Rab-dependent vesicular traffic affects female gametophyte development in Arabidopsis

Author:

Rojek Joanna1ORCID,Tucker Matthew R2ORCID,Pinto Sara C23,Rychłowski Michał4,Lichocka Małgorzata5,Soukupova Hana6,Nowakowska Julita7,Bohdanowicz Jerzy1,Surmacz Gabriela5,Gutkowska Małgorzata5ORCID

Affiliation:

1. Faculty of Biology, University of Gdansk, Wita Stwosza 59, Gdansk, Poland

2. Waite Research Institute, School of Agriculture, Food and Wine, The University of Adelaide, Urrbrae, South Australia, Australia

3. LAQV REQUIMTE, Departamento de Biologia, Faculdade de Ciências, Universidade do Porto, rua do Campo Alegre s/n Porto, Portugal

4. Intercollegiate Faculty of Biotechnology, University of Gdansk, Abrahama 58, Gdansk, Poland

5. Institute of Biochemistry and Biophysics, Polish Academy of Sciences, Pawinskiego 5a, Warsaw, Poland

6. Institute of Experimental Botany, Czech Academy of Sciences, Rozvojova 263, Praha 6 Lysolaje, Czech Republic

7. Faculty of Biology, University of Warsaw, Miecznikowa 1, Warsaw, Poland

Abstract

Abstract Eukaryotic cells rely on the accuracy and efficiency of vesicular traffic. In plants, disturbances in vesicular trafficking are well studied in quickly dividing root meristem cells or polar growing root hairs and pollen tubes. The development of the female gametophyte, a unique haploid reproductive structure located in the ovule, has received far less attention in studies of vesicular transport. Key molecules providing the specificity of vesicle formation and its subsequent recognition and fusion with the acceptor membrane are Rab proteins. Rabs are anchored to membranes by covalently linked geranylgeranyl group(s) that are added by the Rab geranylgeranyl transferase (RGT) enzyme. Here we show that Arabidopsis plants carrying mutations in the gene encoding the β-subunit of RGT (rgtb1) exhibit severely disrupted female gametogenesis and this effect is of sporophytic origin. Mutations in rgtb1 lead to internalization of the PIN1 and PIN3 proteins from the basal membranes to vesicles in provascular cells of the funiculus. Decreased transport of auxin out of the ovule is accompanied by auxin accumulation in tissue surrounding the growing gametophyte. In addition, female gametophyte development arrests at the uni- or binuclear stage in a significant portion of the rgtb1 ovules. These observations suggest that communication between the sporophyte and the developing female gametophyte relies on Rab-dependent vesicular traffic of the PIN1 and PIN3 transporters and auxin efflux out of the ovule.

Funder

National Science Centre of Poland

University of Gdansk

Australian Research Council

Fundação para a Ciência e Tecnologia

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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