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      아그로박테리움을 이용한 제초제 저항성 콩 개발 = Development of herbicide tolerant soybean using Agrobacterium tumefaciens

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      https://www.riss.kr/link?id=A103806025

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      다국어 초록 (Multilingual Abstract)

      This study aims to establish the efficient soybean transformation system and develop soybean [Glycine max (L.) Merill] transformants using cotyledonary node explants. The cotyledonary node of soybean were co-cultivated with Agrobacterium tumefaciens s...

      This study aims to establish the efficient soybean transformation system and develop soybean [Glycine max (L.) Merill] transformants using cotyledonary node explants. The cotyledonary node of soybean were co-cultivated with Agrobacterium tumefaciens strains (KYRT1, EHA105). These strains contain the binary vector pCAMBIA3301 which carries a herbicide-resistant bar gene. Korean cultivars (Danbaekkong, Eunhakong) and foreign cultivars (Jack, Peking) were the most efficient in regenerating cotyledonary node. Therefore, they were chosen for the transformation. Results showed that the T-DNA transfer reached up to 60% and transformation efficiency reached up to 3% in the cotyledonary node explants from Jack cultivar, co-cultivated with EHA105 strain. Histochemical GUS evaluation showed that 12 individual lines, transformed with the gus gene, have positive response. The transformed soybeans have been confirmed in the T0 generation through phenotypic assay using herbicide Basta® and Southern blot analysis.

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      참고문헌 (Reference) 논문관계도

      1 Ko T. S., "Two critical factors are required for efficient transformation of multiple soybean cultivars: Agrobacterium strain and orientation of immature cotyledonary explant" 107 : 439-447, 2003

      2 Donaldson P. A., "Susceptibility to Agrobacterium tumefaciens and cotyledonary node transformation in short-season soybean" 19 : 478-484, 2000

      3 Trick H. N., "Sonication-assisted Agrobacteriummediated transformation of soybean [Glycine max (L.) Merrill] embryogenic suspension culture tissue" 17 : 482-488, 1998

      4 Santarem E. R., "Sonication-assisted Agrobacterium-mediated transformation of soybean immature cotyledons: Optimization of transient expression" 17 : 752-759, 1998

      5 Trick H. N., "SAAT: Sonication-assisted Agrobacterium-mediated transformation" 6 : 329-337, 1997

      6 Zeng P., "Refined glufosinate selection in Agrobacterium-mediated transformation of soybean [Glycine max (L.) Merrill]" 22 : 478-482, 2004

      7 Hinchee M. A. W., "Production of transgenic soybean plants using Agrobacterium-mediated DNA transfer" 6 : 915-922, 1988

      8 Sandermann H., "Plant biotechnology: ecological case on herbicide resistance" 11 : 324-328, 2006

      9 Sambrook J., "Molecular cloning: A Laboratory Manual, 3rd ed" Cold Spring Harbor Laboratory Press 2001

      10 Olhoft P. M., "L-Cysteine increases Agrobacteriummediated T-DNA delivery into soybean cotyledonarynode cells" 20 : 706-711, 2001

      1 Ko T. S., "Two critical factors are required for efficient transformation of multiple soybean cultivars: Agrobacterium strain and orientation of immature cotyledonary explant" 107 : 439-447, 2003

      2 Donaldson P. A., "Susceptibility to Agrobacterium tumefaciens and cotyledonary node transformation in short-season soybean" 19 : 478-484, 2000

      3 Trick H. N., "Sonication-assisted Agrobacteriummediated transformation of soybean [Glycine max (L.) Merrill] embryogenic suspension culture tissue" 17 : 482-488, 1998

      4 Santarem E. R., "Sonication-assisted Agrobacterium-mediated transformation of soybean immature cotyledons: Optimization of transient expression" 17 : 752-759, 1998

      5 Trick H. N., "SAAT: Sonication-assisted Agrobacterium-mediated transformation" 6 : 329-337, 1997

      6 Zeng P., "Refined glufosinate selection in Agrobacterium-mediated transformation of soybean [Glycine max (L.) Merrill]" 22 : 478-482, 2004

      7 Hinchee M. A. W., "Production of transgenic soybean plants using Agrobacterium-mediated DNA transfer" 6 : 915-922, 1988

      8 Sandermann H., "Plant biotechnology: ecological case on herbicide resistance" 11 : 324-328, 2006

      9 Sambrook J., "Molecular cloning: A Laboratory Manual, 3rd ed" Cold Spring Harbor Laboratory Press 2001

      10 Olhoft P. M., "L-Cysteine increases Agrobacteriummediated T-DNA delivery into soybean cotyledonarynode cells" 20 : 706-711, 2001

      11 Paz M. M., "Improved cotyledonary node method using an alternative explant derived from mature seed for efficient Agrobacterium-mediated soybean transformation" 25 : 206-213, 2005

      12 Stewart C. N., "Genetic transformation, recovery, and characterization of fertile soybean transgenic for a synthetic Bacillus thuringiensis crylAc gene" 112 : 121-129, 1996

      13 Jefferson R. A., "GUS fusion: β-glucuronidase as a sensitive and versatile gene fusion marker in higher plants" 6 : 3901-3907, 1987

      14 Meurer C. A., "Factors affecting soybean cotyledonary node transformation" 18 : 180-186, 1998

      15 Rie T., "Expression of CaMV35S-GUS gene in transgenic rice plants. Mole" 220 : 389-392, 1990

      16 Olhoft, P. M., "Efficient soybean transformation using hygromycin B selection in the cotyledonary-node method Planta" 216 : 723-735, 2003

      17 Cho J. Y., "Dry field farming" Hyangmunsa 2001

      18 Cho M. A., "Development of transgenic soybean using Agrobacterium tumefaciens" 31 : 255-259, 2004

      19 Torisky R. S., "Development of a binary vector system for plant transformation based on the supervirulent Agrobacterium tumefaciens strain Chry 5" 17 : 102-108, 1997

      20 Yan B., "Agrobacterium tumefaciens-mediated transformation of soybean [Glycine max (L.) Merrill] using immature zygotic cotyledon explants" 19 : 1090-1097, 2000

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