Atmospheric CO2 alters resistance of arabidopsis to Pseudomonas syringae by affecting abscisic acid accumulation and stomatal responsiveness to coronatine

Publication date

2017-05-16

Authors

Zhou, Y.
Vroegop-Vos, Irene
Schuurink, Robert C
Pieterse, Corné M.J.ORCID 0000-0002-5473-4646ISNI 0000000357875345
Van Wees, Saskia C.M.ISNI 0000000388268855

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Article
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Abstract

Atmospheric CO2 influences plant growth and stomatal aperture. Effects of high or low CO2 levels on plant disease resistance are less well understood. Here, resistance of Arabidopsis thaliana against the foliar pathogen Pseudomonas syringae pv. tomato DC3000 (Pst) was investigated at three different CO2 levels: high (800 ppm), ambient (450 ppm), and low (150 ppm). Under all conditions tested, infection by Pst resulted in stomatal closure within 1 h after inoculation. However, subsequent stomatal reopening at 4 h, triggered by the virulence factor coronatine (COR), occurred only at ambient and high CO2, but not at low CO2. Moreover, infection by Pst was reduced at low CO2 to the same extent as infection by mutant Pst cor−. Under all CO2 conditions, the ABA mutants aba2-1 and abi1-1 were as resistant to Pst as wild-type plants under low CO2, which contained less ABA. Moreover, stomatal reopening mediated by COR was dependent on ABA. Our results suggest that reduced ABA levels at low CO2 contribute to the observed enhanced resistance to Pst by deregulation of virulence responses. This implies that enhanced ABA levels at increasing CO2 levels may have a role in weakening plant defense.

Keywords

ABA signaling, Arabidopsis resistance, Atmospheric CO, Coronatine, Stomata, Plant Science

Citation

Zhou, D, Vroegop-Vos, I, Schuurink, R C, Pieterse, C M J & Van Wees, S C M 2017, 'Atmospheric CO 2 alters resistance of arabidopsis to Pseudomonas syringae by affecting abscisic acid accumulation and stomatal responsiveness to coronatine', Frontiers in Plant Science, vol. 8, 700. https://doi.org/10.3389/fpls.2017.00700