Roles ofPIN-FORMED1andMONOPTEROSin pattern formation of the apical region of theArabidopsisembryo

Author:

Aida Mitsuhiro123,Vernoux Teva43,Furutani Masahiko1,Traas Jan4,Tasaka Masao1

Affiliation:

1. Graduate School of Biological Sciences, Nara Institute of Science and Technology, Nara 630-0101, Japan

2. Present address: Department of Molecular Cell Biology, University of Utrecht, Padualaan 8, 3584 CH Utrecht, The Netherlands

3. These authors contributed equally to the research

4. INRA, Laboratoire de Biologie Cellulaire, Route de Saint Cyr, 78026 Versailles cedex, France

Abstract

In dicotyledonous plants, the apical region of the embryo shifts from radial to bilateral symmetry as the two cotyledon primordia develop on opposite sides of the shoot meristem. To further elucidate the mechanisms regulating this patterning process, we analyzed functions of two Arabidopsis genes, PIN-FORMED1 (PIN1) and MONOPTEROS (MP), encoding a putative auxin efflux carrier and a transcription factor thought to mediate auxin signaling, respectively. The corresponding mutants show similar defects in apical patterning, including cotyledon fusion and dissymmetric organ positioning. Both mutations perturb the spatial expression patterns of CUP-SHAPED COTYLEDON1 (CUC1) and CUC2, which are redundantly required for cotyledon separation and meristem formation. During early embryogenesis, both CUC genes are affected differently: the area of CUC1 expression is expanded while that of CUC2 expression is reduced. In addition, genetic analysis indicates that PIN1 and MP are required for the activity of CUC2 while CUC1 activity is only slightly affected by both mutations. These results suggest a differential regulation of the CUC genes by PIN1 and MP. Furthermore, genetic analysis suggests that SHOOT MERISTEMLESS (STM), another regulator for cotyledon separation and meristem formation, promotes CUC1 activity in parallel with PIN1. Our results suggest a model where PIN1 and MP regulate apical patterning partially through the control of CUC gene expression.

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

Reference45 articles.

1. Aida, M. and Tasaka, M. (2001). Shoot apical meristem formation in higher plant embryogenesis. In Meristematic Tissues in Plant Growth and Development (ed. M. T. McManus and B. E. Veit), pp. 58-88. Sheffield: Sheffield Academic Press Ltd.

2. Aida, M., Ishida, T., Fukaki, H., Fujisawa, H. and Tasaka, M. (1997). Genes involved in organ separation in Arabidopsis: an analysis of the cup-shaped cotyledon mutant. Plant Cell9, 841-857.

3. Aida, M., Ishida, T. and Tasaka, M. (1999). Shoot apical meristem and cotyledon formation during Arabidopsis embryogenesis: interaction among the CUP-SHAPED COTYLEDON and SHOOT MERISTEMLESS genes. Development126, 1563-1570.

4. Barton, M. K. and Poethig, R. S. (1993). Formation of the shoot apical meristem in Arabidopsis thaliana: an analysis of development in the wild type and in the shoot meristemless mutant. Development119, 823-831.

5. Bechtold, N., Ellis, J. and Pelletier, G. (1993). In planta Agrobacterium mediated gene transfer by infiltration of adult Arabidopsis thaliana plants. C. R. Acad. Sci. Life Sci.316, 1194-1199.

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