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Featured researches published by Keisuke Kasaoka.


Plant Cell Tissue and Organ Culture | 2006

Improved frequency of transformation in rice and maize by treatment of immature embryos with centrifugation and heat prior to infection with Agrobacterium tumefaciens

Yukoh Hiei; Yuji Ishida; Keisuke Kasaoka; Toshihiko Komari

The efficiency of transformation was improved by treating immature embryos with heat and centrifugation before infection with Agrobacterium tumefaciens in rice and maize. Because the effects were detected both in the levels of transgene expression after co-cultivation and in the number of independent transgenic plants obtained per embryo, conditions were first optimized based on the transgene expression, and then transformants were produced. The optimal conditions varied considerably depending on species and genotypes, but reasonably good parameters were identified for Japonica rice, Indica rice or maize. As a general tendency, the effect of centrifugation was greater than that of heat in Japonica rice, whereas that of heat was greater than that of centrifugation in Indica rice and maize A188, and the combination of the treatments was the most effective in all of the genotypes tested. The frequency of transformation was improved several fold in rice and maize. In addition, transformation of certain genotypes of maize, which were not transformable before, and transformation of maize with a less efficient vector, which could not transform maize before, became possible by these pre-treatments. In the highest case, 18 independent transgenic plants were obtained from a single immature embryo of Japonica rice. Although nothing is known about the mechanism, these pre-treatments seemed to render cells of rice and maize more competent for transformation mediated by A. tumefaciens.


Archive | 1996

Cold-inducible promoter sequences

Toshiki Mine; Akio Ohyama; Tooru Hiyoshi; Keisuke Kasaoka


Plant Science | 2006

Carbon metabolism in transgenic rice plants that express phosphoenolpyruvate carboxylase and/or phosphoenolpyruvate carboxykinase

Shoichi Suzuki; Nobuhiko Murai; Keisuke Kasaoka; Toru Hiyoshi; Hidemasa Imaseki; James N. Burnell; Masao Arai


Archive | 2000

Method of improving gene transfer efficiency into plant cells

Yukoh Hiei; Keisuke Kasaoka; Yuji Ishida


Plant and Cell Physiology | 2003

CIP353 Encodes an AP2/ERF-Domain Protein in Potato (Solanum tuberosum L.) and Responds Slowly to Cold Stress

Toshiki Mine; Toru Hiyoshi; Keisuke Kasaoka; Akio Ohyama


Archive | 1998

Method for selecting transformed cells

Toshihiko Komari; Yukoh Hiei; Keisuke Kasaoka


Archive | 1994

DNA encoding ATP-dependent fructose 6-phosphate 1-phosphotransferase originating from plant, recombinant vector containing the same and method for changing sugar content in plant cells under low temperature

Toru Hiyoshi; Toshiki Mine; Keisuke Kasaoka; Robert Huw Tyson; Anthony Miles John Page


Archive | 2010

Method for promoting efficiency of gene introduction into plant cells

Yukoh Hiei; Keisuke Kasaoka; Yuji Ishida


Archive | 2000

Method of improving gene transfer efficiency into plant cells utilizing heat and centrifugation

Yukoh Hiei; Keisuke Kasaoka; Yuji Ishida


Archive | 1993

Recombinant vector, method for giving immunity against PVY-T to potato plant, and potato plant having immunity against PVY-T

Keisuke Kasaoka; Naoto Kadotani; Shigeru Kuwata; Yumiko Hayashi

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Akio Ohyama

National Agriculture and Food Research Organization

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