The AGAMOUS (AG) gene is necessary for stamen and carpel development and is part of a monophyletic clade of MADS-box genes that also includes SHATTERPROOF1 (SHP1), SHP2, and SEEDSTICK (STK). Here, we show that ectopic expression of either the STK or SHP gene is sufficient to induce the transformation of sepals into carpeloid organs bearing ovules. Moreover, the fact that these organ transformations occur when the STK gene is expressed ectopically in ag mutants shows that STK can promote carpel development in the absence of AG activity. We also show that STK, AG, SHP1, and SHP2 can form multimeric complexes and that these interactions require the SEPALLATA (SEP) MADS-box proteins. We provide genetic evidence for this role of the SEP proteins by showing that a reduction in SEP activity leads to the loss of normal ovule development, similar to what occurs in stk shp1 shp2 triple mutants. Together, these results indicate that the SEP proteins, which are known to form multimeric complexes in the control of flower organ identity, also form complexes to control normal ovule development.

MaDS-Box protein complexex control carpel and ovule developmentin Arabidopsis / R. Favaro, A. Pinyopich, R. Battaglia, M. Kooiker, L. Borghi, G. Ditta, M. F. Yanofsky, M. M. Kater, L. Colombo. - In: PLANT CELL. - ISSN 1040-4651. - 15:11(2003), pp. 2603-2611.

MaDS-Box protein complexex control carpel and ovule developmentin Arabidopsis

R. Battaglia;M. Kooiker;M. M. Kater;L. Colombo
2003

Abstract

The AGAMOUS (AG) gene is necessary for stamen and carpel development and is part of a monophyletic clade of MADS-box genes that also includes SHATTERPROOF1 (SHP1), SHP2, and SEEDSTICK (STK). Here, we show that ectopic expression of either the STK or SHP gene is sufficient to induce the transformation of sepals into carpeloid organs bearing ovules. Moreover, the fact that these organ transformations occur when the STK gene is expressed ectopically in ag mutants shows that STK can promote carpel development in the absence of AG activity. We also show that STK, AG, SHP1, and SHP2 can form multimeric complexes and that these interactions require the SEPALLATA (SEP) MADS-box proteins. We provide genetic evidence for this role of the SEP proteins by showing that a reduction in SEP activity leads to the loss of normal ovule development, similar to what occurs in stk shp1 shp2 triple mutants. Together, these results indicate that the SEP proteins, which are known to form multimeric complexes in the control of flower organ identity, also form complexes to control normal ovule development.
English
Settore BIO/01 - Botanica Generale
Articolo
Sì, ma tipo non specificato
2003
American Society of Plant Biologists
15
11
2603
2611
Periodico con rilevanza internazionale
info:eu-repo/semantics/article
MaDS-Box protein complexex control carpel and ovule developmentin Arabidopsis / R. Favaro, A. Pinyopich, R. Battaglia, M. Kooiker, L. Borghi, G. Ditta, M. F. Yanofsky, M. M. Kater, L. Colombo. - In: PLANT CELL. - ISSN 1040-4651. - 15:11(2003), pp. 2603-2611.
none
Prodotti della ricerca::01 - Articolo su periodico
9
262
Article (author)
si
R. Favaro, A. Pinyopich, R. Battaglia, M. Kooiker, L. Borghi, G. Ditta, M. F. Yanofsky, M. M. Kater, L. Colombo
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/25447
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