Profilin Plays a Role in Cell Elongation, Cell Shape Maintenance, and Flowering in Arabidopsis

Author:

Ramachandran Srinivasan1,Christensen Hans E.M.1,Ishimaru Yasuko2,Dong Chun-Hai1,Chao-Ming Wen1,Cleary Ann L.3,Chua Nam-Hai2

Affiliation:

1. Laboratory of Plant Cell Biology, Institute of Molecular Agrobiology, National University of Singapore, 1 Research Link, Singapore 117604 (S.R., H.E.M.C., C.-H.D., W.C.-M.);

2. Laboratory of Plant Molecular Biology, The Rockefeller University, 1230 York Avenue, New York, New York 10021–6399 (Y.I., N.-H.C.); and

3. Plant Cell Biology Group, Research School of Biological Sciences, Australian National University, Canberra, Australian Capital Territory 2601, Australia (A.L.C.)

Abstract

Abstract Profilin (PFN) is an ubiquitous, low-M  r, actin-binding protein involved in the organization of the cytoskeleton of eukaryotes including higher plants. PFNs are encoded by a multigene family in Arabidopsis. We have analyzed in vivo functions of Arabidopsis PFN by generating transgenic plants carrying a35S-PFN-1 or35S-antisense  PFN-1transgene. Etiolated seedlings underexpressing PFN (PFN-U) displayed an overall dwarf phenotype with short hypocotyls whose lengths were 20% to 25% that of wild type (WT) at low temperatures. Light-grown PFN-U plants were smaller in stature and flowered early. Compared with equivalent cells in WT, most cells in PFN-U hypocotyls and roots were shorter, but more isodiametric, and microscopic observations of etiolated PFN-U hypocotyls revealed a rough epidermal surface. In contrast, light-grown seedlings overexpressing PFN had longer roots and root hair although etiolated seedlings overexpressing PFN were either the same size or slightly longer than WT seedlings. Transgenic seedlings harboring aPFN-1-GUS transgene directed expression in root and root hair and in a ring of cells at the elongating zone of the root tip. As the seedlings matured PFN-1-GUS was mainly expressed in the vascular bundles of cotyledons and leaves. Our results show that Arabidopsis PFNs play a role in cell elongation, cell shape maintenance, polarized growth of root hair, and unexpectedly, in determination of flowering time.

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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