Temperature-dependent polar lignification of a seed coat suberin layer promoting dormancy in <i>Arabidopsis thaliana</i>

L Lena Hyvärinen (Department of Plant Sciences, University of Geneva) C Christelle Fuchs (Department of Plant Sciences, University of Geneva) A Anne Utz-Pugin (Department of Plant Sciences, University of Geneva) K Kay Gully (Department of Plant Molecular Biology, University of Lausanne) C Christian Megies (Department of Plant Sciences, University of Geneva) J Julia Holbein (Department of Ecophysiology, Institute of Cellular and Molecular Botany, University of Bonn) M Mayumi Iwasaki (Department of Plant Sciences, University of Geneva) L Lara Demonsais (Department of Plant Sciences, University of Geneva) M Maria Beatriz Capitão (Department of Plant Sciences, University of Geneva) M Marie Barberon (Department of Plant Sciences, University of Geneva) R Rochus B. Franke (Department of Ecophysiology, Institute of Cellular and Molecular Botany, University of Bonn) C Christiane Nawrath (Department of Plant Molecular Biology, University of Lausanne) S Sylvain Loubéry (Department of Plant Sciences, University of Geneva) L Luis Lopez-Molina (Department of Plant Sciences, University of Geneva)

Abstract

The seed is a landmark plant adaptation where the embryo is sheltered by a protective seed coat to facilitate dispersion. In Arabidopsis , the seed coat, derived from ovular integuments, plays a critical role in maintaining dormancy, ensuring germination occurs during a favorable season. Dormancy is enhanced by cold temperatures during seed development by affecting seed coat permeability through changes in apoplastic barriers. However, their localization and composition are poorly understood. This study identifies and investigates a polar barrier in the seed coat’s outer integument (oi1) cells. We present histological, biochemical, and genetic evidence showing that cold promotes polar seed coat lignification of the outer integument 1 (oi1) cells and suberization throughout the entire oi1 cell boundary. The polar oi1 barrier is regulated by the transcription factors MYB107 and MYB9. MYB107, in particular, is crucial for the lignified polar oi1 barrier formation under cold temperatures. The absence of the oi1 barrier in mutant seeds correlates with increased permeability and reduced dormancy. Our findings elucidate how temperature-induced modifications in seed coat composition regulate dormancy, highlighting the roles of suberin and lignin in this process.

Article Details

Volume / Issue Vol. 122, Issue 6
Published February 11, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (14)

L

Lena Hyvärinen

Department of Plant Sciences, University of Geneva

C

Christelle Fuchs

Department of Plant Sciences, University of Geneva

A

Anne Utz-Pugin

Department of Plant Sciences, University of Geneva

K

Kay Gully

Department of Plant Molecular Biology, University of Lausanne

C

Christian Megies

Department of Plant Sciences, University of Geneva

J

Julia Holbein

Department of Ecophysiology, Institute of Cellular and Molecular Botany, University of Bonn

M

Mayumi Iwasaki

Department of Plant Sciences, University of Geneva

L

Lara Demonsais

Department of Plant Sciences, University of Geneva

M

Maria Beatriz Capitão

Department of Plant Sciences, University of Geneva

M

Marie Barberon

Department of Plant Sciences, University of Geneva

R

Rochus B. Franke

Department of Ecophysiology, Institute of Cellular and Molecular Botany, University of Bonn

C

Christiane Nawrath

Department of Plant Molecular Biology, University of Lausanne

S

Sylvain Loubéry

Department of Plant Sciences, University of Geneva

L

Luis Lopez-Molina

Department of Plant Sciences, University of Geneva