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A potato NOA gene increased salinity tolerance in Arabidopsis thaliana
Zhang, B. ; Wang, H. Q. ; Liu, B. L. ; Liu, J. ; Wang, X. ; Liu, Q. ; Zhang, H. G.
2010-09-06
发表期刊AFRICAN JOURNAL OF BIOTECHNOLOGY ; Zhang, B; Wang, HQ; Liu, BL; Liu, J; Wang, X; Liu, Q; Zhang, HG.A potato NOA gene increased salinity tolerance in Arabidopsis thaliana,AFRICAN JOURNAL OF BIOTECHNOLOGY,2010,9(36):5869-5878
摘要The purpose of this study is to produce recombinant StNOA1 in transgenic plants and to test its potential role in plant salt stress responses. The newly cloned StNOA1 gene from Solanum tuberosum L. was inserted into AtnOA1 mutant plant genome by Agrobaterium-mediated floral dip method. Transgene integration was verified by polymerase chain reaction (PCR) in 4 different lines of transgenic Atnoa1. Expression of StNOA1 gene was further analyzed by reverse trancription (RT)-PCR. Physiological analyses indicated that the transgenic line TL9 had higher proline, soluble protein and chlorophyll contents as well as lower content of malondialdehyde (MDA) compared to its receptor, Atnoa1 mutant, under salt stress condition. Root elongation and survival rate in TL9 were significantly higher than those in Atnoa1 seedlings under salt stress. Present study proved that StNOA1 participated in Arabidopsis thaliana salt stress responses and increased its salinity tolerance.; The purpose of this study is to produce recombinant StNOA1 in transgenic plants and to test its potential role in plant salt stress responses. The newly cloned StNOA1 gene from Solanum tuberosum L. was inserted into AtnOA1 mutant plant genome by Agrobaterium-mediated floral dip method. Transgene integration was verified by polymerase chain reaction (PCR) in 4 different lines of transgenic Atnoa1. Expression of StNOA1 gene was further analyzed by reverse trancription (RT)-PCR. Physiological analyses indicated that the transgenic line TL9 had higher proline, soluble protein and chlorophyll contents as well as lower content of malondialdehyde (MDA) compared to its receptor, Atnoa1 mutant, under salt stress condition. Root elongation and survival rate in TL9 were significantly higher than those in Atnoa1 seedlings under salt stress. Present study proved that StNOA1 participated in Arabidopsis thaliana salt stress responses and increased its salinity tolerance.
文献类型期刊论文
条目标识符http://210.75.249.4/handle/363003/25599
专题中国科学院西北高原生物研究所
推荐引用方式
GB/T 7714
Zhang, B.,Wang, H. Q.,Liu, B. L.,et al. A potato NOA gene increased salinity tolerance in Arabidopsis thaliana[J]. AFRICAN JOURNAL OF BIOTECHNOLOGY, Zhang, B; Wang, HQ; Liu, BL; Liu, J; Wang, X; Liu, Q; Zhang, HG.A potato NOA gene increased salinity tolerance in Arabidopsis thaliana,AFRICAN JOURNAL OF BIOTECHNOLOGY,2010,9(36):5869-5878,2010.
APA Zhang, B..,Wang, H. Q..,Liu, B. L..,Liu, J..,Wang, X..,...&Zhang, H. G..(2010).A potato NOA gene increased salinity tolerance in Arabidopsis thaliana.AFRICAN JOURNAL OF BIOTECHNOLOGY.
MLA Zhang, B.,et al."A potato NOA gene increased salinity tolerance in Arabidopsis thaliana".AFRICAN JOURNAL OF BIOTECHNOLOGY (2010).
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