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    • 104. 发明申请
    • PLANT CAPABLE OF BEARING SEEDLESS FRUITS AND METHOD OF PRODUCING VARIETY BEARING SEEDLESS FRUIT
    • 承载无籽水果的植物和生产各种不同种子的无糖水果的方法
    • US20100333228A1
    • 2010-12-30
    • US12865962
    • 2009-01-28
    • Takeshi Shirai
    • Takeshi Shirai
    • A01H1/02A01H5/00A01H5/08
    • A01H1/02A01H5/08
    • Provided are a plant capable of bearing seedless fruits stably over several generations, a seedless fruit generated from this plant, a method of producing a variety capable of readily and reliably bearing seedless fruits, a variety produced by this production method, and a seedless fruit generated from the thus produced variety. Particularly provided is a plant capable of bearing seedless fruits, wherein the plant is obtained by a crossing method comprising a step (a) of selecting a first filial generation plant which is capable of bearing seedless fruits as well as having a male sterile trait and a parthenocarpic trait from the group of first filial generation plants generated by crossing between a plant of a male sterile line and a plant of a parthenocarpic line, and a step (b) of crossing the thus selected first filial generation plant with a plant of a fixed line which is capable of sustaining the parthenocarpic trait and the male sterile trait of the plant, as a pollen parent, to thereby generate a progeny plant having the parthenocarpic trait and the male sterile trait.
    • 提供能够稳定地承载几代的无籽果实的植物,从该植物产生的无籽果实,能够容易且可靠地携带无核果实的品种的方法,通过该生产方法产生的品种和产生的无籽果实 从这样生产的品种。 特别提供能够承载无籽果实的植物,其中通过交叉方法获得植物,所述交叉方法包括步骤(a):选择能够携带无核果实的第一代子代植物以及具有雄性无性状和 通过在雄性不育系的植物和单性结皮线的植物之间杂交而产生的第一代子代植物群的单性结实性状和将这样选择的第一代子代植物与固定的植物杂交的步骤(b) 其能够维持植物的单性结实性和雄性不育性状,作为花粉亲本,从而产生具有单性结实性状和雄性不育性状的后代植物。
    • 107. 发明申请
    • METHOD OF PRODUCING RECOMBINANT PROTEIN
    • 生产重组蛋白的方法
    • US20090233332A1
    • 2009-09-17
    • US12090022
    • 2006-09-26
    • Hiroshi ShojiToshikazu Sugimoto
    • Hiroshi ShojiToshikazu Sugimoto
    • C12P21/06
    • C12N1/14C12N15/80C12P21/02
    • An object of the present invention is to provide a method of mass-producing recombinant protein by the liquid culture method with koji molds as host. According to the present invention, it is provided a method of producing recombinant protein by using the recombinant koji molds which are obtained by transforming koji molds as host comprising: culturing the recombinant koji molds in a liquid medium which contains as culture raw material at least one selected from the group consisting of the cereal of which surface is entirely or partly covered with at least husks, the bean and/or the tuber of which surface is covered with hulls and the amaranthus and/or the quinoa without pre-treatment such as grinding or crushing; and collecting the recombinant protein from the culture product.
    • 本发明的目的是提供一种通过液体培养法以曲霉为主体大量生产重组蛋白的方法。 根据本发明,提供了通过使用通过转化曲霉作为宿主获得的重组曲霉菌来制备重组蛋白的方法,包括:将重组曲霉菌在含有作为培养原料的液体培养基中培养至少一种 选自由表面完全或部分地被至少外壳覆盖的谷物组成的组,其中表面被壳体覆盖的豆和/或块茎,苋菜和/或藜麦没有预处理如研磨 或破碎 并从培养产物中收集重组蛋白。
    • 110. 发明授权
    • Refrigeration system consisting of a plurality of refrigerating cycles
    • 由多个制冷循环组成的制冷系统
    • US5347831A
    • 1994-09-20
    • US077071
    • 1993-06-16
    • Masaru KitaguchiShigeru Sakashita
    • Masaru KitaguchiShigeru Sakashita
    • F25B1/00F25B5/04F25B1/10
    • F25B1/00F25B2400/06F25B2400/075Y10S62/02
    • The present inventions are intended to improve heat efficiency of a refrigeration system having plural refrigerating cycles of different evaporating or condensing temperatures typically used in breweries. Each of main lines of different evaporating temperatures are connected with each of suction lines to a compressor respectively, to enable the system to save energy and to establish a back-up system of compressors. A different condensing temperature system having a common refrigerant source is provided with refrigerant transferring means to transfer refrigerant from an refrigerant excess cycle to an refrigerant insufficiency cycle. The refrigerating cycles are arranged in parallel and the evaporators are connected to form a liquid path, through which a liquid stream flows in series to be chilled in the evaporators as well as to form a refrigerant path for a refrigerant stream of each refrigerating cycle, individually, and further are arranged in order from a high evaporating temperature of refrigerant to low one along the liquid path from the upstream to the downstream.
    • 本发明旨在提高具有通常用于啤酒厂的不同蒸发或冷凝温度的多个制冷循环的制冷系统的热效率。 每个不同蒸发温度的主干线分别与每个吸入管线连接到压缩机,以使系统能够节省能量并建立压缩机的备用系统。 具有公共制冷剂源的不同的冷凝温度系统设置有制冷剂转移装置,以将制冷剂从制冷剂过剩循环传递到制冷剂不足循环。 制冷循环平行布置,并且蒸发器连接以形成液体流道,液体流串联流动以在蒸发器中冷却,并且分别形成用于每个制冷循环的制冷剂流的制冷剂路径 并且还从从上游到下游的液体路径从制冷剂的高蒸发温度到低温的顺序排列。