GH3‐mediated auxin inactivation attenuates multiple stages of lateral root development

Author:

Wang Qing12ORCID,De Gernier Hugues12ORCID,Duan Xingliang3ORCID,Xie Yuanming3ORCID,Geelen Danny4ORCID,Hayashi Ken‐ishiro5ORCID,Xuan Wei3ORCID,Geisler Markus6ORCID,ten Tusscher Kirsten7ORCID,Beeckman Tom12ORCID,Vanneste Steffen124ORCID

Affiliation:

1. Department of Plant Biotechnology and Bioinformatics Ghent University Ghent 9052 Belgium

2. Center for Plant Systems Biology VIB 9052 Ghent Belgium

3. MOA Key Laboratory of Plant Nutrition and Fertilization in Lower‐Middle Reaches of the Yangtze River and State Key Laboratory of Crop Genetics and Germplasm Enhancement Nanjing Agricultural University Nanjing 210095 China

4. Department of Plants and Crops, Faculty of Bioscience Engineering Ghent University Ghent 9000 Belgium

5. Department of Bioscience Okayama University of Science Okayama 700‐0005 Japan

6. Department of Biology University of Fribourg Fribourg CH‐1700 Switzerland

7. Computational Developmental Biology Group, Faculty of Science Utrecht University Utrecht 3584 CH the Netherlands

Abstract

Summary Lateral root (LR) positioning and development rely on the dynamic interplay between auxin production, transport but also inactivation. Nonetheless, how the latter affects LR organogenesis remains largely uninvestigated. Here, we systematically analyze the impact of the major auxin inactivation pathway defined by GRETCHEN HAGEN3‐type (GH3) auxin conjugating enzymes and DIOXYGENASE FOR AUXIN OXIDATION1 (DAO1) in all stages of LR development using reporters, genetics and inhibitors in Arabidopsis thaliana. Our data demonstrate that the gh3.1/2/3/4/5/6 hextuple (gh3hex) mutants display a higher LR density due to increased LR initiation and faster LR developmental progression, acting epistatically over dao1‐1. Grafting and local inhibitor applications reveal that root and shoot GH3 activities control LR formation. The faster LR development in gh3hex is associated with GH3 expression domains in and around developing LRs. The increase in LR initiation is associated with accelerated auxin response oscillations coinciding with increases in apical meristem size and LR cap cell death rates. Our research reveals how GH3‐mediated auxin inactivation attenuates LR development. Local GH3 expression in LR primordia attenuates development and emergence, whereas GH3 effects on pre‐initiation stages are indirect, by modulating meristem activities that in turn coordinate root growth with LR spacing.

Funder

Bijzonder Onderzoeksfonds UGent

China Scholarship Council

Fonds Wetenschappelijk Onderzoek

Publisher

Wiley

Subject

Plant Science,Physiology

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