Prolonged root hypoxia effects on enzymes involved in nitrogen assimilation pathway in tomato plants

被引:28
作者
Horchani, Faouzi [1 ]
Aschi-Smiti, Samira [1 ]
机构
[1] Fac Sci Tunis, UR Ecol Vegetale, Dept Sci Biol, Campus Univ, Tunis, Tunisia
关键词
tomato; hypoxia; nitrogen; glutamine synthetase; protease; glutamate dehydrogenase;
D O I
10.4161/psb.5.12.13820
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In order to investigate the effects of root hypoxia (1-2% oxygen) on the nitrogen (N) metabolism of tomato plants (Solanum lycopersicum L. cv. Micro-Tom), a range of N compounds and N-assimilating enzymes were performed on roots and leaves of plants submitted to root hypoxia at the second leaf stage for three weeks. Obtained results showed that root hypoxia led to a significant decrease in dry weight (DW) production and nitrate content in roots and leaves. Conversely, shoot to root DW ratio and nitrite content were significantly increased. Contrary to that in leaves, glutamine synthetase activity was significantly enhanced in roots. The activities of nitrate and nitrite reductase were enhanced in roots as well as leaves. The higher increase in the NH4+ content and in the protease activities in roots and leaves of hypoxically treated plants coincide with a greater decrease in soluble protein contents. Taken together, these results suggest that root hypoxia leaded to higher protein degradation. The hypoxia-induced increase in the aminating glutamate dehydrogenase activity may be considered as an alternative N assimilation pathway involved in detoxifying the NH4+, accumulated under hypoxic conditions. With respect to hypoxic stress, the distinct sensitivity of the enzymes involved in N assimilation is discussed.
引用
收藏
页码:1583 / 1589
页数:7
相关论文
共 64 条
[1]   Nitrate reductase regulation in tomato roots by exogenous nitrate:: a possible role in tolerance to long-term root anoxia [J].
Allègre, A ;
Silvestre, J ;
Morard, P ;
Kallerhoff, J ;
Pinelli, E .
JOURNAL OF EXPERIMENTAL BOTANY, 2004, 55 (408) :2625-2634
[2]   Substrate cycles in the central metabolism of maize root tips under hypoxia [J].
Alonso, Ana Paula ;
Raymond, Philippe ;
Rolin, Dominique ;
Dieuaide-Noubhani, Martine .
PHYTOCHEMISTRY, 2007, 68 (16-18) :2222-2231
[3]   A new substrate cycle in plants. evidence for a high glucose-phosphate-to-glucose turnover from in vivo steady-state and pulse-labeling experiments with [13C] glucose and [14C] glucose [J].
Alonso, AP ;
Vigeolas, H ;
Raymond, P ;
Rolin, D ;
Dieuaide-Noubhani, M .
PLANT PHYSIOLOGY, 2005, 138 (04) :2220-2232
[4]   Assessment of enzyme induction and aerenchyma formation as mechanisms for flooding tolerance in Trifolium subterraneum 'Park' [J].
Aschi-Smith, S ;
Chaïbi, W ;
Brouquisse, R ;
Ricard, B ;
Saglio, P .
ANNALS OF BOTANY, 2003, 91 (02) :195-204
[5]  
ASCHISMITI S, 2002, AGRONOMIE, V23, P97
[6]   Flooding stress: Acclimations and genetic diversity [J].
Bailey-Serres, J. ;
Voesenek, L. A. C. J. .
ANNUAL REVIEW OF PLANT BIOLOGY, 2008, 59 :313-339
[7]   Contrasted responses to carbohydrate limitation in tomato fruit at two stages of development [J].
Baldet, P ;
Devaux, C ;
Chevalier, C ;
Brouquisse, R ;
Just, D ;
Raymond, P .
PLANT CELL AND ENVIRONMENT, 2002, 25 (12) :1639-1649
[8]   Flooding: The survival strategies of plants [J].
Blom, CWPM ;
Voesenek, LACJ .
TRENDS IN ECOLOGY & EVOLUTION, 1996, 11 (07) :290-295
[9]   Nitrate reductase activation state in barley roots in relation to the energy and carbohydrate status [J].
Botrel, A ;
Kaiser, WM .
PLANTA, 1997, 201 (04) :496-501
[10]   Changes in growth and nitrogen assimilation in barley seedlings under cadmium stress [J].
Boussama, N ;
Ouariti, O ;
Ghorbal, MH .
JOURNAL OF PLANT NUTRITION, 1999, 22 (4-5) :731-752