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转PEPC基因水稻种质的稳定光合生理特性 被引量:15

The Stable Photosynthetic Characteristics of a PEPC Transgenic Rice Germplasm
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摘要 本文运用稳定和放射性碳同位素研究了第8代转PEPC基因水稻,并测定其光合速率和荧光特性。结果表明,该种质为C3植物,但C4原初光合产物增多,表现出C4光合特性有所改善;转PEPC基因水稻种质已稳定,为我国的高光效育种提供了一个新的种质资源。 The eighth generation of PEPC transgenic rice and an untransformed rice cuhivar ( Oryza sativa L. subsp. japonica cv. Kitaake) were need to study photosynthetic rate and chlorophyll fluorescence parameters by applying the stable and radioactive carbon isotope. The results showed that the germplasm of PEPC transgenic rice was a C3 plant with certain C4 photosynthetic characteristlcs. The light saturation photosynthetic rate of transgenic rice was higher than that of untransformed rice. In the treatment with high light intensity (3 h) and methyl viologen (MV), a photooxidative reagent, the PS Ⅱ photochemical efficiency ( Fv| Fm ) and photochemical quenching (qp) of transgenic PEPC rice were decreased less, while the non-photochemical quenching ( qN ) were increased more as comparison with those of untransformed rice. The higher activities of antioxidative enzymes superoxide dismutase (SOD) and peroxidase (POD) in transgenic rice plants led to a lesser accumulation of endogenous active oxygen ( O2^T , H2O2 ). As a result, the malondialdehyde ( MDA, a product of membrane-lipid oxidation) content was reduced. Compared with the previous generations, the germplasm of PEPC transgenic rice has been steady in genetic, which may become a new germplasm resource in the breeding for high photosynthetic efficiency.
出处 《作物学报》 CAS CSCD 北大核心 2006年第4期527-531,共5页 Acta Agronomica Sinica
基金 教育部新世纪优秀人才支持计划项目 国家自然科学基金(30571119)
关键词 转PEPC基因水稻 稳定碳同位素 放射性碳同位索 光合特性 种质 PEPC transgenic rice Stable carbon isotope ^14 C isotope Photosynthetic characteristics Germplasm
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  • 1[1]Ku M S B,Agarie S,Nomura M,Tsuchida H,Ono K,Hirose S,Toki S,Miyao M,Matsuoka M.High-level expression of maize phosphoenolpyruvate carboxylase in transgenic rice plants.Nature Biotechnology,1999,17:76~80.
  • 2[3]Hayashimoto A.A polyethylene glycol-mediated protoplast transformation system for production of fertile transgenic rice plant.Plant pysiol,1990,(83):857~863.
  • 3[15]Kung S D,Chollet R,Marsho T V.Crystallization and assay procedures of tobacco ribulose 1,5-bisphosphate carboxylase-oxygenase.In:Pietro A S,ed.Method Enzymology.New York:Academic Press Inc,1980,69:326~335.
  • 4[16]Gonzalez D H,Iglesias A A,Andreo C S.On the regulation of phosphoenolpyruvate carboxylase activity from maize leaves by L-malate:Effect of Ph,Plant Physiol,1984,116:425~430.
  • 5[18]Linquist S.The heat-shock response.Annu Rev Biochem,1986,55:1151.
  • 6Arnold J. Bloom,John H. Troughton. High productivity and photosynthetic flexibility in a CAM plant[J] 1979,Oecologia(1):35~43
  • 7John H. Troughton,K. A. Card. Temperature effects on the carbon-isotope ratio of C3, C4 and crassulacean-acid-metabolism (CAM) plants[J] 1975,Planta(2):185~190
  • 8JIAO Demao, LI Xia, HUANG Xueqing, CHI Wei, KUANG Tingyun & Ku SB Maurice1. Institute of Agrobiological Genetics and Physiology, Jiangsu Academy of Agricultural Sciences, Nangjing 210014, China,2. Institute of Botany, the Chinese Academy of Sciences, Beijing 100093, China,3. Botany Department, Washington State University, Pullman, WA 99164-4236, USA.The characteristics of CO_2 assimilation of photosynthesis and chlorophyll fluorescence in transgenic PEPC rice[J].Chinese Science Bulletin,2001,46(13):1080-1084. 被引量:29
  • 9林植芳,彭长连,林桂珠.C_3、c_4植物叶片叶绿素荧光猝灭日变化和对光氧化作用的响应[J].作物学报,1999,25(3):284-290. 被引量:30
  • 10李霞,焦德茂,戴传超,王守海,吴爽,李成荃.转育PEPC基因的杂交水稻的光合生理特性[J].作物学报,2001,27(2):137-143. 被引量:45

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