The WD40-repeat proteins NFC101 and NFC102 regulate different aspects of maize development through chromatin modification

scientific article published on 19 February 2013

The WD40-repeat proteins NFC101 and NFC102 regulate different aspects of maize development through chromatin modification is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1105/TPC.112.107219
P698PubMed publication ID23424244

P50authorRaffaella BattagliaQ59553818
P2093author name stringMassimiliano Lauria
Vincenzo Rossi
Davide Mainieri
Andrea Altana
Iride Mascheretti
P2860cites workRNA-mediated chromatin-based silencing in plantsQ28236381
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Exceptional diversity, non-random distribution, and rapid evolution of retroelements in the B73 maize genomeQ30912427
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FASCIATA genes for chromatin assembly factor-1 in arabidopsis maintain the cellular organization of apical meristemsQ33335316
The maize WD-repeat gene ZmRbAp1 encodes a member of the MSI/RbAp sub-family and is differentially expressed during endosperm developmentQ33335766
delayed flowering1 Encodes a basic leucine zipper protein that mediates floral inductive signals at the shoot apex in maizeQ33343343
Maize histone deacetylase hda101 is involved in plant development, gene transcription, and sequence-specific modulation of histone modification of genes and repeatsQ33343997
Involvement of the MADS-box gene ZMM4 in floral induction and inflorescence development in maize.Q33345655
The FT-like ZCN8 Gene Functions as a Floral Activator and Is Involved in Photoperiod Sensitivity in Maize.Q33350882
Differential interactions of the autonomous pathway RRM proteins and chromatin regulators in the silencing of Arabidopsis targetsQ33352012
The indeterminate gene encodes a zinc finger protein and regulates a leaf-generated signal required for the transition to flowering in maizeQ33368639
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Arabidopsis homologs of retinoblastoma-associated protein 46/48 associate with a histone deacetylase to act redundantly in chromatin silencing.Q34079184
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MSI4/FVE interacts with CUL4-DDB1 and a PRC2-like complex to control epigenetic regulation of flowering time in Arabidopsis.Q34602692
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Control of the transition to flowering by chromatin modifications.Q37613984
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Expression profile and cellular localization of maize Rpd3-type histone deacetylases during plant developmentQ38350437
A genetic link between cold responses and flowering time through FVE in Arabidopsis thalianaQ38518307
ZCN8 encodes a potential orthologue of Arabidopsis FT florigen that integrates both endogenous and photoperiod flowering signals in maizeQ38699648
Assessing the efficiency of RNA interference for maize functional genomicsQ40241408
Diverse functions of WD40 repeat proteins in histone recognitionQ41811756
Alternative transcription exceeds alternative splicing in generating the transcriptome diversity of cerebellar developmentQ42125038
Antisense transcription controls cell fate in Saccharomyces cerevisiaeQ42603749
A maize histone deacetylase and retinoblastoma-related protein physically interact and cooperate in repressing gene transcription.Q44325815
Histone acetylation and chromatin remodeling are required for UV-B-dependent transcriptional activation of regulated genes in maizeQ44592124
Chromatin and DNA modifications in the Opaque2-mediated regulation of gene transcription during maize endosperm development.Q45989252
A genomic and expression compendium of the expanded PEBP gene family from maizeQ46907196
Regulation of flowering time by FVE, a retinoblastoma-associated proteinQ47239981
AtMSI4 and RbAp48 WD-40 repeat proteins bind metal ionsQ47998262
Mechanisms of floral induction in grasses: something borrowed, something new.Q51943081
Small Silencing RNAs in Plants Are Mobile and Direct Epigenetic Modification in Recipient CellsQ56926901
Participation of chromatin-remodeling proteins in the repair of ultraviolet-B-damaged DNAQ63000657
A genetic and physiological analysis of late flowering mutants in Arabidopsis thalianaQ67978624
P433issue2
P304page(s)404-420
P577publication date2013-02-19
P1433published inThe Plant CellQ3988745
P1476titleThe WD40-repeat proteins NFC101 and NFC102 regulate different aspects of maize development through chromatin modification
P478volume25

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cites work (P2860)
Q54959754Analysis of Gene Regulatory Networks of Maize in Response to Nitrogen.
Q49572230Control of Maize Vegetative and Reproductive Development, Fertility, and rRNAs Silencing by HISTONE DEACETYLASE 108.
Q54947840Distinct gene networks modulate floral induction of autonomous maize and photoperiod-dependent teosinte.
Q39221834Florigen-Encoding Genes of Day-Neutral and Photoperiod-Sensitive Maize Are Regulated by Different Chromatin Modifications at the Floral Transition.
Q48231497Genome-Wide Mapping of Targets of Maize Histone Deacetylase HDA101 Reveals Its Function and Regulatory Mechanism during Seed Development.

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