Genome-Wide Characterization of cis-Acting DNA Targets Reveals the Transcriptional Regulatory Framework of Opaque2 in Maize

被引:135
|
作者
Li, Chaobin [1 ]
Qiao, Zhenyi [1 ]
Qi, Weiwei [1 ,2 ]
Wang, Qian [1 ]
Yuan, Yue [1 ]
Yang, Xi [1 ]
Tang, Yuanping [1 ]
Mei, Bing [1 ]
Lv, Yuanda [3 ]
Zhao, Han [3 ]
Xiao, Han [4 ]
Song, Rentao [1 ,2 ]
机构
[1] Shanghai Univ, Sch Life Sci, Shanghai Key Lab Bioenergy Crops, Shanghai 200444, Peoples R China
[2] Coordinated Crop Biol Res Ctr, Beijing 100193, Peoples R China
[3] Jiangsu Acad Agr Sci, Inst Biotechnol, Prov Key Lab Agrobiol, Nanjing 210014, Jiangsu, Peoples R China
[4] Chinese Acad Sci, Shanghai Inst Biol Sci, Inst Plant Physiol & Ecol, Natl Key Lab Plant Mol Genet,Key Lab Synthet Biol, Shanghai 200032, Peoples R China
来源
PLANT CELL | 2015年 / 27卷 / 03期
关键词
LONG NONCODING RNAS; GENE-EXPRESSION; MOLECULAR-MECHANISMS; LYSINE CATABOLISM; EXTENSIVE CHANGES; LOCUS OPAQUE-2; AMINO-ACID; CHIP-SEQ; PROTEIN; ENDOSPERM;
D O I
10.1105/tpc.114.134858
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Opaque2 (O2) is a transcription factor that plays important roles during maize endosperm development. Mutation of the O2 gene improves the nutritional value of maize seeds but also confers pleiotropic effects that result in reduced agronomic quality. To reveal the transcriptional regulatory framework of O2, we studied the transcriptome of o2 mutants using RNA sequencing (RNA-Seq) and determined O2 DNA binding targets using chromatin immunoprecipitation coupled to high-throughput sequencing (ChIP-Seq). The RNA-Seq analysis revealed 1605 differentially expressed genes (DEGs) and 383 differentially expressed long, noncoding RNAs. The DEGs cover a wide range of functions related to nutrient reservoir activity, nitrogen metabolism, stress resistance, etc. ChIP-Seq analysis detected 1686 O2 DNA binding sites distributed over 1143 genes. Overlay of the RNA-Seq and ChIP-Seq results revealed 35 O2-modulated target genes. We identified four O2 binding motifs; among them, TGACGTGG appears to be the most conserved and strongest. We confirmed that, except for the 16- and 18-kD zeins, O2 directly regulates expression of all other zeins. O2 directly regulates two transcription factors, genes linked to carbon and amino acid metabolism and abiotic stress resistance. We built a hierarchical regulatory model for O2 that provides an understanding of its pleiotropic biological effects.
引用
收藏
页码:532 / 545
页数:14
相关论文
共 50 条
  • [21] CHARACTERIZATION OF 2 CIS-ACTING DNA ELEMENTS INVOLVED IN THE ANDROGEN REGULATION OF THE PROBASIN GENE
    RENNIE, PS
    BRUCHOVSKY, N
    LECO, KJ
    SHEPPARD, PC
    MCQUEEN, SA
    CHENG, H
    SNOEK, R
    HAMEL, A
    BOCK, ME
    MACDONALD, BS
    NICKEL, BE
    CHANG, C
    LIAO, S
    CATTINI, PA
    MATUSIK, RJ
    MOLECULAR ENDOCRINOLOGY, 1993, 7 (01) : 23 - 36
  • [22] Genome-wide Computational Analysis Reveals Cardiomyocyte-specific Transcriptional Cis-regulatory Motifs That Enable Efficient Cardiac Gene Therapy
    Rincon, Melvin Y.
