Spatiotemporal auxin distribution in Arabidopsis tissues is regulated by anabolic and catabolic reactions under long-term ammonium stress.

Kacper Dziewit, Aleš Pěnčík, Katarzyna Dobrzyńska, Ondřej Novák, Bożena Szal, Anna Podgórska

Journal: BMC plant biology 2021;21(1):602

PMID: 34922457

Abstract

BACKGROUND

The plant hormone auxin is a major coordinator of plant growth and development in response to diverse environmental signals, including nutritional conditions. Sole ammonium (NH) nutrition is one of the unique growth-suppressing conditions for plants. Therefore, the quest to understand NH-mediated developmental defects led us to analyze auxin metabolism.

RESULTS

Indole-3-acetic acid (IAA), the most predominant natural auxin, accumulates in the leaves and roots of mature Arabidopsis thaliana plants grown on NH, but not in the root tips. We found changes at the expressional level in reactions leading to IAA biosynthesis and deactivation in different tissues. Finally, NH nutrition would facilitate the formation of inactive oxidized IAA as the final product.

CONCLUSIONS

NH-mediated accelerated auxin turnover rates implicate transient and local IAA peaks. A noticeable auxin pattern in tissues correlates with the developmental adaptations of the short and highly branched root system of NH-grown plants. Therefore, the spatiotemporal distribution of auxin might be a root-shaping signal specific to adjust to NH-stress conditions.

© 2021. The Author(s).

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