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Preliminary Studies on Establishment of Genetic Transformation System in Loblolly Pine

Preliminary Studies on Establishment Genetic Transformation System in Loblolly Pine
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摘要 A transformation system was established for loblolly pine (Pimus taeda L ) mature zygotic embryos using Agrobacterium tumefaciens.The gene coding for the glucuronidase (GUS) gene was introduced into loblolly pine tissues andits transient expression was detected with histochemical staining. The influences of different genotypes. Agrobacterium concentrations. and cocultivation time on GUS expression and Kanamycin resistant callus and shoot regeheration were investigated. The results showed that the highest `GUS expression frequency (1 6.3%) and shoot regencration frequency(7.8%) wereobtained from genotype 9-1003 with, Agrobactemm concentration decreased 9 times and cocultivation time of 56 hours.respectively GUS expression was, obtained in all genotypes tested The successtul expression of the GUS gene in differentgenotypes suggested that it will be a useful transformation system for loblolly pine A transformation system was established for loblolly pine (Pimus taeda L ) mature zygotic embryos using Agrobacterium tumefaciens.The gene coding for the glucuronidase (GUS) gene was introduced into loblolly pine tissues andits transient expression was detected with histochemical staining. The influences of different genotypes. Agrobacterium concentrations. and cocultivation time on GUS expression and Kanamycin resistant callus and shoot regeheration were investigated. The results showed that the highest `GUS expression frequency (1 6.3%) and shoot regencration frequency(7.8%) wereobtained from genotype 9-1003 with, Agrobactemm concentration decreased 9 times and cocultivation time of 56 hours.respectively GUS expression was, obtained in all genotypes tested The successtul expression of the GUS gene in differentgenotypes suggested that it will be a useful transformation system for loblolly pine
出处 《Journal of Forestry Research》 SCIE CAS CSCD 1997年第4期201-205,共5页 林业研究(英文版)
关键词 Pinus taeda L. Genetic transformation Agrobacterium tumefaciens Pinus taeda L. Genetic transformation Agrobacterium tumefaciens
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参考文献8

  • 1V. Levée,M.-A. Lelu,L. Jouanin,D. Cornu,G. Pilate. Agrobacterium tumefaciens-mediated transformation of hybrid larch (Larix kaempferi T L. decidua) and transgenic plant regenerationn[J] 1997,Plant Cell Reports(10):680~685
  • 2Lining Tian,Armand Séguin,Pierre J. Charest. Expression of the green fluorescent protein gene in conifer tissues[J] 1997,Plant Cell Reports(5):267~271
  • 3Ming Cheng,Robert L. Jarret,Zhijian Li,Aiqiu Xing,James W. Demski. Production of fertile transgenic peanut (Arachis hypogaea L.) plants using Agrobacterium tumefaciens[J] 1996,Plant Cell Reports(9):653~657
  • 4Dominique Robertson,Arthur K. Weissinger,Rhonda Ackley,Sarah Glover,Ronald R. Sederoff. Genetic transformation of Norway spruce (Picea abies (L.) Karst) using somatic embryo explants by microprojectile bombardment[J] 1992,Plant Molecular Biology(6):925~935
  • 5Luc C. Duchesne,Pierre J. Charest. Transient expression of the β-glucuronidase gene in embryogenic callus of Picea mariana following microprojection[J] 1991,Plant Cell Reports(4):191~194
  • 6Carol A. Loopstra,Anne-Marie Stomp,Ronald R. Sederoff. Agrobacterium-mediated DNA transfer in sugar pine[J] 1990,Plant Molecular Biology(1):1~9
  • 7David Ellis,Dane Roberts,Ben Sutton,Wayne Lazaroff,David Webb,Barry Flinn. Transformation of white spruce and other conifer species byAgrobacterium tumefaciens[J] 1989,Plant Cell Reports(1):16~20
  • 8Richard A. Jefferson. Assaying chimeric genes in plants: The GUS gene fusion system[J] 1987,Plant Molecular Biology Reporter(4):387~405

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