Proteome analysis of roots of wheat seedlings under aluminum stress

被引:0
|
作者
Myeong Won Oh
Swapan Kumar Roy
Abu Hena Mostofa Kamal
Kun Cho
Seong-Woo Cho
Chul-Soo Park
Jong-Soon Choi
Setsuko Komatsu
Sun-Hee Woo
机构
[1] Chungbuk National University,Department of Crop Science
[2] NARO,National Institute of Crop Science
[3] Korea Basic Science Institute,Mass Spectrometry Research Center
[4] Tottori University,Labaratory of Molecular Breeding, Arid Land Research Center
[5] Chonbuk National University,Department of Crop, Agriculture and Life Science
[6] Korea Basic Science Institute,Division of Life Science
来源
Molecular Biology Reports | 2014年 / 41卷
关键词
Aluminum stress; LTQ-FTICR-MS; Proteomics; Wheat root; 2-DE;
D O I
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中图分类号
学科分类号
摘要
The root apex is considered the first sites of aluminum (Al) toxicity and the reduction in root biomass leads to poor uptake of water and nutrients. Aluminum is considered the most limiting factor for plant productivity in acidic soils. Aluminum is a light metal that makes up 7 % of the earth’s scab dissolving ionic forms. The inhibition of root growth is recognized as the primary effect of Al toxicity. Seeds of wheat cv. Keumkang were germinated on petridish for 5 days and then transferred hydroponic apparatus which was treated without or with 100 and 150 μM AlCl3 for 5 days. The length of roots, shoots and fresh weight of wheat seedlings were decreased under aluminum stress. The concentration of K+, Mg2+ and Ca2+ were decreased, whereas Al3+ and P2O5− concentration was increased under aluminum stress. Using confocal microscopy, the fluorescence intensity of aluminum increased with morin staining. A proteome analysis was performed to identify proteins, which are responsible to aluminum stress in wheat roots. Proteins were extracted from roots and separated by 2-DE. A total of 47 protein spots were changed under Al stress. Nineteen proteins were significantly increased such as sadenosylmethionine, oxalate oxidase, malate dehydrogenase, cysteine synthase, ascorbate peroxidase and/or, 28 protein spots were significantly decreased such as heat shock protein 70, O-methytransferase 4, enolase, and amylogenin. Our results highlight the importance and identification of stress and defense responsive proteins with morphological and physiological state under Al stress.
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页码:671 / 681
页数:10
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