4.7 Article

SCI1 is a component of the auxin-dependent control of cell proliferation in Arabidopsis upper pistil

Journal

PLANT SCIENCE
Volume 229, Issue -, Pages 122-130

Publisher

ELSEVIER IRELAND LTD
DOI: 10.1016/j.plantsci.2014.09.003

Keywords

Arabidopsis thaliana; Yucca; Cell proliferation control; Auxin signaling; Pistil development

Funding

  1. Fundacao de Amparo a Pesquisa do Estado de Sao Paulo (FAPESP) Brazil

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To characterize the recently described SCI1 (stigma/style cell cycle inhibitor 1) gene relationship with the auxin pathway, we have taken the advantage of the Arabidopsis model system and its available tools. At first, we have analyzed the Atl g79200 T-DNA insertion mutants and constructed various transgenic plants. The loss- and gain-of-function plants displayed cell number alterations in upper pistils that were controlled by the amino-terminal domain of the protein. These data also confirmed that this locus holds the functional homolog (AtSCI1) of the Nicotiana tabacum SCI1 gene. Then, we have provided some evidences the auxin synthesis/signaling pathways are required for downstream proper AtSCI1 control of cell number: (a) its expression is downregulated in yuc2yuc6 and npyl auxin-deficient mutants, (b) triple (yuc2yuc6scil) and double (npylscil) mutants mimicked the auxin-deficient phenotypes, with no synergistic interactions, and (c) the increased upper pistil phenotype in these last mutants, which is a consequence of an increased cell number, was able to be complemented by AtSCI1 overexpression. Taken together, our data strongly suggests SCIl as a component of the auxin signaling transduction pathway to control cell proliferation/differentiation in stigma/style, representing a molecular effector of this hormone on pistil development. (C) 2014 Elsevier Ireland Ltd. All rights reserved.

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