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Identification of a Novel Jasmonate-Responsive Element in the AtJMT Promoter and Its Binding Protein for AtJMT Repression
Authors:Jun Sung Seo  Yeon Jong Koo  Choonkyun Jung  Song Yion Yeu  Jong Tae Song  Ju-Kon Kim  Yeonhee Choi  Jong Seob Lee  Yang Do Choi
Institution:1. Department of Agricultural Biotechnology, Seoul National University, Seoul, Korea.; 2. School of Applied Biosciences, Kyungpook National University, Daegu, Korea.; 3. School of Biotechnology and Environmental Engineering, Myongji University, Yongin, Korea.; 4. School of Biological Sciences, Seoul National University, Seoul, Korea.; Ohio State University, United States of America,
Abstract:Jasmonates (JAs) are important regulators of plant biotic and abiotic stress responses and development. AtJMT in Arabidopsis thaliana and BcNTR1 in Brassica campestris encode jasmonic acid carboxyl methyltransferases, which catalyze methyl jasmonate (MeJA) biosynthesis and are involved in JA signaling. Their expression is induced by MeJA application. To understand its regulatory mechanism, here we define a novel JA-responsive cis-element (JARE), G(C)TCCTGA, in the AtJMT and BcNTR1 promoters, by promoter deletion analysis and Yeast 1-Hybrid (Y1H) assays; the JARE is distinct from other JA-responsive cis-elements previously reported. We also used Y1H screening to identify a trans-acting factor, AtBBD1, which binds to the JARE and interacts with AtJAZ1 and AtJAZ4. Knockout and overexpression analyses showed that AtBBD1 and its close homologue AtBBD2 are functionally redundant and act as negative regulators of AtJMT expression. However, AtBBD1 positively regulated the JA-responsive expression of JR2. Chromatin immunoprecipitation from knockout and overexpression plants revealed that repression of AtJMT is associated with reduced histone acetylation in the promoter region containing the JARE. These results show that AtBBD1 interacts with JAZ proteins, binds to the JARE and represses AtJMT expression.
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