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Berggren, Kristina
Publications (2 of 2) Show all publications
Hepworth, J., Antoniou-Kourounioti, R. L., Berggren, K., Selga, C., Tudor, E. H., Yates, B., . . . Dean, C. (2020). Natural variation in autumn expression is the major adaptive determinant distinguishing Arabidopsis FLC haplotypes. eLIFE, 9
Open this publication in new window or tab >>Natural variation in autumn expression is the major adaptive determinant distinguishing Arabidopsis FLC haplotypes
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2020 (English)In: eLIFE, E-ISSN 2050-084X, Vol. 9Article in journal (Refereed) Published
Abstract [en]

In Arabidopsis thaliana, winter is registered during vernalization through the temperature-dependent repression and epigenetic silencing of floral repressor FLOWERING LOCUS C (FLC). Natural Arabidopsis accessions show considerable variation in vernalization. However, which aspect of the FLC repression mechanism is most important for adaptation to different environments is unclear. By analysing FLC dynamics in natural variants and mutants throughout winter in three field sites, we find that autumnal FLC expression, rather than epigenetic silencing, is the major variable conferred by the distinct Arabidopsis FLChaplotypes. This variation influences flowering responses of Arabidopsis accessions resulting in an interplay between promotion and delay of flowering in different climates to balance survival and, through a post-vernalization effect, reproductive output. These data reveal how expression variation through non-coding cis variation at FLC has enabled Arabidopsis accessions to adapt to different climatic conditions and year-on-year fluctuations. 

Keywords
A. thaliana, chromosomes, field conditions, FLOWERING LOCUS C, gene expression, natural variation, plant biology
National Category
Genetics and Genomics
Identifiers
urn:nbn:se:miun:diva-40144 (URN)10.7554/eLife.57671 (DOI)000575734400001 ()2-s2.0-85091808004 (Scopus ID)
Available from: 2020-10-13 Created: 2020-10-13 Last updated: 2025-09-25
Hepworth, J., Antoniou-Kourounioti, R. L., Bloomer, R. H., Selga, C., Berggren, K., Cox, D., . . . Dean, C. (2018). Absence of warmth permits epigenetic memory of winter in Arabidopsis. Nature Communications, 9(1), Article ID 639.
Open this publication in new window or tab >>Absence of warmth permits epigenetic memory of winter in Arabidopsis
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2018 (English)In: Nature Communications, E-ISSN 2041-1723, Vol. 9, no 1, article id 639Article in journal (Refereed) Published
Abstract [en]

Plants integrate widely fluctuating temperatures to monitor seasonal progression. Here, we investigate the temperature signals in field conditions that result in vernalisation, the mechanism by which flowering is aligned with spring. We find that multiple, distinct aspects of the temperature profile contribute to vernalisation. In autumn, transient cold temperatures promote transcriptional shutdown of Arabidopsis FLOWERING LOCUS C (FLC), independently of factors conferring epigenetic memory. As winter continues, expression of VERNALIZATION INSENSITIVE3 (VIN3), a factor needed for epigenetic silencing, is upregulated by at least two independent thermosensory processes. One integrates long-term cold temperatures, while the other requires the absence of daily temperatures above 15 °C. The lack of spikes of high temperature, not just prolonged cold, is thus the major driver for vernalisation. Monitoring of peak daily temperature is an effective mechanism to judge seasonal progression, but is likely to have deleterious consequences for vernalisation as the climate becomes more variable. 

National Category
Biological Sciences
Identifiers
urn:nbn:se:miun:diva-33270 (URN)10.1038/s41467-018-03065-7 (DOI)000424748700010 ()29434233 (PubMedID)2-s2.0-85042029461 (Scopus ID)
Available from: 2018-03-14 Created: 2018-03-14 Last updated: 2025-09-25Bibliographically approved
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