Phytochrome C plays a major role in the acceleration of wheat flowering under long-day photoperiod.

PubWeight™: 1.32‹?› | Rank: Top 10%

🔗 View Article (PMC 4104863)

Published in Proc Natl Acad Sci U S A on June 24, 2014

Authors

Andrew Chen1, Chengxia Li2, Wei Hu3, Mei Yee Lau1, Huiqiong Lin1, Nathan C Rockwell3, Shelley S Martin3, Judith A Jernstedt1, J Clark Lagarias4, Jorge Dubcovsky5

Author Affiliations

1: Departments of Plant Sciences and.
2: Departments of Plant Sciences andHoward Hughes Medical Institute, Chevy Chase, MD 20815.
3: Molecular and Cellular Biology, University of California, Davis, CA 95616; and.
4: Molecular and Cellular Biology, University of California, Davis, CA 95616; and jdubcovsky@ucdavis.edu jclagarias@ucdavis.edu.
5: Departments of Plant Sciences andHoward Hughes Medical Institute, Chevy Chase, MD 20815 jdubcovsky@ucdavis.edu jclagarias@ucdavis.edu.

Articles citing this

Photoperiodic flowering: time measurement mechanisms in leaves. Annu Rev Plant Biol (2014) 1.26

Identification of new heading date determinants in wheat 5B chromosome. BMC Plant Biol (2016) 1.04

Genome-based establishment of a high-yielding heterotic pattern for hybrid wheat breeding. Proc Natl Acad Sci U S A (2015) 0.98

Mapping-by-sequencing identifies HvPHYTOCHROME C as a candidate gene for the early maturity 5 locus modulating the circadian clock and photoperiodic flowering in barley. Genetics (2014) 0.94

PHYTOCHROME C is an essential light receptor for photoperiodic flowering in the temperate grass, Brachypodium distachyon. Genetics (2014) 0.89

Integrating circadian dynamics with physiological processes in plants. Nat Rev Genet (2015) 0.88

A splice acceptor site mutation in TaGW2-A1 increases thousand grain weight in tetraploid and hexaploid wheat through wider and longer grains. Theor Appl Genet (2016) 0.82

Genetic architecture of flowering-time variation in Brachypodium distachyon. Plant Physiol (2016) 0.82

Uncovering hidden variation in polyploid wheat. Proc Natl Acad Sci U S A (2017) 0.81

Winter memory throughout the plant kingdom: different paths to flowering. Plant Physiol (2016) 0.80

CONSTANS Controls Floral Repression by Up-Regulating VERNALIZATION2 (VRN-H2) in Barley. Plant Physiol (2015) 0.80

Genetic and physical mapping of the earliness per se locus Eps-A (m) 1 in Triticum monococcum identifies EARLY FLOWERING 3 (ELF3) as a candidate gene. Funct Integr Genomics (2016) 0.80

A Constitutively Active Allele of Phytochrome B Maintains Circadian Robustness in the Absence of Light. Plant Physiol (2015) 0.79

SPA proteins: SPAnning the gap between visible light and gene expression. Planta (2016) 0.78

mlo-based powdery mildew resistance in hexaploid bread wheat generated by a non-transgenic TILLING approach. Plant Biotechnol J (2016) 0.78

Construction of high-density genetic linkage map and identification of flowering-time QTLs in orchardgrass using SSRs and SLAF-seq. Sci Rep (2016) 0.77

Ectopic expression of Jatropha curcas APETALA1 (JcAP1) caused early flowering in Arabidopsis, but not in Jatropha. PeerJ (2016) 0.77

Genomic dissection and prediction of heading date in perennial ryegrass. BMC Genomics (2015) 0.77

RNA-seq studies using wheat PHYTOCHROME B and PHYTOCHROME C mutants reveal shared and specific functions in the regulation of flowering and shade-avoidance pathways. BMC Plant Biol (2016) 0.77

The wheat Phs-A1 pre-harvest sprouting resistance locus delays the rate of seed dormancy loss and maps 0.3 cM distal to the PM19 genes in UK germplasm. J Exp Bot (2016) 0.76

Wheat gene for all seasons. Proc Natl Acad Sci U S A (2015) 0.75

Bottom-up Assembly of the Phytochrome Network. PLoS Genet (2016) 0.75

The occurrence of spring forms in tetraploid Timopheevi wheat is associated with variation in the first intron of the VRN-A1 gene. BMC Plant Biol (2016) 0.75

Characterization of a mini core collection of Japanese wheat varieties using single-nucleotide polymorphisms generated by genotyping-by-sequencing. Breed Sci (2016) 0.75

Heading Date QTL in Winter Wheat (Triticum aestivum L.) Coincide with Major Developmental Genes VERNALIZATION1 and PHOTOPERIOD1. PLoS One (2016) 0.75

Profile of Jorge Dubcovsky. Proc Natl Acad Sci U S A (2014) 0.75

Genetic Architecture of Flowering Phenology in Cereals and Opportunities for Crop Improvement. Front Plant Sci (2016) 0.75

