Abstract

[This corrects the article DOI: 10.1371/journal.pone.0212506.].

Highlights

  • A CO2-enriched atmosphere reduced the differentiation of epidermal cells to stomata on both leaf surfaces, reducing stomatal density and index

  • Due to low transpiration flux, soil water content was conserved during the experiment

  • Under the combination of elevated [CO2] and warming, warming cancelled the CO2 effect on soil water content and transpiration. When combined, these two environmental factors produced a set of anatomical adjustments that contributed to the acclimation of this species to future conditions increasing leaf biomass production

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Summary

PLOS ONE

Correction: Increasing atmospheric CO2 and canopy temperature induces anatomical and physiological changes in leaves of the C4 forage species Panicum maximum.

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