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Lithium Chloride,an Alternative Selectable Marker for Soybean Transformation(PDF)

《大豆科学》[ISSN:1000-9841/CN:23-1227/S]

Issue:
2012年04期
Page:
552-556,567
Research Field:
Publishing date:

Info

Title:
Lithium Chloride,an Alternative Selectable Marker for Soybean Transformation
Author(s):
HUANG Wen-jiaLI Yong-guangWANG Zhi-kunLI Wei-naWANG TaoWANG Peng-pengLI Wen-bin
Soybean Research Institute,Northeast Agricultural University/Key Laboratory of Soybean Biology in Chinese Ministry of Education/Key Laboratory of Biology and Genetics & Breeding for Soybean in Northeast China,Ministry of Agriculture,Harbin 150030,Heilongjiang,China
Keywords:
SoybeanTransgenic plantLithium ChlorideGUS dyingPCR
PACS:
S565.1
DOI:
10.3969/j.issn.1000-9841.2012.04.009
Abstract:
The proper concentration of lithium chloride and selection time were determined by the yellowing rate and the height of cluster buds of Dongnong50,treated with different concentration of lithium chloride.The data showed the suitable selective concentration of lithium choride and treated time were 60 mmol·L-1 and 10 day,respectively.Further analysis revealed that 80% of cluster buds resistant to lithium chloride was positive after GUS dying.The transgenic plants were detected by PCR analysis.The result suggested the optimized concentration of lithium chloride was 700 mmol·L-1and the lineages of the transgenic plants could normally grow and develop.Results suggested that the selected marker of lithium chloride could be applied in rapid selection for transgenic soybean plants.

References:

[1]Eduardo B.The lithium tolerance of the Arabidopsis cat2 ?mutant reveals a cross-talk between oxidative stress and ethylene[J].Plant Journal,2007,52:1052-1065.

[2]Luo G Z.A putative plasma membrane cation/proton antiporter from soybean confers salt tolerance in Arabidopsis[J].Plant Molecular Biology,2005,59:809-820.

[3]Zhang Z Y,Xiang A Q,Staswick Q,et al.The use of glufosinate as a selective agent in Agrobacterium-mediated transformation of soybean[J].Plant Cell,Tissue and Organ Culture,1999,56:37-46.

[4]李俊.转基因植物中标记基因研究概况[J],植物学报,2009,44(4):497-505.(Li J.The research situation of transgenic plants marker genes[J].Chinese Bulletin of Botany2009,44(4):497-505.)

[5]李文霞,宁海龙,吕文河,.农杆菌介导大豆子叶节转化系统的优化[J].中国农业科学,2008,41(4):971-977.Li W XNing H LLüW H,et al.Optimization of the Agrobacterium-mediated transformation systems of soybean cotyledonary node[J].Scientia Agricultura Sinica2008,41(4):971-977.)

[6]Jefferson R A,Kavanagh T A,Bevan M W.GUS?fusions:β-glucuronidase as a sensitive and versatile gene fusion marker in higher plants[J].EMBO Journal,1987,6:3901-3907.

[7]李永光,黄文佳,周失,等.大豆对除草剂(草丁膦)的敏感性研究[J],大豆科学,2011,30(5):749-751.(Li Y G,Huang W J,Zhou S,et al.The study on the sensitivity of soybean treated with PPT[J].Soybean Science,2011,30(5):749-751.)

[8]袁鹰,刘德璞,王玉民,.卡那霉素对大豆生长的抑制及筛选试验研究[J].大豆科学,2003,22(4):261-263.(Yuan Y,Liu D P,Wang Y M,et al.Study on critical and screen soybean grow of kanamycin[J].Soybean Science,2003,22(4):261-263.)

[9]Olhoft P M,Flagel L E,Donovan C M,et al.Efficient soybean transformation using hygromycin B selection in the cotyledonary-node method[J].Planta,2003,5:723-735.

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Last Update: 2014-08-18