Isolation and physiological characteristics of a premature senescence mutant in rice (Oryza sativa L.)

被引:7
作者
Li Fu-zhen
Jin Song-heng
Hu Guo-cheng
Fu Ya-ping
Si Hua-min
Jiang De-an
Sun Zong-xiu
机构
[1] Zhejlang University,State Key Laboratory of Plant Physiology and Biochemistry, School of Life Sciences
[2] China National Rice Research Institute,State Key Laboratory of Rice Biology
来源
Journal of Zhejiang University Science B | 2005年 / 6卷 / 8期
关键词
Antioxidative enzymes; Net photosynthesis rate; Peptidase; Phytotron; Premature senescence mutant; Rice (; L.); A; Q945;
D O I
10.1007/BF02842441
中图分类号
学科分类号
摘要
A ricepse(t) (premature senescence, tentatively) mutant line, was isolated from 4500 independent T-DNA inserted transgenic lines. The symptoms of premature senescence appeared more severely than those of the control plants (Zhonghua 11,japonica) at the last development stage. To characterize the mutant and provide basic information on the candidate genes by mapping to a physical region of 220-kb, experiments were carried out in two phytotrons under controlled temperature of 24°C and 28°C, respectively. The content of chlorophyll, soluble protein and MDA (malondialdehyde), net photosynthesis, the antioxidant enzyme activities of SOD (superoxide dismuase) (EC 1.15.1.1) and POD (peroxidase) (EC 1.11.1.7) and the peptidase activities of leaves were measured from top to bottom according to the leaf positions at the flowering stage. Compared with the control plant, the mutant showed the following characteristics: (1) Higher net photosynthesis rate (Pn) appeared in the 1st and 2nd leaves, contents of chlorophyll and soluble protein were also higher in the 1st leaf; (2) The activities of SOD, POD and peptidase were higher according to the leaf position from top to bottom; (3) The symptom of premature senescence was accelerated in the mutant at 28°C treatment. The MDA content and the SOD and POD activities between the 24°C and 28°C treatment mutants were not significantly different. Content of chlorophyll and soluble protein of leaves mutant decreased rapidly at 28°C treatment. The results show thatpse(t) is sensitive to high temperature. The probable function of PSE(T) is discussed.
引用
收藏
页码:803 / 811
页数:8
相关论文
共 106 条
[1]  
Bradford M.M.(1976)A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding Anal. Biochem. 7 248-254
[2]  
Del Rio L.A.(1998)The activated oxygen role of peroxisomes in senescence Plant Physiol. 116 1195-1200
[3]  
Pastori G.M.(1997)Studies on leaf senescence of hybrid rice at flowering and grain formation stage Acta Phytophysiologica Sinaca 23 139-144
[4]  
Palma J.M.(2002)Regulation of photosynthesis and antioxidant metabolism in maize leaves at optimal and chilling temperatures: Review Plant Physiol. Biochem. 40 659-668
[5]  
Sandalio L.M.(1977)Superoxide dismutase in higher plants Plant Physiol. 59 309-314
[6]  
Sevilla F.(1985)Inhibition of chlorophyll synthesis in Hordeum vulgare by 3-amino-2,3-dihydrobenzoic acid (gabaculin) Bioscience Report 5 775-781
[7]  
Corpas F.J.(1995)Regulation of photosynthesis during leaf development in RbcS antisense DNA mutants of tobacco Plant Physiol. 107 215-224
[8]  
Jimenez A.(2002)Arabidopsis onset of leaf death mutants identify a regulatory pathway controlling leaf senescence Plant J. 32 51-63
[9]  
Lopez-Huertas E.(1996)Analysis of inhibition of photosynthesis due to water stress in the C3 species Photosynth Res. 49 57-69
[10]  
Hernandez J.A.(2002) and Plant Cell Environ. 25 359-368