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    • 1. 发明授权
    • 노지재배용 부추 신품종 식물
    • 노지재배용부추신품종식물
    • KR100470451B1
    • 2005-02-05
    • KR1020020015751
    • 2002-03-22
    • 대한민국(농촌진흥청장)
    • 김병주정찬식권일찬오기원곽용호문헌팔
    • A01H1/02
    • PURPOSE: A Chinese chive variety for bare ground cultivation is provided, which Chinese chive variety can pass the winter in the bare ground without damage. CONSTITUTION: A Chinese chive variety for bare ground cultivation is prepared by crossbreeding YCA 9 as a mother plant with greenbelt as a father plant using apomixis, wherein the Chinese chive variety has deep dormancy, weak low temperature extension, and perpendicular type grass as ecological characteristics, and 36.7±5cm of grass length, 5.5±1.0mm of leaf width, 8.0±1.0 of tillering number, deep green of leaf color, 58.7±10cm of flower stalk length, 81±10 of flower number per a flower stalk, brown of stamen color, and white with small yellow and brown line of flower color as morphological characteristics.
    • 目的:提供一种用于裸露地面栽培的中国韭菜品种,这种中国韭菜品种可以在光秃秃的地面过冬而不受损害。 本发明的目的在于提供一种用于裸地栽培的中国韭菜品种,其通过使用无融合生殖将YCA9作为母本植物以绿地作为父本进行杂交,其中中国韭品种具有深度休眠,弱低温延伸和垂直型草作为生态特征 ,和36.7±5cm;草长5cm,5.5mm;叶宽1.0mm,8.0±1.0mm;分蘖数1.0,叶色深绿,58.7±10mn;花梗长10cm, 81& 10;每花苞花数10个,雄蕊色棕色,白色,花色小黄褐色线为形态特征。
    • 3. 发明公开
    • 팽화유색현미를 이용한 유색술 및 그의 제조방법
    • 使用膨化彩色糙米及其制造方法着色
    • KR1019970074920A
    • 1997-12-10
    • KR1019960018281
    • 1996-05-28
    • 대한민국(농촌진흥청장)
    • 김태영윤인화허한순문헌팔김윤선
    • C12G3/02
    • 본 발명은 주조과정 중 효소의 작용을 도와 신속한 발효가 가능하도록 한 팽화유색현미를 이용하여, 일반대중이 알콜기호음료로서 상용하기 쉬우며, 유색현미의 영양학적 기능성과 색소특성 및 기호성이 증진된 유색현미 약, 탁주를 간편하게 제조하는 방버에 관한 것이다. 본 발명의 팽화유색 현미를 이용한 유색술의 제조방법은, 유색현미와 일반미를 혼합하고 팽화압출시켜 α화시킨 팽화유색현미에 곡자추출물과 효모를 첨가하여 활성화시킨 다음, 가수하여 구연산을 용해시킨 후, 고르게 혼합하여 1단 발효하고, 발효가 완료되면 1단 발효물에 다시 팽화유색현미 및 곡자추출물을 첨가하고 2단 발효시키는 단계를 포함한다. 본 발명의 팽화유색현미를 이용한 유색술의 제조방법에 의하면, 발효기간이 짧아 제조공정이 종래의 여러 방법에 비해 간단하며, 수침 및 증자를 위한 시설 및 인력의 낭비를 방지할 수 있고, 유색현미를 사용하여 일반대중이 알콜기호음료로서 상용하기 쉬우며, 유색현미의 영양학적 기능성과 색소특성 및 기호성이 증진된 고부가가치의 유색현미 약, 탁주를 제조할 수 있다.
    • 4. 发明授权
    • 동계 시설재배용 부추 신품종 식물
    • 동계시설재배용부추신품종식물
    • KR100470449B1
    • 2005-02-05
    • KR1020020015749
    • 2002-03-22
    • 대한민국(농촌진흥청장)
    • 김병주정찬식권일찬오기원곽용호김수동문헌팔
    • A01H1/02
    • PURPOSE: A Chinese chive variety for protected cultivation in winter is provided, which Chinese chive variety has thicker leaves, lighter colored leaves and stronger growth activity than the prior variety. CONSTITUTION: A Chinese chive variety for protected cultivation in winter is prepared by crossbreeding YCA15 as a mother plant with greenbelt as a father plant using apomixis, wherein the Chinese chive variety has shallow dormancy and strong low temperature extension as ecological characteristics, and 35.4±5cm of grass length, 7.4±1.0mm of leaf width, 5.0±1.0 of tillering number, bright green(10GY) of leaf color, 76.5±10cm of flower stalk length, 88±10 of flower number per a flower stalk, yellow of stamen color, and white of flower color as morphological characteristics.
