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3篇 您的检索式:作者名="Takeo kaneda"
    题名 作者 年代 出处 被引量
1用细胞融合培育胞质雄性不育水稻显示文摘为了将籼稻品种 Chinsurah Boro Ⅱ(CBⅡ)的细胞质雄性不育特性转移到粳稻品种Nipponbare中,用电融合的方法诱导碘乙酰胺失活的Nipponbare原生质体与经X-射线处理的CBII原生质体的融合。在具有二倍体染色体数目的16个融合衍生植株中,其中一个完全雄性不育,形态学上与Nipponbare一致,其雄性不育性能稳定地传递给全部回交后代,这为雄性不育的母性遗传提供了证据,而且回交后代的细胞质雄性不育性可被来源于CBⅡ的育性恢复基因Rf1以配子体遗传的方式所恢复。限制性片段和Southern lot分析揭示了雄性不育植株中存在来源于CBⅡ的线粒体质粒DNA。我们的研究表明用细胞融合把CMS转移到所需要的水稻品种中能用于未来杂交种子的生产。Junko kyozuka Takeo kaneda Ko Shimamcto 王树耀 1990杂交水稻1990,,6:1
2Insulation and body temperature of prepubescent children wearing a thermal swimsuit during moderate-intensity water exercise显示文摘Wakabayashi Hitoshi(waka_swim@ hotmail com) Kaneda Koichi Okura Masashi Nomura Takeo 2007Journal of Physiological Anthropology2007,26,2:1
3Ozone electrogeneration on Pt-TaO_y sol-gel film modified titanium electrode: Effect of electrode composition on the electrocatalytic activity显示文摘This work examines the ozone electrogeneration(OE) at a binary coating of different nominal compositions(Pt)x-(TaOy)(100-x), where x(percentage in the precursor solution) varied between 1% and 100%, coated on titanium substrate prepared by a sol-gel technique. TheOE is performed in an artificial tap water at room temperature(25C). The percentages of Pt and TaOy in the coating significantly affect the electrocatalytic activity towards oxygen evolution. The oxygen evolution was retarded to a different extent based on the electrode composition. The largest retardation was obtained at the(Pt)10-(TaOy)90 electrode(ca. 480 m V positive shift) as compared with the(Pt)100-(TaOy)0 electrode.This was reflected in a high current efficiency(CE) ofOE(ca. 19.3%) at the former electrode. This value is considered to be among the highest values reported forOE at 25C in neutral media. The composite electrodes were characterized by voltammetric and surface techniques. A plausible explanation for the change of the efficiency ofOE with the electrode composition is given based on the electrochemical results.Mohamed I. Awad Shunsuke Sata Kazuhiro Kaneda Mineo Ikematsu Takeo Ohsaka 2015Journal of Energy Chemistry2015,24,2:0
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