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Growth Inhibition Occurs Independently of Cell Mortality in Tomato (Solanum lycopersicum) Exposed to High Cadmium Concentrations
引用本文:Delpérée C,Lutts S. Growth Inhibition Occurs Independently of Cell Mortality in Tomato (Solanum lycopersicum) Exposed to High Cadmium Concentrations[J]. 植物学报(英文版), 2008, 50(3): 300-310. DOI: 10.1111/j.1744-7909.2007.00625.x
作者姓名:Delpérée C  Lutts S
基金项目:Supported by the Fonds pour la Recherche dans I'Industrie et I'Agriculture(FRIA) and the Fond Special pour la Recherche (FSR) from the Catholic University of Louvain.
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关 键 词:镉元素 荧光 重金属 番茄

Growth inhibition occurs independently of cell mortality in tomato (Solanum lycopersicum) exposed to high cadmium concentrations
Delpérée Christine,Lutts Stanley. Growth inhibition occurs independently of cell mortality in tomato (Solanum lycopersicum) exposed to high cadmium concentrations[J]. Journal of integrative plant biology, 2008, 50(3): 300-310. DOI: 10.1111/j.1744-7909.2007.00625.x
Authors:Delpérée Christine  Lutts Stanley
Affiliation:( Unitéde Biologie végétale, Universitécatholique de Louvain, 5 (Bte 13) Place Croix du Sud;, 1348 Louvain-la-Neuve, Belgium )
Abstract:In order to analyze the adaptation potential of tomato shoots to a sudden increase in Cd concentration, tomato plants (Solanum lycopersicum L. var. Ailsa Craig) were exposed under controlled environmental conditions to a high dose of this heavy metal (250 μM CdCl2>) in nutrient solution for 7 and 14 d. Both root and shoot growth was completely inhibited but all plants remained alive until the end of the treatment. Cell viability remained unaffected but the activity of the mitochondrial alternative pathway was stimulated by Cd stress at the expense of the cytochrome pathway. Cadmium concentration was higher in roots than in shoots and a decrease In the rate of net Cd translocation was noticed during the second week of stress. Cadmium decreased both leaf conductance (g1>) and chlorophyll concentration. However, the effect on net CO2 assimilation remained limited and soluble sugars accumulated in leaves. Photochemical efficiency of PSll (FvlFm) was not affected despite a decrease in the number of reaction centers and an inhibition of electron transfer to acceptors of PSII. It is concluded that tomato shoot may sustain short term exposure to high doses of cadmium despite growth inhibition. This property implies several physiological strategies linked to both avoidance and tolerance mechanisms.
Keywords:cadmium  chlorophyll fluorescence  growth  heavy metal toxicity  Lycopersicon esculentum  tomato.  Tomato  Mortality  Cell  Inhibition  Growth  Solanum  Concentrations  Cadmium  property  strategies  linked  tolerance  mechanisms  sustain  short  term  exposure  high  growth inhibition  number
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