    Sarcar, Shilpita
    Danso-Abeam, Dina
    Keyaerts, Marleen
    Matrai, Janka
    Samara-Kuko, Ermira
    Acosta-Sanchez, Abel
    Athanasopoulos, Takis
    Dickson, George
    Lahoutte, Tony
    De Bleser, Pieter
    VandenDriessche, Thierry
    Chuah, Marinee K.
    MOLECULAR THERAPY, 2015, 23 (01) : 43 - 52
  • [23] A Genome-Wide Regulatory Framework Identifies Maize Pericarp Color1 Controlled Genes
    Morohashi, Kengo
    Casas, Maria Isabel
    Falcone Ferreyra, Lorena
    Mejia-Guerra, Maria Katherine
    Pourcel, Lucille
    Yilmaz, Alper
    Feller, Antje
    Carvalho, Bruna
    Emiliani, Julia
    Rodriguez, Eduardo
    Pellegrinet, Silvina
    McMullen, Michael
    Casati, Paula
    Grotewold, Erich
    PLANT CELL, 2012, 24 (07): : 2745 - 2764
  • [24] Genome-wide computational prediction of transcriptional regulatory modules reveals new insights into human gene expression
    Blanchette, M
    Bataille, AR
    Chen, XY
    Poitras, C
    Laganière, J
    Lefèbvre, C
    Deblois, G
    Giguère, V
    Ferretti, V
    Bergeron, D
    Coulombe, B
    Robert, FO
    GENOME RESEARCH, 2006, 16 (05) : 656 - 668
  • [25] Genome-Wide Mapping of Targets of Maize Histone Deacetylase HDA101 Reveals Its Function and Regulatory Mechanism during Seed Development
    Yang, Hua
    Liu, Xinye
    Xin, Mingming
    Du, Jinkun
    Hu, Zhaorong
    Peng, Huiru
    Rossi, Vincenzo
    Sun, Qixin
    Ni, Zhongfu
    Yao, Yingyin
    PLANT CELL, 2016, 28 (03): : 629 - 645
  • [26] Genome-wide prediction of cis-acting RNA elements regulating tissue-specific pre-mRNA alternative splicing
    Xin Wang
    Kejun Wang
    Milan Radovich
    Yue Wang
    Guohua Wang
    Weixing Feng
    Jeremy R Sanford
    Yunlong Liu
    BMC Genomics, 10
  • [27] Genome-wide identification of miR-200 targets reveals a regulatory network controlling cell invasion
    Bracken, Cameron P.
    Li, Xiaochun
    Wright, Josephine A.
    Lawrence, David M.
    Pillman, Katherine A.
    Salmanidis, Marika
    Anderson, Matthew A.
    Dredge, B. Kate
    Gregory, Philip A.
    Tsykin, Anna
    Neilsen, Corine
    Thomson, Daniel W.
    Bert, Andrew G.
    Leerberg, Joanne M.
    Yap, Alpha S.
    Jensen, Kirk B.
    Khew-Goodall, Yeesim
    Goodall, Gregory J.
    EMBO JOURNAL, 2014, 33 (18): : 2040 - 2056
  • [28] Genome-wide prediction of cis-acting RNA elements regulating tissue-specific pre-mRNA alternative splicing
    Wang, Xin
    Wang, Kejun
    Radovich, Milan
    Wang, Yue
    Wang, Guohua
    Feng, Weixing
    Sanford, Jeremy R.
    Liu, Yunlong
    BMC GENOMICS, 2009, 10
  • [29] Genome-wide analysis of long noncoding RNAs as cis-acting regulators of transcription factor-encoding genes in IgA nephropathy
    Zhai, Yaling
    Tian, Huijuan
    Zhang, Wenhui
    Sun, Shuaigang
    Zhao, Zhanzheng
    PLOS ONE, 2024, 19 (05):
  • [30] Genome-Wide DNA Methylation Profile of Gene cis-Acting Element Methylations in All-trans Retinoic Acid-Induced Mouse Cleft Palate
    Shu, Xuan
    Shu, Shenyou
    Zhai, Yuxia
    Zhu, Lin
    Ouyang, Zhan
    DNA AND CELL BIOLOGY, 2018, 37 (12) : 993 - 1002