Editorial: Recent Advances in Flowering Time Control. Front Plant Sci (2017) 0.75

Regulation of FT splicing by an endogenous cue in temperate grasses. Nat Commun (2017) 0.75

Articles cited by this

Floral dip: a simplified method for Agrobacterium-mediated transformation of Arabidopsis thaliana. Plant J (1998) 97.93

FT protein movement contributes to long-distance signaling in floral induction of Arabidopsis. Science (2007) 8.26

Development of series of gateway binary vectors, pGWBs, for realizing efficient construction of fusion genes for plant transformation. J Biosci Bioeng (2007) 7.98

The CONSTANS gene of Arabidopsis promotes flowering and encodes a protein showing similarities to zinc finger transcription factors. Cell (1995) 7.76

Photoreceptor regulation of CONSTANS protein in photoperiodic flowering. Science (2004) 6.52

Positional cloning of the wheat vernalization gene VRN1. Proc Natl Acad Sci U S A (2003) 6.34

Natural variation in Ghd7 is an important regulator of heading date and yield potential in rice. Nat Genet (2008) 5.64

Phytochrome structure and signaling mechanisms. Annu Rev Plant Biol (2006) 5.31

Hd3a protein is a mobile flowering signal in rice. Science (2007) 5.05

Light-regulated transcriptional networks in higher plants. Nat Rev Genet (2007) 4.82

Regulation and identity of florigen: FLOWERING LOCUS T moves center stage. Annu Rev Plant Biol (2008) 4.75

The wheat and barley vernalization gene VRN3 is an orthologue of FT. Proc Natl Acad Sci U S A (2006) 4.38

The pseudo-response regulator Ppd-H1 provides adaptation to photoperiod in barley. Science (2005) 4.31

Large deletions within the first intron in VRN-1 are associated with spring growth habit in barley and wheat. Mol Genet Genomics (2005) 3.63

Adaptation of photoperiodic control pathways produces short-day flowering in rice. Nature (2003) 3.58

Phytochrome functions in Arabidopsis development. J Exp Bot (2010) 3.45

A pseudo-response regulator is misexpressed in the photoperiod insensitive Ppd-D1a mutant of wheat (Triticum aestivum L.). Theor Appl Genet (2007) 3.42

NSP1 of the GRAS protein family is essential for rhizobial Nod factor-induced transcription. Science (2005) 3.40

Microarray analysis of diurnal and circadian-regulated genes in Arabidopsis. Plant Cell (2001) 3.35

Light-dependent translocation of a phytochrome B-GFP fusion protein to the nucleus in transgenic Arabidopsis. J Cell Biol (1999) 3.14

The PHYTOCHROME C photoreceptor gene mediates natural variation in flowering and growth responses of Arabidopsis thaliana. Nat Genet (2006) 3.11

The evolution of CONSTANS-like gene families in barley, rice, and Arabidopsis. Plant Physiol (2003) 2.91

Phytochrome mediates the external light signal to repress FT orthologs in photoperiodic flowering of rice. Genes Dev (2002) 2.67

A modified TILLING approach to detect induced mutations in tetraploid and hexaploid wheat. BMC Plant Biol (2009) 2.57

HvVRN2 responds to daylength, whereas HvVRN1 is regulated by vernalization and developmental status. Plant Physiol (2006) 2.50

MADS box genes control vernalization-induced flowering in cereals. Proc Natl Acad Sci U S A (2003) 2.49

Dimers of the N-terminal domain of phytochrome B are functional in the nucleus. Nature (2003) 2.38

Phytochrome signaling mechanisms and the control of plant development. Trends Cell Biol (2011) 2.31

Distinct and cooperative functions of phytochromes A, B, and C in the control of deetiolation and flowering in rice. Plant Cell (2005) 2.09

Phytochromes confer the photoperiodic control of flowering in rice (a short-day plant). Plant J (2000) 2.02

Isolation and characterization of phyC mutants in Arabidopsis reveals complex crosstalk between phytochrome signaling pathways. Plant Cell (2003) 1.90

Effect of photoperiod on the regulation of wheat vernalization genes VRN1 and VRN2. Plant Mol Biol (2006) 1.89

Variations in Hd1 proteins, Hd3a promoters, and Ehd1 expression levels contribute to diversity of flowering time in cultivated rice. Proc Natl Acad Sci U S A (2009) 1.89

Patterns of expression and normalized levels of the five Arabidopsis phytochromes. Plant Physiol (2002) 1.87

Photoreceptor signaling networks in plant responses to shade. Annu Rev Plant Biol (2013) 1.83

Regulation of VRN-1 vernalization genes in normal and transgenic polyploid wheat. Plant Physiol (2005) 1.74

Copy number variation affecting the Photoperiod-B1 and Vernalization-A1 genes is associated with altered flowering time in wheat (Triticum aestivum). PLoS One (2012) 1.74

