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identifier PRJEB15204
type bioproject
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title AtPRMT5 regulates shoot regeneration through modulating multiple genes expression analyzed by RNA-seq
description Protein arginine methylation plays essential roles in diverse biological processes, but its role in regulating shoot regeneration remains elusive. In this study, we analyzed the function of the protein arginine methyltransferase AtPRMT5 during de novo shoot regeneration in Arabidopsis. AtPRMT5 encodes a type II PRMT that methylates proteins, including histones and RNA splicing factors. Mutation of AtPMRT5 decreased the frequency of shoot regeneration and number of shoots per callus in the atprmt5 mutant compared with those of the wild type. To understand the mechanism of AtPRMT5 regulation of shoot regeneration, we analyzed the transcript levels of wild type and the mutant atprmt5 calli during shoot regeneration by RNA-seq. Three biological repeats of wild type and the mutant atprmt5-1 calli were used for RNA sequencing. Total RNAs were isolated from the calli of wild type Col and the mutant atprmt5-1 cultured on cultured on shoot-induction medium. The RNA-seq llibraries were constructed with TruSeq Stranded mRNA Library Prep Kit and sequenced using the Illumina Hiseq 2500. The raw reads were aligned to the genome sequences of TAIR10 using Tophat software. The gene expression levels were measured in RPKM, and many critical genes regulated by AtPRMT5 were identified to be involved in shoot regeneration.
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sra-run  ERR1592576ERR1592577ERR1592578ERR1592579ERR1592580ERR1592581
sra-submission  ERA693480
biosample  SAMEA4390760SAMEA4390761SAMEA4390762SAMEA4390763SAMEA4390764SAMEA4390765
sra-study  ERP016911
sra-sample  ERS1302209ERS1302210ERS1302211ERS1302212ERS1302213ERS1302214
sra-experiment  ERX1663062ERX1663063ERX1663064ERX1663065ERX1663066ERX1663067
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status public
visibility unrestricted-access
dateCreated 2017-06-19T00:00:00Z
dateModified 2017-06-19T00:00:00Z
datePublished