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    • 11. 发明申请
    • ENVIRONMENTAL STRESS RESPONSIVE PROMOTER AND METHOD OF TISSUE-SPECIFIC GENE EXPRESSION USING THE SAME
    • 环境应激反应促进剂及使用其组织特异性基因表达的方法
    • US20090282582A1
    • 2009-11-12
    • US12311900
    • 2007-10-19
    • Motoaki SekiJong-Myong KimKazuo ShinozakiMiki Fujita
    • Motoaki SekiJong-Myong KimKazuo ShinozakiMiki Fujita
    • C12N15/82C07H21/04C12N15/63A01H5/00C12N5/10
    • C07K14/415C12N15/8237
    • This invention concerns induction of gene expression specifically in given tissue with the use of a novel promoter that has environmental stress responsiveness and functions specifically in given tissue. It is realized by a method comprising: a step of preparing a plant having an arbitrary gene downstream of the environmental stress responsive promoter comprising DNA (a), (b), or (c) below; (a) DNA comprising the nucleotide sequence as shown in any of SEQ ID NO: 1 to 8; (b) DNA comprising a nucleotide sequence derived from the nucleotide sequence as shown in any of SEQ ID NO: 1 to 8 by deletion, substitution, or addition of one or a plurality of nucleotides and functioning as an environmental stress responsive promoter; or (c) DNA hybridizing under stringent conditions to DNA comprising the nucleotide sequence as shown in any of SEQ ID NO: 1 to 8 and functioning as an environmental stress responsive promoter; and a step of cultivating the plant in the presence of environmental stress, the method comprising inducing expression of the gene located downstream of the environmental stress responsive promoter in a tissue-specific manner.
    • 本发明涉及使用具有环境应激反应性和特定于给定组织中功能的新型启动子来特异性诱导给定组织中的基因表达。 通过以下方法实现:包括下述DNA(a),(b)或(c)的环境胁迫响应启动子下游具有任意基因的植物的步骤; (a)包含SEQ ID NO:1至8中任一个所示的核苷酸序列的DNA; (b)通过缺失,取代或添加一个或多个核苷酸并起到环境应激反应启动子的作用,其包含衍生自SEQ ID NO:1至8中任一项所示核苷酸序列的核苷酸序列的DNA; 或(c)在严格条件下与包含SEQ ID NO:1至8中任一所示的核苷酸序列的DNA杂交并用作环境胁迫响应启动子的DNA的DNA; 以及在存在环境胁迫的情况下培育植物的步骤,所述方法包括以组织特异性方式诱导位于环境胁迫响应启动子下游的基因的表达。
    • 15. 发明授权
    • Aluminum nitride sintered body and process for producing the same
    • 氮化铝烧结体及其制造方法
    • US4746637A
    • 1988-05-24
    • US760772
    • 1985-07-31
    • Mituo KasoriKazuo ShinozakiKazuo AnzaiAkihiko Tsuge
    • Mituo KasoriKazuo ShinozakiKazuo AnzaiAkihiko Tsuge
    • C04B35/581C04B35/58
    • C04B35/581
    • Disclosed are an aluminum nitride sintered body comprising aluminum nitride, rare earth element-aluminum compounds and alkaline earth metal-aluminum compounds, and a process for producing an aluminum nitride sintered body, which comprises adding to aluminum nitride powder:(a) powder of at least one compound selected from the group consisting of rare earth element oxides, rare earth element fluorides and compounds capable of being converted into these oxides or fluorides by calcination, and(b) powder of at least one compound selected from the group consisting of alkaline earth metal oxides, alkali earth metal fluorides and compounds capable of being converted into these oxides or fluorides by calcination, in a total amount of 0.01 to 20 wt % as calculated on the weight of the oxides or the fluorides, and then molding and sintering the resultant mixture.
