Glutamine synthetase-glutamate synthase pathway and glutamate dehydrogenase play distinct roles in the sink-source nitrogen cycle in tobacco

被引:307
作者
Masclaux-Daubresse, C
Reisdorf-Cren, M
Pageau, K
Lelandais, M
Grandjean, O
Kronenberger, J
Valadier, MH
Feraud, M
Jouglet, T
Suzuki, A [1 ]
机构
[1] INRA, Unite Nutr Azotee Plantes, F-78026 Versailles, France
[2] INRA, Lab Commun Cytol, F-78026 Versailles, France
关键词
D O I
10.1104/pp.105.071910
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Glutamate (Glu) metabolism and amino acid translocation were investigated in the young and old leaves of tobacco (Nicotiana tabacum L. cv Xanthi) using [N-15] ammonium and [2-N-15] Glu tracers. Regardless of leaf age, [N-15] ammonium assimilation occurred via glutamine synthetase (GS;EC 6.1.1.3) and Glu synthase ( ferredoxin [Fd]-GOGAT; EC 1.4.7.1; NADH-GOGAT; EC 1.4.1.14), both in the light and darkness, and it did not depend on Glu dehydrogenase (GDH;EC 1.4.1.2). The [N-15] ammonium and ammonium accumulation patterns support the role of GDH in the deamination of [2-N-15] Glu to provide 2-oxoglutarate and [N-15] ammonium. In the dark, excess [N-15] ammonium was incorporated into asparagine that served as an additional detoxification molecule. The constant Glu levels in the phloem sap suggested that Glu was continuously synthesized and supplied into the phloem regardless of leaf age. Further study using transgenic tobacco lines, harboring the promoter of the GLU1 gene (encoding Arabidopsis [Arabidopsis thaliana] Fd-GOGAT) fused to a GUS reporter gene, revealed that the expression of Fd-GOGAT remained higher in young leaves compared to old leaves, and higher in the veins compared to the mesophyll. Confocal laser-scanning microscopy localized the Fd-GOGAT protein to the phloem companion cells-sieve element complex in the leaf veins. The results are consistent with a role of Fd-GOGAT in supplying Glu for the synthesis and transport of amino acids. Taken together, the data provide evidence that the GS-GOGAT pathway and GDH play distinct roles in the source-sink nitrogen cycle of tobacco leaves.
引用
收藏
页码:444 / 456
页数:13
相关论文
共 54 条
[31]   The role of glutamine synthetase and glutamate dehydrogenase in nitrogen assimilation and possibilities for improvement in the nitrogen utilization of crops [J].
Miflin, BJ ;
Habash, DZ .
JOURNAL OF EXPERIMENTAL BOTANY, 2002, 53 (370) :979-987
[32]   Organ and cellular localization of asparagine synthetase in rice plants [J].
Nakano, K ;
Suzuki, T ;
Hayakawa, T ;
Yamaya, T .
PLANT AND CELL PHYSIOLOGY, 2000, 41 (07) :874-880
[33]   Light-induced transcriptional repression of the pea AS1 gene:: identification of cis-elements and transfactors [J].
Ngai, N ;
Tsai, FY ;
Coruzzi, G .
PLANT JOURNAL, 1997, 12 (05) :1021-1034
[34]   GLUTAMINE SYNTHETASE OF PEA LEAVES .1. PURIFICATION, STABILIZATION, AND PH OPTIMA [J].
ONEAL, D ;
JOY, KW .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1973, 159 (01) :113-122
[35]   IMMUNOCYTOLOCALIZATION OF GLUTAMINE-SYNTHETASE IN MESOPHYLL AND PHLOEM OF LEAVES OF SOLANUM-TUBEROSUM L [J].
PEREIRA, S ;
CARVALHO, H ;
SUNKEL, C ;
SALEMA, R .
PROTOPLASMA, 1992, 167 (1-2) :66-73
[36]   REGULATION OF GLUTAMATE-DEHYDROGENASE ACTIVITY IN RELATION TO CARBON LIMITATION AND PROTEIN CATABOLISM IN CARROT CELL-SUSPENSION CULTURES [J].
ROBINSON, SA ;
STEWART, GR ;
PHILLIPS, R .
PLANT PHYSIOLOGY, 1992, 98 (03) :1190-1195
[37]  
ROCHAT C, 1989, PLANT PHYSIOL BIOCH, V27, P881
[39]   Reciprocal diurnal changes of phosphoenolpyruvate carboxylase expression and cytosolic pyruvate kinase, citrate synthase and NADP-isocitrate dehydrogenase expression regulate organic acid metabolism during nitrate assimilation in tobacco leaves [J].
Scheible, WR ;
Krapp, A ;
Stitt, M .
PLANT CELL AND ENVIRONMENT, 2000, 23 (11) :1155-1167
[40]   INHIBITION OF PHOTOSYNTHESIS IN ARABIDOPSIS MUTANTS LACKING LEAF GLUTAMATE SYNTHASE ACTIVITY [J].
SOMERVILLE, CR ;
OGREN, WL .
NATURE, 1980, 286 (5770) :257-259