Scinovex
article Open AccessTop 1% cited

Potent Induction of Arabidopsis thaliana Flowering by Elevated Growth Temperature

PLoS Genetics · 2006 · Vol. 2(7) · pp. e106–e106
Sureshkumar BalasubramanianSridevi SureshkumarJanne LempeDetlef Weigel

Abstract

The transition to flowering is an important event in the plant life cycle and is modulated by several environmental factors including photoperiod, light quality, vernalization, and growth temperature, as well as biotic and abiotic stresses. In contrast to light and vernalization, little is known about the pathways that mediate the responses to other environmental variables. A mild increase in growth temperature, from 23 degrees C to 27 degrees C, is equally efficient in inducing flowering of Arabidopsis plants grown in 8-h short days as is transfer to 16-h long days. There is extensive natural variation in this response, and we identify strains with contrasting thermal reaction norms. Exploiting this natural variation, we show that FLOWERING LOCUS C potently suppresses thermal induction, and that the closely related floral repressor FLOWERING LOCUS M is a major-effect quantitative trait locus modulating thermosensitivity. Thermal induction does not require the photoperiod effector CONSTANS, acts upstream of the floral integrator FLOWERING LOCUS T, and depends on the hormone gibberellin. Analysis of mutants defective in salicylic acid biosynthesis suggests that thermal induction is independent of previously identified stress-signaling pathways. Microarray analyses confirm that the genomic responses to floral induction by photoperiod and temperature differ. Furthermore, we report that gene products that participate in RNA splicing are specifically affected by thermal induction. Above a critical threshold, even small changes in temperature can act as cues for the induction of flowering. This response has a genetic basis that is distinct from the known genetic pathways of floral transition, and appears to correlate with changes in RNA processing.

Plant Molecular Biology ResearchPlant Reproductive BiologyPlant Stress Responses and ToleranceVernalizationBiologyArabidopsisGibberellinphotoperiodismFlowering Locus CLocus (genetics)GeneticsAbscisic acidJasmonate

MeSH terms

Hot TemperatureLightModels, GeneticMutationRNARNA SplicingTemperatureGenetic VariationGenes, PlantArabidopsisDNA PrimersSalicylic AcidOligonucleotide Array Sequence AnalysisGenomicsQuantitative Trait Loci

Funding

  • Max-Planck-Gesellschaft
  • National Institutes of Health
Citations
618
FWCI
22.39
field-weighted impact
References
73
Percentile
100%
vs. same field & year
Citations per year
Cited by
References
A gene expression map of Arabidopsis thaliana development
Nature Genetics · 2005 · 2,540 citations
Cell Signaling during Cold, Drought, and Salt Stress
The Plant Cell · 2002 · 2,386 citations
Control of Flowering Time
The Plant Cell · 2002 · 1,033 citations
R/qtl: QTL mapping in experimental crosses
Bioinformatics · 2003 · 3,675 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.