    • 公开了一种包含氮化铝,稀土元素 - 铝化合物和碱土金属 - 铝化合物的氮化铝烧结体,以及一种制造氮化铝烧结体的方法,其包括向氮化铝粉末中加入:(a) 选自稀土元素氧化物,稀土元素氟化物和能够通过煅烧转化为这些氧化物或氟化物的化合物中的至少一种化合物,和(b)至少一种选自碱土金属的化合物的粉末 金属氧化物,碱土金属氟化物和能够通过煅烧转化为这些氧化物或氟化物的化合物,其总量按照氧化物或氟化物的重量计算为0.01〜20重量%,然后成型和烧结所得物 混合物。
    • 18. 发明申请
    • Plant having tolerance to environmental stress
    • 植物对环境胁迫具有耐受性
    • US20050214808A1
    • 2005-09-29
    • US10994235
    • 2004-11-23
    • Taishi UmezawaKazuo Shinozaki
    • Taishi UmezawaKazuo Shinozaki
    • A01H5/00C07H21/04C12N9/12C12N15/09C12N15/82C12Q1/68
    • C12N15/8273C12N9/12C12N15/8271
    • This invention provides a stress tolerant transgenic plant with the utilization of a signal transduction factor located upstream of the gene group associated with environmental responses. This invention provides a gene encoding the following protein (a) or (b) and a stress tolerant transgenic plant to which such gene has been introduced: (a) a protein consisting of the amino acid sequence as shown in SEQ ID NO: 2 in the Sequence Listing; or (b) a protein consisting of an amino acid sequence derived from the amino acid sequence as shown in SEQ ID NO: 2 in the Sequence Listing by deletion, substitution, or addition of one or several amino acid residues and having activity of inducing expression of stress responsive transcription factors and activity of protein kinase.
    • 本发明提供了一种利用位于与环境反应相关的基因组上游的信号转导因子的胁迫耐受转基因植物。 本发明提供了编码以下蛋白质(a)或(b)的基因和已经引入该基因的胁迫耐受转基因植物:(a)由SEQ ID NO:2所示的氨基酸序列组成的蛋白质 序列表; 或(b)由序列表中SEQ ID NO:2所示的氨基酸序列的氨基酸序列组成的蛋白质,通过缺失,取代或添加一个或几个氨基酸残基并具有诱导表达的活性 的应激反应转录因子和蛋白激酶的活性。
    • 20. 发明授权
    • AlN sintered body having high thermal conductivity and a method of
fabricating the same
    • 具有高导热性的AlN烧结体及其制造方法
    • US4847221A
    • 1989-07-11
    • US142818
    • 1988-01-11
    • Akihiro HoriguchiFumio UenoMitsuo KasoriYoshiko SatoMasaru HayashiHiroshi EndoKazuo ShinozakiAkihiko Tsuge
    • Akihiro HoriguchiFumio UenoMitsuo KasoriYoshiko SatoMasaru HayashiHiroshi EndoKazuo ShinozakiAkihiko Tsuge
    • C04B35/581
    • C04B35/581
    • According to the present invention, there is provided an aluminum nitride sintered body having a high thermal conductivity and essentially consisting of a AlN single-phase, containing 0.01 to 8,000 ppm of rare earth elements and less than 2,000 ppm of oxygen. According to the present invention, there is provided a method of fabricating an aluminum nitride sintered body having a high thermal conductivity and essentially consisting of AlN single-phase, containing 0.01 to 8,000 ppm of rare earth elements and less than 2,000 ppm of oxygen, wherein a molded body prepared by mixing and molding an aluminum nitride power having less than 7 wt % of oxygen and an average particle size of 0.05 to 5 .mu.m and with rare earth compounds of 0.01 to 15 wt % of based on rare earth elements content, or a sintered AlN body containing oxide grain boundary phases of 0.01 to 15 wt % of rare earth elements and 0.01 to 20 wt % of oxygen and (rare earth element)--Al--O compounds phases and/or (rare earth element)--O compounds phases, is fired in a reducing atmosphere at a temperature of 1,550 to 2,050.degree. C. for 4 hours or more.
    • 根据本发明,提供了一种具有高导热性且基本上由含有0.01至8,000ppm的稀土元素和小于2,000ppm的氧的AlN单相组成的氮化铝烧结体。 根据本发明,提供一种制造具有高导热性且基本由AlN单相组成的氮化铝烧结体的方法,该AlN单相含有0.01至8,000ppm的稀土元素和小于2,000ppm的氧,其中 通过将少于7重量%的氧和平均粒径为0.05〜5μm的氮化铝粉末和基于稀土元素含量为0.01〜15重量%的稀土类化合物混合成型而制备的成型体, 或含有0.01〜15重量%的稀土元素和0.01〜20重量%的氧和(稀土元素)-Al-O化合物相和/或(稀土元素)-Oi的氧化物晶界相的烧结AlN体 化合物相在1550〜2050℃的温度下在还原气氛中烧成4小时以上。