During fertilization, stamen elongation needs tobe synchronized with pistil growth. The phytohormonegibberellic acid (GA) promotes stamen growth by stimu-lating the degradation of growth repressing DELLA pro-teins. DELLA accumulation is negatively regulated byGAs through the ubiquitin–proteasome system. In Ara-bidopsis thaliana, a proportion of DELLAs is also conju-gated to the small ubiquitin-like modifier (SUMO) protein,which stabilizes DELLAs. Increased DELLA levels occurin the SUMO protease-deficient OVERLY TOLERANT TOSALT 1 and 2 (ots1 ots2 ) double mutants, especially undersalt stress conditions. Here, we show that OTS genes play aredundant role in the control of plant fertility under non-stress conditions. Mutants of ots1 ots2 display reducedfertility compared with the wild type, owing to reducedstamen elongation. Stamen growth, pollination rate andseed production are restored in ots1 ots2 della mutants,thus linking OTS1 function to the control of DELLAactivity in the context of filament elongation. OTS levelsappear to be developmentally regulated as OTS1/2 tran-script upregulation during stamen development overlapswith GAs accumulations. We propose that OTS genesenable synchronization of stamen development by facili-tating DELLA degradation at a specific developmentalstage.

SUMO proteases OTS1 and 2 control filament elongation through a DELLA-dependent mechanism / A. Campanaro, R. Battaglia, M. Galbiati, A. Sadanandom, C. Tonelli, L. Conti. - In: PLANT REPRODUCTION. - ISSN 2194-7953. - 29:4 (Part 3)(2016 Oct 19), pp. 287-290. [10.1007/s00497-016-0292-8]

SUMO proteases OTS1 and 2 control filament elongation through a DELLA-dependent mechanism

M. Galbiati;C. Tonelli
Penultimo
;
L. Conti
Ultimo
2016

Abstract

During fertilization, stamen elongation needs tobe synchronized with pistil growth. The phytohormonegibberellic acid (GA) promotes stamen growth by stimu-lating the degradation of growth repressing DELLA pro-teins. DELLA accumulation is negatively regulated byGAs through the ubiquitin–proteasome system. In Ara-bidopsis thaliana, a proportion of DELLAs is also conju-gated to the small ubiquitin-like modifier (SUMO) protein,which stabilizes DELLAs. Increased DELLA levels occurin the SUMO protease-deficient OVERLY TOLERANT TOSALT 1 and 2 (ots1 ots2 ) double mutants, especially undersalt stress conditions. Here, we show that OTS genes play aredundant role in the control of plant fertility under non-stress conditions. Mutants of ots1 ots2 display reducedfertility compared with the wild type, owing to reducedstamen elongation. Stamen growth, pollination rate andseed production are restored in ots1 ots2 della mutants,thus linking OTS1 function to the control of DELLAactivity in the context of filament elongation. OTS levelsappear to be developmentally regulated as OTS1/2 tran-script upregulation during stamen development overlapswith GAs accumulations. We propose that OTS genesenable synchronization of stamen development by facili-tating DELLA degradation at a specific developmentalstage.
Flower development; SUMOylation; DELLA; Gibberellin; SUMO proteases
Settore BIO/18 - Genetica
   Il controllo della crescita delle radici: un approccio di systems biology
   MINISTERO DELL'ISTRUZIONE E DEL MERITO
   2010HEBBB8_006
19-ott-2016
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/445740
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