ABP1 is required for organized cell elongation and division in Arabidopsis embryogenesis
- 1 April 2001
- journal article
- Published by Cold Spring Harbor Laboratory in Genes & Development
- Vol. 15 (7) , 902-911
- https://doi.org/10.1101/gad.866201
Abstract
To directly address the function of a putative auxin receptor designated ABP1, a reverse genetic approach was taken to identify and characterize ABP1 mutant alleles in Arabidopsis. A homozygous null mutation in ABP1 confers embryo lethality. Null mutant embryos develop normally until the early stages of the globular embryo but are unable to make the transition to a bilaterally symmetrical structure because cells fail to elongate. Cell division was also aberrant both in the suspensor and embryo proper. Antisense suppression of ABP1 in tobacco cells causes slow proliferation and eliminates auxin-induced cell elongation and reduces cell division. The complete lack of auxin-inducible elongation in individual cells confirms the results observed in embryos, indicates a cell autonomous function, and, taken together with biochemical evidence that ABP1 binds auxins, suggests that ABP1 mediates auxin-induced cell elongation and, directly or indirectly, cell division.Keywords
This publication has 41 references indexed in Scilit:
- Signalling in plant embryos during the establishment of the polar axisSeminars in Cell & Developmental Biology, 1999
- Embryogenesis: A New Start in Life.Plant Cell, 1997
- Megagametogenesis in Arabidopsis wild type and the Gf mutantSexual Plant Reproduction, 1997
- Influence of auxin on the establishment of bilateral symmetry in monocotsThe Plant Journal, 1996
- Towards an understanding of ABP1Journal of Experimental Botany, 1995
- Molecular Genetics of Plant EmbryogenesisAnnual Review of Plant Biology, 1995
- Auxin-Binding ProteinsAnnual Review of Plant Biology, 1994
- Auxin Polar Transport Is Essential for the Establishment of Bilateral Symmetry during Early Plant Embryogenesis.Plant Cell, 1993
- Molecular analysis of an auxin binding protein gene located on chromosome 4 of Arabidopsis.Plant Cell, 1992
- Auxin-regulated Wall Loosening and Sustained Growth in ElongationPlant Physiology, 1981