Interactions between SQUAMOSA and SVP MADS-box proteins regulate meristem transitions during wheat spike development
Li, K.; Debernardi, J. M.; Li, C.; Lin, H.; Zhang, C.; Dubcovsky, J.
Show abstract
A better understanding of spike development can contribute to improving wheat productivity. MADS-box genes VRN1 and FUL2 (SQUAMOSA-clade) play critical and redundant roles in wheat spike and spikelet development, where they act as repressors of MADS-box genes of the SHORT VEGETATIVE PHASE (SVP) clade (VRT2, SVP1 and SVP3). Here, we show that wheat vrt2 svp1 mutants are late flowering, have shorter stems, increased number of spikelets per spike and unusual axillary inflorescences in nodes of the elongating stem. Constitutive expression of VRT2 resulted in leafy glumes and lemmas, reversion of basal spikelets to spikes, and down-regulation of MADS-genes involved in floral development. Moreover, constitutive expression of VRT2 enhanced spikelet defects of ful2, whereas vrt2 reduced vegetative characteristics in the spikelets of vrn1 ful2 mutants heterozygous for VRN-A1. These SVP-SQUAMOSA genetic interactions were paralleled by physical interactions among their encoded proteins. SVP proteins were able to reduce SQUAMOSA-SEPALLATA interactions in yeast-three-hybrid experiments. We propose that SQUAMOSA-SVP complexes act during the early reproductive phase to promote heading, formation of the terminal spikelet, and stem elongation, but that down-regulation of SVP genes is then necessary for the formation of SQUAMOSA-SEPALLATA complexes that are required for normal spikelet and floral development.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- SvFUL2, an A-class MADS-box transcription factor, is necessary for inflorescence determinacy in model panicoid cereal, Setaria viridis 97%
- The plastidial protein MRC promotes starch granule initiation in wheat leaves but delays B-type granule initiation in the endosperm 97%
- Variation in maize chlorophyll biosynthesis alters plant architecture 97%
Similar papers in this journal
- MicroRNA156 and its targeted SPL genes interact with the photoperiod, vernalization, and gibberellin pathways to regulate wheat heading time 98%
- Characterization of FLOWERING LOCUS T related genes and their putative gene regulatory network in semi-winter Brassica napus cultivar Zhongshaung11 97%
- Lf2 is a knotted homeobox regulator that modulates leaflet number in soybean 96%
Similar papers in this journal
- Increased and ectopic expression of Triticum polonicum VRT-A2 underlies elongated glumes and grains in hexaploid wheat in a dosage-dependent manner 97%
- FRUITFULL-like genes regulate flowering time and inflorescence architecture in tomato 97%
- The maize Hairy Sheath Frayed1 (Hsf1) mutant alters leaf patterning through increased cytokinin signaling 96%
Similar papers in this journal
- Step-wise increases in FT1 expression regulate seasonal progression of flowering in wheat (Triticum aestivum L.) 97%
- STARCH SYNTHASE 4 is required for normal starch granule initiation in amyloplasts of wheat endosperm 97%
- Homoeolog expression in polyploid wheat mutants shows limited transcriptional compensation 96%
Similar papers in this journal
- OsbZIP47 an integrator for meristem regulators during rice plant growth and development 96%
- The unequal functional redundancy of Arabidopsis INCURVATA11 and CUPULIFORMIS2 is not dependent on genetic background 96%
- Industrial chicory genome gives insight into the molecular time table of anther development and male sterility 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.