Signal-Transduction Pathways toward the Regulation of Brassinosteroid Biosynthesis

Brassinosteroids (BRs) collectively refer to the steroidal plant hormones that stimulate dramatic growth by cells and organs. Because of their essential roles, mutants that are defective in either the biosynthetic or signaling pathway exhibit severe dwarfism. Numerous reports from biochemical, genet...

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Published inJournal of plant biology = Singmul Hakhoe chi Vol. 50; no. 3; pp. 225 - 229
Main Author Choe, S.H. (Seoul National University, Seoul, Republic of Korea), E-mail: shchoe@snu.ac.kr
Format Journal Article
LanguageEnglish
Published Heidelberg Springer Nature B.V 01.06.2007
한국식물학회
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ISSN1226-9239
1867-0725
DOI10.1007/BF03030649

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Abstract Brassinosteroids (BRs) collectively refer to the steroidal plant hormones that stimulate dramatic growth by cells and organs. Because of their essential roles, mutants that are defective in either the biosynthetic or signaling pathway exhibit severe dwarfism. Numerous reports from biochemical, genetic, and physiological studies agree that DWARF4 mediates the flux-determining step in the biosynthetic pathway. Rather than exercising allosteric feed-back regulation of the enzyme by the end product brassinolide, transcriptional control of the DWF4 gene is considered the most important for precise modulation of the pool size for bioactive BRs.
AbstractList Brassinosteroids (BRs) collectively refer to the steroidal plant hormones that stimulate dramatic growth by cells and organs. Because of their essential roles, mutants that are defective in either the biosynthetic or signaling pathway exhibit severe dwarfism. Numerous reports from biochemical, genetic, and physiological studies agree that DWARF4 mediates the flux-determining step in the biosynthetic pathway. Rather than exercising allosteric feed-back regulation of the enzyme by the end product brassinolide, transcriptional control of the DWF4 gene is considered the most important for precise modulation of the pool size for bioactive BRs.
KCI Citation Count: 10
Brassinosteroids (BRs) collectively refer to the steroidal plant hormones that stimulate dramatic growth by cells and organs. Because of their essential roles, mutants that are defective in either the biosynthetic or signaling pathway exhibit severe dwarfism. Numerous reports from biochemical, genetic, and physiological studies agree thatDWARF4 mediates the flux-determining step in the biosynthetic pathway. Rather than exercising allosteric feed-back regulation of the enzyme by the end product brassinolide, transcriptional control of theDWF4 gene is considered the most important for precise modulation of the pool size for bioactive BRs.DWF4 expression is localized to actively growing tissues, including shoot and root tips, and the junction tissues between inflorescences and roots. This expression is significantly down-regulated by exogenous or endogenous applications of BRs, but increased by auxin treatment. Direct measurement of the endogenous BRs in different tissues ofArabidopsis has demonstrated that the accumulated BRs are mainly attributable toDWF4 expression. Regarding their interaction with other hormones, BRs induce many auxin-associated genes, e.g., Aux/IAA, GH3, and SAUR. Therefore, it is likely that the brassinosteroids synthesized by a limited number of tightly controlled cells in actively growing tissues are responsible for the demands by those tissues. Future research should elucidate which portion of the BRs is transported via which mechanisms, as well as reveal the roles of auxin-associated genes expressed in a BR-dependent manner.
Author Choe, S.H. (Seoul National University, Seoul, Republic of Korea), E-mail: shchoe@snu.ac.kr
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  year: 1988
  ident: BF03030649_CR1
  publication-title: J Plant Physiol
  doi: 10.1016/S0176-1617(88)80031-2
– volume: 130
  start-page: 1506
  year: 2002
  ident: BF03030649_CR9
  publication-title: Plant Physiol
  doi: 10.1104/pp.010496
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Snippet Brassinosteroids (BRs) collectively refer to the steroidal plant hormones that stimulate dramatic growth by cells and organs. Because of their essential roles,...
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SubjectTerms Allosteric properties
ARABIDOPSIS
ARROZ
Auxins
Biosynthesis
BRASINOSTEROIDES
Brassinolide
BRASSINOSTEROIDE
BRASSINOSTEROIDS
CITOCROMO P450
CYTOCHROME P450
Dwarfism
Genes
HOMEOSTASIE
HOMEOSTASIS
Hormones
Plant hormones
RICE
RIZ
Signal transduction
Tissues
생물학
Title Signal-Transduction Pathways toward the Regulation of Brassinosteroid Biosynthesis
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