ABCB‐mediated shootward auxin transport feeds into the root clock

Author:

Chen Jian12ORCID,Hu Yangjie3ORCID,Hao Pengchao4ORCID,Tsering Tashi4,Xia Jian4ORCID,Zhang Yuqin3,Roth Ohad3ORCID,Njo Maria F12ORCID,Sterck Lieven12ORCID,Hu Yun5,Zhao Yunde5,Geelen Danny6ORCID,Geisler Markus4ORCID,Shani Eilon3ORCID,Beeckman Tom12ORCID,Vanneste Steffen1267ORCID

Affiliation:

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

2. Center for Plant Systems Biology, VIB Ghent Belgium

3. School of Plant Sciences and Food Security Tel‐Aviv University Tel‐Aviv Israel

4. Department of Biology University of Fribourg Fribourg Switzerland

5. Section of Cell and Developmental Biology University of California San Diego La Jolla CA USA

6. Department of Plants and Crops Ghent University Ghent Belgium

7. Lab of Plant Growth Analysis Ghent University Global Campus Incheon Republic of Korea

Abstract

AbstractAlthough strongly influenced by environmental conditions, lateral root (LR) positioning along the primary root appears to follow obediently an internal spacing mechanism dictated by auxin oscillations that prepattern the primary root, referred to as the root clock. Surprisingly, none of the hitherto characterized PIN‐ and ABCB‐type auxin transporters seem to be involved in this LR prepatterning mechanism. Here, we characterize ABCB15, 16, 17, 18, and 22 (ABCB15‐22) as novel auxin‐transporting ABCBs. Knock‐down and genome editing of this genetically linked group of ABCBs caused strongly reduced LR densities. These phenotypes were correlated with reduced amplitude, but not reduced frequency of the root clock oscillation. High‐resolution auxin transport assays and tissue‐specific silencing revealed contributions of ABCB15‐22 to shootward auxin transport in the lateral root cap (LRC) and epidermis, thereby explaining the reduced auxin oscillation. Jointly, these data support a model in which LRC‐derived auxin contributes to the root clock amplitude.

Funder

China Scholarship Council

Fonds Wetenschappelijk Onderzoek

Planning and Budgeting Committee of the Council for Higher Education of Israel

Publisher

Springer Science and Business Media LLC

Subject

Genetics,Molecular Biology,Biochemistry

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