The BLADE-ON-PETIOLE genes are essential for abscission zone formation in Arabidopsis

Author:

McKim Sarah M.1,Stenvik Grethe-Elisabeth2,Butenko Melinka A.2,Kristiansen Wenche2,Cho Sung Ki3,Hepworth Shelley R.1,Aalen Reidunn B.2,Haughn George W.1

Affiliation:

1. Department of Botany, University of British Columbia, Vancouver, British Columbia, V6T 1Z4, Canada.

2. Department of Molecular Biosciences, University of Oslo, PO Box 1041 Blindern,N-0316 Oslo, Norway.

3. Division of Biological Sciences, 303 Life Sciences Center, University of Missouri, Columbia, MO 65211, USA.

Abstract

The Arabidopsis BLADE-ON-PETIOLE 1 (BOP1) and BOP2 genes encode redundant transcription factors that promote morphological asymmetry during leaf and floral development. Loss-of-function bop1 bop2 mutants display a range of developmental defects, including a loss of floral organ abscission. Abscission occurs along specialised cell files, called abscission zones (AZs) that develop at the junction between the leaving organ and main plant body. We have characterized the bop1 bop2 abscission phenotype to determine how BOP1 and BOP2 contribute to the known abscission developmental framework. Histological analysis and petal breakstrength measurements of bop1 bop2 flowers show no differentiation of floral AZs. Furthermore,vestigial cauline leaf AZs are also undifferentiated in bop1 bop2mutants, suggesting that BOP proteins are essential to establish AZ cells in different tissues. In support of this hypothesis, BOP1/BOP2 activity is required for both premature floral organ abscission and the ectopic abscission of cauline leaves promoted by the INFLORESCENCE DEFICIENT IN ABSCISSION (IDA) gene under the control of the constitutive CaMV 35S promoter. Expression of several abscission-related marker genes, including IDA, is relatively unperturbed in bop1 bop2 mutants,indicating that these AZ genes respond to positional cues that are independent of BOP1/BOP2 activity. We also show that BOP1 and BOP2promote growth of nectary glands, which normally develop at the receptacle adjacent to developing AZs. Taken together, these data suggest that BOP1/BOP2 activity is required for multiple cell differentiation events in the proximal regions of inflorescence lateral organs.

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

Reference39 articles.

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3. Baum, S. F., Eshed, Y. and Bowman, J. L.(2001). The Arabidopsis nectary is an ABC-independent floral structure. Development128,4657-4667.

4. Bleecker, A. B. and Patterson, S. E. (1997). Last exit: senescence, abscission, and meristem arrest in Arabidopsis. Plant Cell9,1169-1179.

5. Bowman, J. L. and Smyth, D. R. (1999). CRABS CLAW, a gene that regulates carpel and nectary development in Arabidopsis,encodes a novel protein with zinc finger and helix-loop-helix domains. Development126,2387-2396.

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