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    • 81. 发明授权
    • Flavonoid-3′,5′-hydroxylase gene of commelina communis
    • 黄瓜类黄酮3',5'-羟化酶基因
    • US08440879B2
    • 2013-05-14
    • US12530497
    • 2008-03-13
    • Shunji YukiSatoshi ArakiTakanori Suzuki
    • Shunji YukiSatoshi ArakiTakanori Suzuki
    • C12N15/29C12N15/82C12N5/10A01H5/00
    • C12N15/825C12N9/0073
    • To provide a highly expressed F3′5′H gene, whereby a blue moth orchid can be produced and a method using the gene for producing Orchids having blue flowers.A gene encoding a flavonoid 3′,5′-hydroxylase of Commelina communis, which has an amino acid sequence depicted in SEQ ID No: 2 or an amino acid sequence having at least 90% of homology to the amino acid sequence depicted in SEQ ID No: 2. A method for producing an orchid having a blue flower, which comprises transfecting a white moth orchid with the gene, a gene encoding a dihydroflavonol 4-reductase of Torenia or Gerbera; a gene encoding a flavanone 3-hydroxylase; and a gene encoding an anthocyanidin synthase and expressing the genes.
    • 为了提供高度表达的F3'5'H基因,由此可以产生蓝色蛾兰花,以及使用该蓝根基因的方法。 编码Commelina communis的黄酮3',5'-羟化酶的基因,其具有SEQ ID No:2所示的氨基酸序列或与SEQ ID NO:1所示氨基酸序列具有至少90%同源性的氨基酸序列 No:2.一种生产具有蓝色花的兰花的方法,其包括用该基因转染白色蛾兰,编码Torenia或非洲菊的二氢黄酮醇4-还原酶的基因; 编码黄烷酮3-羟化酶的基因; 和编码花色素合成酶并表达基因的基因。
    • 84. 发明申请
    • Mount structure of fuel injection valve and fuel injection system
    • 燃油喷射阀和燃油喷射系统的安装结构
    • US20100250100A1
    • 2010-09-30
    • US12662603
    • 2010-04-26
    • Yukio TomiitaHidekazu OomuraFumiaki AokiYoshinori YamashitaTakanori Suzuki
    • Yukio TomiitaHidekazu OomuraFumiaki AokiYoshinori YamashitaTakanori Suzuki
    • F02D41/30F02M61/14F02B3/00
    • F02M35/10177F02D41/3094F02M35/10216F02M35/1085F02M61/06F02M61/1806F02M61/1853F02M69/044
    • A combustion chamber side end portion of a fuel injection valve is placed at a location that overlaps with an imaginary plane, which is perpendicular to a center axis of a cylinder and extends along a portion of a wall surface of an intake port where an intake valve protrudes, or is projected out from the imaginary plane toward a combustion chamber. Alternatively, a center of a fuel injecting side end port of the fuel injection valve, which injects fuel into intake air that flows in a branch port branched from the intake port, may be placed on the center axis side of the intake valve in a radial direction of the cylinder. Further alternatively, an upstream side fuel injection valve may inject fuel into intake air that flows in the intake port, and a downstream side fuel injection valve may inject fuel into intake air that flows in the branch port branched from the intake port. Alternatively, an injection quantity of fuel may be controlled for each of fuel injection valves, which injects fuel into intake air that flows in the corresponding branch port branched from the intake port.
    • 燃料喷射阀的燃烧室侧端部被放置在与假想平面重叠的位置,假想平面垂直于圆筒的中心轴线并且沿进气口的壁表面的一部分延伸,进气门 从虚拟平面朝向燃烧室突出或突出。 或者,燃料喷射阀的燃料喷射侧端部的中心,其向从进气口分支的分支口流动的进气中喷射燃料,可以在进气阀的中心轴侧以径向 气缸方向。 另外,上游侧燃料喷射阀可以将燃料喷射到在进气口中流动的进气中,并且下游侧燃料喷射阀可以将燃料喷射到从进气口分支的分支口中流动的进气中。 或者,可以对于每个燃料喷射阀控制燃料喷射量,燃料喷射阀将燃料喷射到从进气口分支的相应分支口中流动的进气中。
    • 86. 发明授权
    • Electrical connector
    • 电连接器
    • US07140898B2
    • 2006-11-28
    • US11408992
    • 2006-04-24
    • Hidenori SanukiTakanori Suzuki
    • Hidenori SanukiTakanori Suzuki
    • H01R4/54
    • H01R13/502H01R9/03H01R13/52H01R13/625H01R13/6272H01R2201/26
    • The electrical connector has a main housing and a turnable member turnably supported on the main housing. The turnable member is turned to move a second connector toward the main housing from an initial mating state of the main housing with the second connector so as to completely couple the main housing with the second connector. The connector has a resilient engagement arm extended from the turnable member, a stopper projection formed in the resilient engagement arm, a guide portion formed in the main housing, and an engagement recess formed in the main housing. The stopper projection abuts against the guide portion so that the resilient engagement arm is in a yielded condition at a half-way mating state of the main housing with the second connector, while the stopper projection locks with the engagement recess by resiliency of the engagement arm when the main housing has completely coupled with the second connector. The connector has a locking arm formed in the turnable member and having an operating portion. The locking arm has resiliency to be positioned so as to bring the engagement arm in a locked state where the engagement arm is in a released condition, while the locking arm is deflected by the operating portion so as to bring the engagement arm in an unlocked state where the engagement arm can be in the yielded condition.
    • 电连接器具有主壳体和可转动构件,其可转动地支撑在主壳体上。 可转动构件被转动以使第二连接器从主壳体与第二连接器的初始配合状态朝向主壳体移动,从而将主壳体与第二连接器完全耦合。 连接器具有从可转动构件延伸的弹性接合臂,形成在弹性接合臂中的止动突起,形成在主壳体中的引导部分和形成在主壳体中的接合凹部。 止动突起抵靠引导部分,使得弹性接合臂在主壳体与第二连接器的中途配合状态下处于屈服状态,而止动器突起通过接合臂的弹性与接合凹槽锁定 当主壳体与第二连接器完全结合时。 连接器具有形成在可转动构件中并具有操作部分的锁定臂。 锁定臂具有弹性以定位成使得接合臂处于接合臂处于释放状态的锁定状态,同时锁定臂由操作部分偏转,以使接合臂处于解锁状态 其中接合臂可以处于屈服状态。