helix-loop-helix transcription factor05 (bHLH05) as an interacting partner of MYB51, the key regulator of indolic glucosinolates (GSLs) in Arabidopsis (Arabidopsis thaliana). Furthermore, we show that bHLH04, bHLH05, and bHLH06/MYC2 also interact with other R2R3-MYBs regulating GSL biosynthesis. Analysis of bhlh loss-of-function mutants revealed that the single bhlh mutants retained GSL levels that were similar to those in wild-type plants, whereas the triple bhlh04/05/06 mutant was depleted in the production of GSL. Unlike bhlh04/06 and bhlh05/06 mutants, the double bhlh04/05 mutant was strongly affected in the production of GSL, pointing to a special role of bHLH04 and bHLH05 in the control of GSL levels in the absence of jasmonic acid. The combination of two specific gain-of-function alleles of MYB and bHLH proteins had an additive effect on GSL levels, as demonstrated by the analysis of the double MYB34-1D bHLH05D94N mutant, which produces 20-fold more indolic GSLs than bHLH05D94N and ecotype Columbia-0 of Arabidopsis. The amino acid substitution D94N in bHLH05D94N negatively affects the interaction with JASMONATE-ZIM DOMAIN protein, thereby resulting in constitutive activation of bHLH05 and mimicking jasmonic acid treatment. Our study revealed the bHLH04, bHLH05, and bHLH06/MYC2 factors as novel regulators of GSL biosynthesis in Arabidopsis.
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HINT3, ALDH11A3, AT2G39795, OBE1, AT3G08530, AT3G09700, AT3G11690, AT3G12920, AT3G02910, PRT1, AT3G45900, LSU3, PPa4, AGK2, IAA30, AT4G17240, G2484-1, AT4G17880, RING, YAB3, MYB97, AT4G32190, CEV1, MYB29, MYB76, AT5G11980, ATMS1, emb1211, DNMT2, AT5G25757, AT5G26190, XGD1, AT5G41770, AT5G46760, NIG1, AT5G48610, AT5G51200, SPDS3, AT5G60340, MYB34, MYB28, SLK2, AT5G63200, AT1G06620, PDIL5-1, DCP1, MYB51, JAZ1, SEC5B, WAK2, ATJ1, MYC2, RD21, ATHB-15, MYB122, ATA27, NUA
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