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  3. Carbon-11 Reveals Opposing Roles of Auxin and Salicylic Acid in Regulating Leaf Physiology, Leaf Metabolism, and Resource Allocation Patterns that Impact Root Growth in Zea mays

Carbon-11 Reveals Opposing Roles of Auxin and Salicylic Acid in Regulating Leaf Physiology, Leaf Metabolism, and Resource Allocation Patterns that Impact Root Growth in Zea mays

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DOI
10.7892/boris.70659
Publisher DOI
10.1007/s00344-013-9379-8
Abstract
Auxin (IAA) is an important regulator of plant development and root differentiation. Although recent studies indicate that salicylic acid (SA) may also be important in this context by interfering with IAA signaling, comparatively little is known about its impact on the plant’s physiology, metabolism, and growth characteristics. Using carbon-11, a short-lived radioisotope (t 1/2 = 20.4 min) administered as 11CO2 to maize plants (B73), we measured changes in these functions using SA and IAA treatments. IAA application decreased total root biomass, though it increased lateral root growth at the expense of primary root elongation. IAA-mediated inhibition of root growth was correlated with decreased 11CO2 fixation, photosystem II (PSII) efficiency, and total leaf carbon export of 11C-photoassimilates and their allocation belowground. Furthermore, IAA application increased leaf starch content. On the other hand, SA application increased total root biomass, 11CO2 fixation, PSII efficiency, and leaf carbon export of 11C-photoassimilates, but it decreased leaf starch content. IAA and SA induction patterns were also examined after root-herbivore attack by Diabrotica virgifera to place possible hormone crosstalk into a realistic environmental context. We found that 4 days after infestation, IAA was induced in the midzone and root tip, whereas SA was induced only in the upper proximal zone of damaged roots. We conclude that antagonistic crosstalk exists between IAA and SA which can affect the development of maize plants, particularly through alteration of the root system’s architecture, and we propose that the integration of both signals may shape the plant’s response to environmental stress.
Date Issued
2014-06
Publication Type
Article
Subject(s)
500 Science > 580 Plants (Botany)
Subjects
Carbon-11
•
PET imaging
•
Auxin
•
Salicylic acid
•
Hormone crosstalk
•
Root–herbivore interactions
Language(s)
en
Author(s)
Agtuca, Beverly
Rieger, Elisabeth
Hilger, Katharina
Song, Lihui
Robert, Christelle A. M.
Erb, Matthias  
Institut für Pflanzenwissenschaften (IPS)  
Karve, Abhijit
Ferrieri, Richard A.
Additional Credits
Institut für Pflanzenwissenschaften (IPS)  
Journal
Journal of Plant Growth Regulation
Publisher
Springer
ISSN
0721-7595
Access(Rights)
open.access
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