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Developmental characteristics and response to iron toxicity of root border cells in rice seedlings 被引量:9

Developmental characteristics and response to iron toxicity of root border cells in rice seedlings
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摘要 To investigate the Fe^2+ effects on root tips in rice plant, experiments were carried out using border cells in vitro. The border cells were pre-planted in aeroponic culture and detached from root tips. Most border cells have a long elliptical shape. The number and the viability of border cells in situ reached the maxima of 1600 and 97.5%, respectively, at 20---25 mm root length. This mortality was more pronounced at the first 1-12 h exposure to 250 mg/L Fe^2+ than at the last 12-36 h. After 36 h, the cell viability exposed to 250 mg/L Fe^2+ decreased to nought, whereas it was 46.5% at 0 mg/L Fe^2+. Increased Fe^2+ dosage stimulated the death of detached border cells from rice cultivars. After 4 h Fe^2+ treatment, the cell viabilities were _〉80% at 0 and 50 mg/L Fe^2+ treatment and were 〈62% at 150, 250 and 350 mg/L Fe^2+ treatment; The viability of border cells decreased by 10% when the Fe^2+ concentration increased by 100 mg/L. After 24 h Fe^2+ treatment, the viabilities of border cells at all the Fe^2+ levels were 〈65%; The viability of border cells decreased by 20% when the Fee+ concentration increased by 100 mg/L. The decreased viabilities of border cells indicated that Fe^2+ dosage and treatment time would cause deadly effect on the border cells. The increased cell death could protect the root tips from toxic harm. Therefore, it may protect root from the damage caused by harmful iron toxicity. To investigate the Fe2+ effects on root tips in rice plant,experiments were carried out using border cells in vitro.The border cells were pre-planted in aeroponic culture and detached from root tips.Most border cells have a long elliptical shape.The number and the viability of border cells in situ reached the maxima of 1600 and 97.5%,respectively,at 20~25 mm root length.This mortality was more pronounced at the first 1~12 h exposure to 250 mg/L Fe2+ than at the last 12~36 h.After 36 h,the cell viability exposed to 250 mg/L Fe2+ decreased to nought,whereas it was 46.5% at 0 mg/L Fe2+.Increased Fe2+ dosage stimulated the death of detached border cells from rice cultivars.After 4 h Fe2+ treatment,the cell viabilities were ≥80% at 0 and 50 mg/L Fe2+ treatment and were <62% at 150,250 and 350 mg/L Fe2+ treatment;The viability of border cells decreased by 10% when the Fe2+ concentration increased by 100 mg/L.After 24 h Fe2+ treatment,the viabilities of border cells at all the Fe2+ levels were <65%;The viability of border cells decreased by 20% when the Fe2+ concentration increased by 100 mg/L.The decreased viabilities of border cells indicated that Fe2+ dosage and treatment time would cause deadly effect on the border cells.The increased cell death could protect the root tips from toxic harm.Therefore,it may protect root from the damage caused by harmful iron toxicity.
出处 《Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)》 SCIE CAS CSCD 2008年第3期261-264,共4页 浙江大学学报(英文版)B辑(生物医学与生物技术)
基金 Project (Nos. Y307535 and Y304185) supported by the Natural Science Foundation of Zhejiang Province,China
关键词 Rice plant Border cells Iron toxicity 毒性 环境保护 大米 细胞
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  • 1马伯军,潘建伟,傅昭娟,张萍华,朱睦元.大豆根边缘细胞的发育及其影响因子[J].作物学报,2005,31(2):165-169. 被引量:14
  • 2Hawes M C,Gunwardena U,Miyasaa S,Zhao X.The role of root border cells in plant defense.Trends Plant Science,2000,5(3):128-133
  • 3Humphris S N,Bengough A G,Griffiths B S,Kilham K,Rodger S,Stubbs V,Valentine T A,Young I M.Root cap influences root colonization by Pseudomonas fluorescens SBW25 on maize.FEMS Microbiology Ecology,2005,54:123-130.
  • 4Iijima M,Higuchi T,Barlow P W,Bengough A G.Root cap removal increases root penetration resistance in maize (Zea mays L.).Journal of Exprimental Botany,2003,54:2105-2109.
  • 5Iijima M,Higuchi T,Barlow P W.Contribution of root cap mucilage and presence of an intact root cap in maize (Zea mays).Journal of Exprimental Botany,2004,94:473-477.
  • 6Hawes M C,Brigham L A,Wen F,Woo H,Zhu Y.Function of root border cells in plant health:pioneers in the rhizosphere.Annual Review Phytopathology,1998,36:311-327.
  • 7Ma J F,Ryan P R,Delhaize E.Aluminum tolerance in plant sand the complexing role of organic acids.Trends in Plant Science,2001,6:273-278.
  • 8Deborah A,Tesfaye M.Plant improvement for tolerance to aluminum in acid soils-a review.Plant Cell,Tissue and Organ Culture,2003,75:189-207.
  • 9Barcelo′ J,Poschenrieder C.Fast root growth responses,root exudates,and internal detoxification as clues to the mechanisms of aluminium toxicity and resistance:a review.Environmental and Experimental Botany,2002,48:75-92.
  • 10Ma J F,Furukawa J.Recent progress in the research of external Al detoxification in higher plants:a minireview.Journal of Inorganic Biochemistry,2003,97:46-51.

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