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. 2019 Jan;5(1):74-83.
doi: 10.1038/s41477-018-0338-z. Epub 2019 Jan 7.

Annual transcriptome dynamics in natural environments reveals plant seasonal adaptation

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Annual transcriptome dynamics in natural environments reveals plant seasonal adaptation

Atsushi J Nagano et al. Nat Plants. 2019 Jan.

Erratum in

Abstract

As most organisms have evolved in seasonal environments, their environmental responses should be adapted to seasonal transitions. Here we show that the combination of temperature and day length shapes the seasonal dynamics of the transcriptome and adaptation to seasonal environments in a natural habitat of a perennial plant Arabidopsis halleri subsp. gemmifera. Weekly transcriptomes for two years and bihourly diurnal transcriptomes on the four equinoxes/solstices, identified 2,879 and 7,185 seasonally- and diurnally-oscillating genes, respectively. Dominance of annual temperature changes for defining seasonal oscillations of gene expressions was indicated by controlled environment experiments manipulating the natural 1.5-month lag of temperature behind day length. We found that plants have higher fitness in 'natural' chambers than in 'unnatural' chambers simulating in-phase and anti-phase oscillations between temperature and day length. Seasonal temperature responses were disturbed in unnatural chambers. Our results demonstrate how plants use multiple types of environmental information to adapt to seasonal environments.

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References

    1. Kudoh, H. Molecular phenology in plants: In natura systems biology for the comprehensive understanding of seasonal responses under natural environments. New Phytol. 210, 399–412 (2016). - DOI
    1. Elzinga, J. A. et al. Time after time: flowering phenology and biotic interactions. Trends Ecol. Evol. 22, 432–439 (2007). - DOI
    1. Penfield, S. & MacGregor, D. R. Effects of environmental variation during seed production on seed dormancy and germination. J. Exp. Bot. 68, 819–825 (2016).
    1. Hepworth, J. & Dean, C. Flowering Locus C’s lessons: conserved chromatin switches underpinning developmental timing and adaptation. Plant Physiol. 168, 1237–1245 (2015). - DOI
    1. Polgar, C. A. & Primack, R. B. Leaf-out phenology of temperate woody plants: from trees to ecosystems. New Phytol. 191, 926–941 (2011). - DOI

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