Boron deficiency decreases plasmalemma H+-ATPase expression and nitrate uptake, and promotes ammonium assimilation into asparagine in tobacco roots

被引:83
作者
Camacho-Cristobal, Juan J. [1 ]
Gonzalez-Fontes, Agustin [1 ]
机构
[1] Univ Pablo Olavide, Dept Fisiol Anat & Biol Celular, Fac Ciencias Expt, Seville, Spain
关键词
asparagine; boron deficiency; nitrate assimilation; nitrate transport; nitrate uptake; proton transport; tobacco;
D O I
10.1007/s00425-007-0494-2
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
The effects of short-term boron deficiency on several aspects (growth, biomass allocation, metabolite concentrations, gene expression, enzyme activities) related with nitrate assimilation were studied in tobacco (Nicotiana tabacum L.) plants in order to know the early changes caused by this mineral deficiency. For this purpose, plants were grown hydroponically in a nutrient solution supplemented with 10 mu M boron and then transferred to a boron-free medium for 1-5 days. Nitrate concentration decreased in both leaves and roots under boron deficiency, which was not observed in control plants. This correlated with the lower net nitrate uptake rate found in boron-deficient plants when compared to boron-sufficient ones. Results suggest that boron deficiency decreases net nitrate uptake by declining the activity of nitrate transporters rather than affecting their transcript levels. This is supported by a drop in the levels of root PMA2 transcript during the boron deficient treatment, which could lead to a decrease in the plasma membrane H+-ATPase activity necessary to get protons out of cell for the cotransport with nitrate inwards. In addition, boron deficiency led to an increase in root Asn content and a decline in glutamine synthetase activity when compared to control plants, which suggest that this mineral deficiency may promote ammonium assimilation via asparagine synthetase in tobacco roots.
引用
收藏
页码:443 / 451
页数:9
相关论文
共 36 条
[21]   The activation state of nitrate reductase is not always correlated with total nitrate reductase activity in leaves [J].
Man, HM ;
Abd-El Baki, GK ;
Stegmann, P ;
Weiner, H ;
Kaiser, WM .
PLANTA, 1999, 209 (04) :462-468
[22]  
Marschner H., 1995, MINERAL NUTR HIGHER, P379
[23]   Elevated carbon dioxide increases nitrate uptake and nitrate reductase activity when tobacco is growing on nitrate, but increases ammonium uptake and inhibits nitrate reductase activity when tobacco is growing on ammonium nitrate [J].
Matt, P ;
Geiger, M ;
Walch-Liu, P ;
Engels, C ;
Krapp, A ;
Stitt, M .
PLANT CELL AND ENVIRONMENT, 2001, 24 (11) :1119-1137
[24]   EVIDENCE FOR COTRANSPORT OF NITRATE AND PROTONS IN MAIZE ROOTS .2. MEASUREMENT OF NO-3- AND H+ FLUXES WITH ION-SELECTIVE MICROELECTRODES [J].
MCCLURE, PR ;
KOCHIAN, LV ;
SPANSWICK, RM ;
SHAFF, JE .
PLANT PHYSIOLOGY, 1990, 93 (01) :290-294
[25]   EVIDENCE FOR COTRANSPORT OF NITRATE AND PROTONS IN MAIZE ROOTS .1. EFFECTS OF NITRATE ON THE MEMBRANE-POTENTIAL [J].
MCCLURE, PR ;
KOCHIAN, LV ;
SPANSWICK, RM ;
SHAFF, JE .
PLANT PHYSIOLOGY, 1990, 93 (01) :281-289
[26]   Nitrate transport and compartmentation in cereal root cells [J].
Miller, AJ ;
Smith, SJ .
JOURNAL OF EXPERIMENTAL BOTANY, 1996, 47 (300) :843-854
[27]   Carbon and amino acids reciprocally modulate the expression of glutamine synthetase in arabidopsis [J].
Oliveira, IC ;
Coruzzi, GM .
PLANT PHYSIOLOGY, 1999, 121 (01) :301-309
[28]   Nitrate transport in plants: which gene and which control? [J].
Orsel, M ;
Filleur, S ;
Fraisier, V ;
Daniel-Vedele, F .
JOURNAL OF EXPERIMENTAL BOTANY, 2002, 53 (370) :825-833
[29]  
RUFTY TW, 1997, MOL APPROACH PRIMARY, P255
[30]   Accumulation of nitrate in the shoot acts as a signal to regulate shoot-root allocation in tobacco [J].
Scheible, WR ;
Lauerer, M ;
Schulze, ED ;
Caboche, M ;
Stitt, M .
PLANT JOURNAL, 1997, 11 (04) :671-691