全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

不同浓度镉对白菜幼苗生长受害与蛋白质组变化关系分析

Keywords: ,临界剂量,蛋白质组,双向凝胶电泳,白菜

Full-Text   Cite this paper   Add to My Lib

Abstract:

References

[1]  李坤权 刘建国 陆小龙 杨建昌 张祖建 朱庆森.水稻不同品种对镉吸收及分配的差异[J].农业环境科学学报,:.
[2]  叶海波 杨肖娥 何冰 龙新宪 石伟勇 陈建.东南景天对锌镉复合污染的反应及其对锌镉吸收和积累特性的研究[J].农业环境科学学报,2003,22(5):513—518.
[3]  Das P, Samantarays, Rout G R. Studies on cadmium toxicity in plants:a review[J]. Environ Pollut, 1997, 98 : 29-36.
[4]  Clijsters H, Van Assche F. Inhibition of photosynthesis by metals[J]. Photosyn Res, 1985, 7 : 31-40.
[5]  Shan K, Dubey R S. Effects of cadmium on RNA level as well as activity and molecular forms of ribonuclease in growing rice seedlings [J]. Plant Physiol. Biochem(Paris ), 1995, 33:577-584.
[6]  Urwin P E, Groom Q J, Robin N J. Characterization of two cDNAs and identification of two proteins that accumulate in response to cadmium in Cadmium tolerant Datura innoxia( Mill)[J]. Cells Expt Bot, 1996, 47: 1019-1024.
[7]  Hart J J, Welch R M, Norvell V A, et al. Characterization of cadmium binding, uptake and translocation in intact seedlings of bread and durum wheat cultivars[J]. Plant Physiol, 1998, 116 : 1413-1420.
[8]  Kavita S, Dubey R S. A 18kDa cadmium inducible protein complex:its isolation and characterization from rice (Oryza Sativa L )seedlings[J]. Plant Physiology, 1998, 152:448-454.
[9]  Rivera-Becerril F, Calantzis C, Turnau K, et al. Cadmium accumulation and buffering of cadmium-induced stress by arbuscular mycorrhiza in threepisum sotivum L. Genotypes[J]. Exp Bot, 2002, 53 : 1177-1185.
[10]  Zhou H W, Shi G X, Xu P S. Effect of Cd^2+ polluted water on the activities of antioxidant enzymes and ultrastructure in roots of A lternanthera philoxeroides[J]. Plant Physiology Communications, 2003, 39( 3 ) :211- 213.
[11]  Fleming W J, Grossfeld R M, Siesko M M. Stress protein synthesis and peroxidase activity in a submersed apiuatic macrophyte exposed to cadmium[J]. Environmental Toxicology & Chemistry, 1997, 16(8 ) : 1755.
[12]  Hsu Y T, Kao C H. Changes in protein and amino acid contents in two cuhivars of rice seedling with different apparent tolerance to cadmium [J]. Plant Growth Regulation, 2003, 40:147-155.
[13]  Keltjens W G, Van Beusichem. Phytochelatins as biomarkers for heavy metal stress in maize. (Zea Mays L)and wheat( Triticum aestivum L): Combined effects of copper and cadmium[J]. Plant and Soil, 1998, 203 (1):119-126.
[14]  Kevresan S, Petrovic N, Popovic M, et al. Nitrogen and protein metabolism in young pea plants as affected by different concentrations of nickel, cadmium, lead and molybdenum[J]. Plant Nutri, 2001, 24(10) : 1633- 1645.
[15]  Khudsar T, Mahmooduzzafar Ipiba M. Cadmium-Induced changes in leaf epidermis, photosynthetic rate and pigment concentrations in Cajanus Cajan[J]. Biol Plant, 2001, 44( 1 ):59-64.
[16]  Lagriffoul A, Mocpiuot B, Mench M, et al. Cadmium toxicity effects on growth, mineral and chlorophyll contents and activities of stress related enzymes in young maize plants (Zea Mays L)[J]. Plant and Soil, 1998, 200(2): 241-250.
[17]  Muhiling K H, Lauchli A. Effect of bioaccumulation of cadmium in biomass productivity, essential trace element, chlorophyll biosynthesis and macromolecules of wheat seedlings [J]. Biological Trace Element Research, 2003, 92(3 ) : 257-274.
[18]  Romero-Puertas M C, Palma J A, Gomeg M, et al. Cadmium cause the oxidative modification of protein in pea plants[J]. Plant Cell & Environ, 2002, 25 (5) : 677-687.
[19]  Ueki S, Citovsky V. The systemic movement of a tobamovirus is inhibited by a cadmium-induced glycine-rich protein[J]. Nature Cell Biology, 2002, 4(7) :78-87.
[20]  莫慧栋.农业实验设计(第二版)[M].上海:上海科技出版社,1992.
[21]  Arnon D L. Copper enzymes in isolated chloroplasts PPO in Beta vulgaris[J]. Plant Physiol, 1949, 24: 1-15.
[22]  Hadlaczky G, Praznovsky T, Bisztray G C. Structure of isolation protein-depleted chromosomes[J]. Chromosoma, 1982, 86:643-659.
[23]  O\\' Farrel P H. High resolution of two dimensional electrophoresis of proteins[J]. Biochem, 1975,250: 4007-4021.
[24]  Laemmli U K. Cleavage of structure proteins during the assembly of the head of bacteriophase T4[J]. Nature (Lond), 1970, 227 : 680-685.
[25]  Wary W, Boulikas T, Wary V P, et al. Silver staining of proteins in polyacrylamide gels[J]. Ann Biochem, 1981, 118 : 197-203.
[26]  Sanitadi T L, Gabbrelli R. Response to cadmium in higher plants [J]. Environ Exp Bot, 1999, 41 : 105-130.
[27]  Hall J L. Cellular mechanisms for heavy metal detoxification and tolerance[J]. Exp Bot, 2002, 53:1-11.
[28]  Choi S Y, Beak E M, Lee S Y. A cDNA differentially expressed by cadmium stress in A raadidopsis[J]. Plant Physiol, 1995, 108:849-859.
[29]  Cui Suxia, Huang Fang, Wang Jie, et al. A proteomic analysis of cold stress responses in rice seedlings[J]. Proteomics, 2005, 5:3162-3172.
[30]  Yah Shunping, Tang Zhangcheng, Su Weiai, et al. Proteomic analysis of salt stress-responsive proteins in rice root[J]. Proteomics, 2005, 5: 235-244.
[31]  Frederique Riccardi, Pascale Gazeau, Dominique de Vienne, et al. Protein changes in response to progressive water deficit in Maize [J]. Plant Physiol, 1998, 117:1253-1263.
[32]  Gh Hosseini Salekdeh, Joel Siopongco, Leonard J Wade, et al. Pro teomic analysis of rice leaves during drought stress and recovery[J] Proteomics, 2002, 2 : 1131-1145.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133