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Stomatal closure in maize is mediated by subsidiary cells and the PAN2 receptor.

Authors :
Liu, Le
Ashraf, M. Arif
Morrow, Taylor
Facette, Michelle
Source :
New Phytologist. Feb2024, Vol. 241 Issue 3, p1130-1143. 14p.
Publication Year :
2024

Abstract

Summary: Stomata are epidermal pores that facilitate plant gas exchange. Grasses have fast stomatal movements, likely due to their dumbbell‐shaped guard cells and lateral subsidiary cells. Subsidiary cells reciprocally exchange water and ions with guard cells. However, the relative contribution of subsidiary cells during stomatal closure is unresolved.We compared stomatal gas exchange and stomatal aperture dynamics in wild‐type and pan1, pan2, and pan1;pan2 Zea mays (L.) (maize) mutants, which have varying percentages of aberrantly formed subsidiary cells. Stomata with 1 or 2 defective subsidiary cells cannot close properly, indicating that subsidiary cells are essential for stomatal function.Even though the percentage of aberrant stomata is similar in pan1 and pan2, pan2 showed a more severe defect in stomatal closure. In pan1, only stomata with abnormal subsidiary cells fail to close normally. In pan2, all stomata have stomatal closure defects, indicating that PAN2 has an additional role in stomatal closure.Maize Pan2 is orthologous to Arabidopsis GUARD CELL HYDROGEN PEROXIDE‐RESISANT1 (GHR1), which is also required for stomatal closure. PAN2 acts downstream of Ca2+ in maize to promote stomatal closure. This is in contrast to GHR1, which acts upstream of Ca2+, and suggests the pathways could be differently wired. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
0028646X
Volume :
241
Issue :
3
Database :
Academic Search Index
Journal :
New Phytologist
Publication Type :
Academic Journal
Accession number :
174762965
Full Text :
https://doi.org/10.1111/nph.19379