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THE PLANT CELL, Vol 9, Issue 8 1265-1277, Copyright © 1997 by American Society of Plant Biologists
The ABSCISIC ACID-INSENSITIVE3, FUSCA3, and LEAFY COTYLEDON1 Loci Act in Concert to Control Multiple Aspects of Arabidopsis Seed Development
F. Parcy, C. Valon, A. Kohara, S. Misera and J. Giraudat
Institut des Sciences Vegetales, Centre National de la Recherche Scientifique UPR 40, avenue de la Terrasse, 91190 Gif-sur-Yvette, France
Previous studies have shown that recessive mutations at the Arabidopsis
ABSCISIC ACID-INSENSITIVE3 (ABI3), FUSCA3 (FUS3), and LEAFY COTYLEDON1
(LEC1) loci lead to various abnormalities during mid-embryogenesis and late
embryogenesis. In this study, we investigated whether these loci act in
independent regulatory pathways or interact in controlling certain facets
of seed development. Several developmental responses were quantified in
abi3, fus3, and lec1 single mutants as well as in double mutants combining
either the weak abi3-1 or the severe abi3-4 mutations with either fus3 or
lec1 mutations. Our data indicate that ABI3 interacts genetically with both
FUS3 and LEC1 in controlling each of the elementary processes analyzed,
namely, accumulation of chlorophyll and anthocyanins, sensitivity to
abscisic acid, and expression of individual members of the 12S storage
protein gene family. In addition, both FUS3 and LEC1 regulate positively
the abundance of the ABI3 protein in the seed. These results suggest that
in contrast to previous models, the ABI3, FUS3, and LEC1 genes act
synergistically to control multiple elementary processes during seed
development.
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