A Chloroplast Protein Homologous to the Eubacterial Topological Specificity Factor MinE Plays a Role in Chloroplast Division

Author:

Itoh Ryuuichi1,Fujiwara Makoto1,Nagata Noriko2,Yoshida Shigeo12

Affiliation:

1. Plant Functions Laboratory (R.I., M.F., S.Y.) and

2. Plant Science Center (N.N., S.Y.), RIKEN, Wako, Saitama 351–0198, Japan

Abstract

Abstract We report the identification of a nucleus-encodedminE gene, designated AtMinE1, of Arabidopsis. The encoded AtMinE1 protein possesses both N- and C-terminal extensions, relative to the eubacterial and algal chloroplast-encoded MinE proteins. The N-terminal extension functioned as a chloroplast-targeting transit peptide, as revealed by a transient expression assay using an N terminus:green fluorescent protein fusion. Histochemical β-glucuronidase staining of transgenic Arabidopsis lines harboring an AtMinE1promoter::uidA reporter fusion unveiled specific activation of the promoter in green tissues, especially at the shoot apex, which suggests a requirement for cell division-associatedAtMinE1 expression for proplastid division in green tissues. In addition, we generated transgenic plants overexpressing a full-length AtMinE1 cDNA and examined the subcellular structures of those plants. Giant heteromorphic chloroplasts were observed in transgenic plants, with a reduced number per cell, whereas mitochondrial morphology remained similar to that of wild-type plants. Taken together, these observations suggest that MinE is the third conserved component involved in chloroplast division.

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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