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RAV-Like1Maintains Brassinosteroid Homeostasis via the Coordinated Activation ofBRI1and Biosynthetic Genes in Rice
Author(s) -
Byoung Il Je,
Hai Long Piao,
Soon Ju Park,
Sung Han Park,
Chul Min Kim,
Yuan Hu Xuan,
Su Hyun Park,
Jin Huang,
Yang Do Choi,
Gynheung An,
Hann Ling Wong,
Shozo Fujioka,
Minchul Kim,
Ko Shimamoto,
Changdeok Han
Publication year - 2010
Publication title -
the plant cell
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.324
H-Index - 341
eISSN - 1532-298X
pISSN - 1040-4651
DOI - 10.1105/tpc.109.069575
Subject(s) - brassinosteroid , biology , microbiology and biotechnology , signal transduction , homeostasis , gene , receptor , regulation of gene expression , hormone , arabidopsis , genetics , biochemistry , mutant
Temporal and spatial variation in the levels of and sensitivity to hormones are essential for the development of higher organisms. Traditionally, end-product feedback regulation has been considered as the key mechanism for the achievement of cellular homeostasis. Brassinosteroids (BRs) are plant steroid hormones that are perceived by the cell surface receptor kinase Brassinosteroid Insensitive1. Binding of these hormones to the receptor activates BR signaling and eventually suppresses BR synthesis. This report shows that RAVL1 regulates the expression of the BR receptor. Furthermore, RAVL1 is also required for the expression of the BR biosynthetic genes D2, D11, and BRD1 that are subject to BR negative feedback. Activation by RAVL1 was coordinated via E-box cis-elements in the promoters of the receptor and biosynthetic genes. Also, RAVL1 is necessary for the response of these genes to changes in cellular BR homeostasis. Genetic evidence is presented to strengthen the observation that the primary action of RAVL1 mediates the expression of genes involved in BR signaling and biosynthesis. This study thus describes a regulatory circuit modulating the homeostasis of BR in which RAVL1 ensures the basal activity of both the signaling and the biosynthetic pathways.

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