Coincident light and clock regulation of pseudoresponse regulator protein 37 (PRR37) controls photoperiodic flowering in sorghum. Proc Natl Acad Sci U S A (2011) 1.73

Vernalization-induced flowering in cereals is associated with changes in histone methylation at the VERNALIZATION1 gene. Proc Natl Acad Sci U S A (2009) 1.65

Wheat FT protein regulates VRN1 transcription through interactions with FDL2. Plant J (2008) 1.61

Mutant analyses define multiple roles for phytochrome C in Arabidopsis photomorphogenesis. Plant Cell (2003) 1.61

Wheat TILLING mutants show that the vernalization gene VRN1 down-regulates the flowering repressor VRN2 in leaves but is not essential for flowering. PLoS Genet (2012) 1.58

Light-regulated nuclear localization of phytochromes. Curr Opin Plant Biol (2004) 1.58

Complexity in the wiring and regulation of plant circadian networks. Curr Biol (2012) 1.58

Obligate heterodimerization of Arabidopsis phytochromes C and E and interaction with the PIF3 basic helix-loop-helix transcription factor. Plant Cell (2009) 1.52

Photoperiod insensitive Ppd-A1a mutations in tetraploid wheat (Triticum durum Desf.). Theor Appl Genet (2008) 1.51

Heterodimerization of type II phytochromes in Arabidopsis. Proc Natl Acad Sci U S A (2004) 1.49

The einkorn wheat (Triticum monococcum) mutant, maintained vegetative phase, is caused by a deletion in the VRN1 gene. Genes Genet Syst (2007) 1.38

Characterization and functional analysis of three wheat genes with homology to the CONSTANS flowering time gene in transgenic rice. Plant J (2003) 1.37

A genetic network of flowering-time genes in wheat leaves, in which an APETALA1/FRUITFULL-like gene, VRN1, is upstream of FLOWERING LOCUS T. Plant J (2009) 1.36

Suppression of the floral activator Hd3a is the principal cause of the night break effect in rice. Plant Cell (2005) 1.34

Diverse two-cysteine photocycles in phytochromes and cyanobacteriochromes. Proc Natl Acad Sci U S A (2011) 1.31

Regulation of FLOWERING LOCUS T by a microRNA in Brachypodium distachyon. Plant Cell (2013) 1.28

Positional relationships between photoperiod response QTL and photoreceptor and vernalization genes in barley. Theor Appl Genet (2006) 1.27

Functional characterisation of HvCO1, the barley (Hordeum vulgare) flowering time ortholog of CONSTANS. Plant J (2012) 1.21

Characterization of the maintained vegetative phase deletions from diploid wheat and their effect on VRN2 and FT transcript levels. Mol Genet Genomics (2010) 1.15

The impact of photoperiod insensitive Ppd-1a mutations on the photoperiod pathway across the three genomes of hexaploid wheat (Triticum aestivum). Plant J (2012) 1.13

Natural variation in OsPRR37 regulates heading date and contributes to rice cultivation at a wide range of latitudes. Mol Plant (2013) 1.11

Expression conservation within the circadian clock of a monocot: natural variation at barley Ppd-H1 affects circadian expression of flowering time genes, but not clock orthologs. BMC Plant Biol (2012) 1.10

Phytochrome B regulates Heading date 1 (Hd1)-mediated expression of rice florigen Hd3a and critical day length in rice. Mol Genet Genomics (2011) 1.08

The phytochrome red/far-red photoreceptor superfamily. Genome Biol (2008) 1.04

Evolutionary studies illuminate the structural-functional model of plant phytochromes. Plant Cell (2010) 1.02

Unanticipated regulatory roles for Arabidopsis phytochromes revealed by null mutant analysis. Proc Natl Acad Sci U S A (2013) 0.99

Phytochrome C is a key factor controlling long-day flowering in barley. Plant Physiol (2013) 0.98

Characterization of FLOWERING LOCUS T1 (FT1) gene in Brachypodium and wheat. PLoS One (2014) 0.98

Phytochrome cytoplasmic signaling. Annu Rev Plant Biol (2013) 0.95

Exogenous gibberellins induce wheat spike development under short days only in the presence of VERNALIZATION1. Plant Physiol (2013) 0.91

Mutant alleles of Photoperiod-1 in wheat (Triticum aestivum L.) that confer a late flowering phenotype in long days. PLoS One (2013) 0.88

Allelic variation at the linked AP1 and PhyC loci in hexaploid wheat is associated but not perfectly correlated with vernalization response. Theor Appl Genet (2005) 0.88

The PRR family of transcriptional regulators reflects the complexity and evolution of plant circadian clocks. Curr Opin Plant Biol (2013) 0.84

Association mapping, patterns of linkage disequilibrium and selection in the vicinity of the PHYTOCHROME C gene in pearl millet. Theor Appl Genet (2013) 0.83

Light perception and signalling by phytochrome A. J Exp Bot (2013) 0.81