4.8 Article

Inactivation of the CTD phosphatase-like gene OsCPL1 enhances the development of the abscission layer and seed shattering in rice

Journal

PLANT JOURNAL
Volume 61, Issue 1, Pages 96-106

Publisher

WILEY
DOI: 10.1111/j.1365-313X.2009.04039.x

Keywords

rice; shattering; abscission layer; carboxy-terminal domain phosphatase; Oryza sativa CTD phosphatase-like 1; sh-h

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Funding

  1. National Institute of Agricultural Biotechnology [05-2-11-6-2]
  2. Crop Functional Genomic Center, the 21st Century Frontier Program [CG1110, CG3111, CG2141]
  3. Biogreen 21 Program, Rural Development Administration [20070401-034-001-007-03-00]

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Although susceptibility to seed shattering causes severe yield loss during cereal crop harvest, it is an adaptive trait for seed dispersal in wild plants. We previously identified a recessive shattering locus, sh-h, from the rice shattering mutant line Hsh that carries an enhanced abscission layer. Here, we further mapped sh-h to a 34-kb region on chromosome 7 by analyzing 240 F-2 plants and five F-3 lines from the cross between Hsh and Blue&Gundil. Hsh had a point mutation at the 3' splice site of the seventh intron within LOC_Os07g10690, causing a 15-bp deletion of its mRNA as a result of altered splicing. Two transferred DNA (T-DNA) insertion mutants and one point mutant exhibited the enhanced shattering phenotype, confirming that LOC_Os07g10690 is indeed the sh-h gene. RNA interference (RNAi) transgenic lines with suppressed expression of this gene exhibited greater shattering. This gene, which encodes a protein containing a conserved carboxy-terminal domain (CTD) phosphatase domain, was named Oryza sativa CTD phosphatase-like 1 (OsCPL1). Subcellular localization and biochemical analysis revealed that the OsCPL1 protein is a nuclear phosphatase, a common characteristic of metazoan CTD phosphatases involved in cell differentiation. These results demonstrate that OsCPL1 represses differentiation of the abscission layer during panicle development.

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