The Arabidopsis Abscisic Acid Catabolic GeneCYP707A2Plays a Key Role in Nitrate Control of Seed Dormancy

Author:

Matakiadis Theodoros1,Alboresi Alessandro1,Jikumaru Yusuke1,Tatematsu Kiyoshi1,Pichon Olivier1,Renou Jean-Pierre1,Kamiya Yuji1,Nambara Eiji1,Truong Hoai-Nam1

Affiliation:

1. Unité de la Nutrition Azotée des Plantes, Institut Jean-Pierre Bourgin, INRA, 78026 Versailles cedex, France (T.M., A.A., H.-N.T.); Growth Regulation Research Group, RIKEN Plant Science Center, Tsurumi-ku, Yokohama 230–0045, Japan (Y.J., K.T., Y.K., E.N.); and Unité de Recherche en Génomique Végétale, INRA, CNRS, CP5708, 91057 Evry cedex, France (O.P., J.-P.R.)

Abstract

AbstractNitrate releases seed dormancy in Arabidopsis (Arabidopsis thaliana) Columbia accession seeds in part by reducing abscisic acid (ABA) levels. Nitrate led to lower levels of ABA in imbibed seeds when included in the germination medium (exogenous nitrate). Nitrate also reduced ABA levels in dry seeds when provided to the mother plant during seed development (endogenous nitrate). Transcript profiling of imbibed seeds treated with or without nitrate revealed that exogenous nitrate led to a higher expression of nitrate-responsive genes, whereas endogenous nitrate led to a profile similar to that of stratified or after-ripened seeds. Profiling experiments indicated that the expression of the ABA catabolic gene CYP707A2 was regulated by exogenous nitrate. The cyp707a2-1 mutant failed to reduce seed ABA levels in response to both endogenous and exogenous nitrate. In contrast, both endogenous and exogenous nitrate reduced ABA levels of the wild-type and cyp707a1-1 mutant seeds. The CYP707A2 mRNA levels in developing siliques were positively correlated with different nitrate doses applied to the mother plants. This was consistent with a role of the CYP707A2 gene in controlling seed ABA levels in response to endogenous nitrate. The cyp707a2-1 mutant was less sensitive to exogenous nitrate for breaking seed dormancy. Altogether, our data underline the central role of the CYP707A2 gene in the nitrate-mediated control of ABA levels during seed development and germination.

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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