Title of article :
Ammonium formation and assimilation in PSARK∷IPT tobacco transgenic plants under low N
Author/Authors :
Mar?a del Mar Rubio-Wilhelmi، نويسنده , , Eva Sanchez-Rodriguez، نويسنده , , Miguel Angel Rosales، نويسنده , , Bego?a Blasco، نويسنده , , Juan Jose Rios، نويسنده , , Luis Romero، نويسنده , , Eduardo Blumwald، نويسنده , , Juan Manuel Ruiz، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2012
Pages :
6
From page :
157
To page :
162
Abstract :
Wild Type (WT) and transgenic tobacco plants expressing isopentenyltransferase (IPT), a gene encoding the enzyme regulating the rate-limiting step in cytokinins (CKs) synthesis, were grown under limited nitrogen (N) conditions. We analyzed nitrogen forms, nitrogen metabolism related-enzymes, amino acids and photorespiration related-enzymes in WT and PSARK∷IPT tobacco plants. Our results indicate that the WT plants subjected to N deficiency displayed reduced nitrate (NO3−) assimilation. However, an increase in the production of ammonium (NH4+), by the degradation of proteins and photorespiration led to an increase in the glutamine synthetase/glutamate synthase (GS/GOGAT) cycle in WT plants. In these plants, the amounts of amino acids decreased with N deficiency, although the relative amounts of glutamate and glutamine increased with N deficiency. Although the transgenic plants expressing PSARK∷IPT and growing under suboptimal N conditions displayed a significant decline in the N forms in the leaf, they maintained the GS/GOGAT cycle at control levels. Our results suggest that, under N deficiency, CKs prevented the generation and assimilation of NH4+ by increasing such processes as photorespiration, protein degradation, the GS/GOGAT cycle, and the formation of glutamine.
Keywords :
amino acids , cytokinins , Nicotiana tabaccum , photorespiration , nitrate reductase
Journal title :
Journal of Plant Physiology
Serial Year :
2012
Journal title :
Journal of Plant Physiology
Record number :
1282288
Link To Document :
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