home > bioproject > PRJDB2920
identifier PRJDB2920
type bioproject
sameAs
organism Oryza sativa Japonica Group
title Transcriptional profiling during OSH1 induction
description In flowering plants, knotted1-like homeobox (KNOX) transcription factors play crucial roles in establishment and maintenance of the shoot apical meristem (SAM), from which aerial organs such as leaves, stems and flowers initiate. We report that a rice (Oryza Sativa) KNOX gene Oryza sativa homeobox1 (OSH1) represses the brassinosteroid (BR) phytohormone pathway through activation of BR catabolism genes. Inducible overexpression of OSH1 caused brassinosteroid insensitivity, whereas loss-of-function showed a BR-overproduction phenotype. Genome-wide identification of loci bound and regulated by OSH1 revealed hormonal and transcriptional regulation as the major function of OSH1. Among these targets, BR catabolism genes CYP734A2, CYP734A4 and CYP734A6 were rapidly up-regulated by OSH1-induction. Furthermore, RNAi knockdown plants of CYP734A genes arrested growth of the SAM and mimicked some osh1 phenotypes. Thus, we suggest that local control of BR levels by KNOX genes is a key regulatory step in SAM function.
data type Transcriptome or Gene Expression
publication
properties 
{...}
dbXrefs
sra-run  DRR019482DRR019483DRR019484DRR019485DRR019486DRR019487DRR019488DRR019489DRR019490DRR019491 More
sra-submission  DRA002287
biosample  SAMD00017722SAMD00017720SAMD00017721SAMD00017719SAMD00017726SAMD00017724SAMD00017725SAMD00017723
sra-study  DRP002329
sra-sample  DRS016284DRS016282DRS016283DRS016281DRS016288DRS016286DRS016287DRS016285
sra-experiment  DRX017635DRX017636DRX017637DRX017638DRX017639DRX017640DRX017641DRX017642DRX017643DRX017644 More
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status public
visibility unrestricted-access
dateCreated 2014-06-13T13:17:11+09:00
dateModified 2014-06-27T00:19:00+09:00
datePublished 2014-06-27T00:19:00+09:00