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Pathogenicity in Nicotiana benthamiana Conferred by Tobacco Mosaic Virus Movement Protein Transgene
Lee, Sung-Ho,Choi, Young-Ju,Shon, Young-Goel,Hwang, Su-Jeong,Roger N. Beachy,Cho, Moo-Je,Lim, Chae-Oh Gyeongsang National University Chinju, Korea 1998 Plant molecular biology and biotechnology research Vol.1998 No.
Jin, Zheung Lu,Hong, Joon Ki,Yun, Dae Jin,Lee, Sang Yeol,Choi, Young Ju,Bahk, Jeong Dong,Beachy, Roger N.,Cho, Moo Je,Lim, Chae Oh 한국식물학회 2002 Journal of Plant Biology Vol.45 No.2
Nicotiana benthamiana plants were transformed with the movement protein (MP) gene of tobacco mosaic virus (TMV), using Agrobacterium-mediated transformation. Plants regenerated from the transformed cells accumulated 30-kDa MP and complemented the activity of TMV MP when infected with chimeric TMVs containing defective MP. These transgenic plants displayed stunting, pale-green leaves, and starch accumulations, indicating that TMV MP altered the carbon partitioning for leaves involved in TMV cell-to-cell movement.
Jin, Zheng-Lu,Hong, Joon-Ki,Yun, Dae-Jin,Lee, Sang-Yeol,Choi, Young-Ju,Bahk, Jeong-Dong,Roger N. Beachy,Cho, Moo-Je,Lim, Chae-Oh Plant molecular biology and biotechnology research 2002 Plant molecular biology and biotechnology research Vol.2002 No.-
Nicotiana benthamiana plants were transformed with the movement protein (MP) gene of tobacco mosaic virus (TMV), using Agrobacterium-mediated transformation. Plants regenerated from the transformed cells accumulated 30-kDa MP and complemented the activity of TMV MP when infected with chimeric TMVs containing defective MP. These transgenic plants displayed stunting, pale-green leaves, and starch accumulations, indicating that TMV MP altered the carbon partitioning for leaves involved in TMV cell-to-cell movement.