    • 用途:提供冬季保护性栽培的中国韭菜品种,中国韭菜品种的叶片较厚,叶色较浅,生长活力较先前品种强。 一种冬季保护性栽培的中国韭菜品种,通过无融合生殖将YCA15母本植物与绿地作为父本杂交,其中中国韭菜品种具有浅的休眠和强烈的低温延伸作为生态特征,并且35.4& 5cm草长7.4英寸;叶宽1.0mm,5.0±1.0;分蘖数1.0,叶色鲜绿(10GY),76.5& plusmn;花梗长10cm,88& 每花秆花数10个,雄蕊色黄色,花色白色为形态特征。
    • 5. 发明授权
    • 방울비짜루(남옥대)로부터 분리한 신규 항암활성 화합물 및 그 정제방법
    • 방울비짜루(남옥대)리한신규항암활성화합물및그정제방
    • KR100458003B1
    • 2004-11-18
    • KR1020020029247
    • 2002-05-27
    • 대한민국(농촌진흥청장)
    • 김금숙김현태성재덕임건재이정옥곽용호문헌팔
    • C07H15/04
    • PURPOSE: An anticancer compound isolated from Asparagus oligoclonos Maxim. and a purification method thereof are provided. The isolated compound has improved anticancer activity. CONSTITUTION: An anticancer compound is isolated from Asparagus oligoclonos Maxim, and includes (25S)-5β-spirostan-3β, 17α-diol-3-0-β- D-xylopyranosyl-(1→2)- £α -L-rhamnopyranosyl-(1→4)|-β- D-glucopyranoside represented by formula 1. A method for extracting the anticancer compound of the formula 1 comprises the steps of: repeatedly extracting Asparagus oligoclonos Maxim. using an organic solvent, followed by solvent-distribution; and subjecting the extract of Asparagus oligoclonos Maxim. to chromatography.
    • 目的:从芦笋oligoclonos Maxim分离的抗癌化合物。 及其净化方法。 分离的化合物具有改善的抗癌活性。 组成:抗癌化合物是从芦笋中分离得到的,并且包括(25S)-5β-螺甾烷-3β,17β-二醇-3-0-β-D-吡喃木糖基 - (1& 2) - & alpha;& alpha; -L-鼠李吡喃糖基 - (1→4)|β-D-吡喃葡萄糖苷的制备方法。提取式1抗癌化合物的方法包括以下步骤:反复提取芦笋oligoclonos Maxim。 使用有机溶剂,接着进行溶剂分配; 并对芦笋oligoclonos Maxim提取物进行处理。 进行层析。
    • 6. 发明授权
    • 품종판별을 위한 마이크로새틀라이트 마커조합
    • 품종을위제한마이드로새틀라이트마커조합
    • KR100453568B1
    • 2004-10-20
    • KR1020010034003
    • 2001-06-15
    • 대한민국(농촌진흥청장)
    • 최해춘황흥구김연규홍하철권수진문헌팔안상낙
    • C12Q1/68
    • PURPOSE: Provided are a microsatellite DNA marker combination for classification of rice varieties and specific code numbers given thereby, therefore each of 148 kinds of Korean rice has a specific code number, so that the Korean rice can be easily classified. CONSTITUTION: The microsatellite DNA marker combination for classification of rice varieties consists of six(6) microsatellite DNA markers of RM48, RM249, RM209, RM70, RM257 and OSR20, wherein they are positioned at the 2nd, 5th, 6th, 7th, 9th and 12th sites in a rice chromosome, respectively, and have their own numbers of two digits according to each PCR amplified allele. Each variety of the rice is given code number of 11 digits by combination of the 6 microsatellite markers according to chromosome numbers; and the microsatellite DNA markers are selected by using PCR amplification and 4% acrylamide electrophoresis.
    • 目的:提供了用于水稻品种分类的微卫星DNA标记组合和由此给出的具体代码编号,因此148种韩国稻米中的每种具有特定的代码编号,从而韩国稻米可以容易地分类。 构成:用于水稻品种分类的微卫星DNA标记组合由RM48,RM249,RM209,RM70,RM257和OSR20六个(6)微卫星DNA标记组成,分别位于第2,5,6,7,9和 根据每个PCR扩增的等位基因分别具有它们自己的两位数。 根据染色体数目,通过6个微卫星标记的组合给每个品种的11个数字编码; 通过PCR扩增和4%丙烯酰胺电泳筛选微卫星DNA标记。
    • 7. 发明授权
    • 근적외선 흡수스펙트럼을 이용한 곡물 1립 비파괴 분석방법
    • 근적외선흡수스펙트럼을이용한곡물1립파괴괴방법법
    • KR100433263B1
    • 2004-05-31
    • KR1020010044760
    • 2001-07-25
    • 대한민국(농촌진흥청장)
    • 정명근백인열강성택한원영신두철곽용호문헌팔
    • G01N21/359
    • PURPOSE: A method for non-destructive analysis of one seed grain by near infrared ray absorption spectrum is provided to precisely analyze the components and characteristics of one seed grain in a short time without using any additional chemical analysis equipments. CONSTITUTION: A method for non-destructive analysis of one seed grain by near infrared ray absorption spectrum includes the steps of measuring near infrared ray absorption spectrums(400-2500mm) of 30-100 seeds of selected grain samples by a horizontal manual module, correcting absorbancy per wavelength measured by 30-100 grains respectively with a single average absorption spectrum per wavelength, randomly distinguishing 150 averaged absorption spectrum into about 100 estimation model developing models and about 50 estimation model testing models, correcting the uniformity of the samples by using a sieve of 60 mesh after preparing powdered samples, testing the moisture content of the powdered samples by drying for 2 hours in a drier of 105°C, precisely carrying out chemical analysis of contents of components such as protein and fat contained in the powdered samples twice or more, removing samples of which a difference in the chemical analysis is beyond a range of 0.2-0.4% from the models, inserting real component contents of which moisture contents are corrected into the measured average absorption spectrum, carrying out the statistic analysis for setting optimum estimation models for the respective components, and selecting the optimum estimation models by discriminating the precision of the estimation models.
    • 目的:提供一种通过近红外线吸收光谱对一粒种子进行无损分析的方法,可在短时间内精确分析一粒种子的成分和特性,而无需使用任何额外的化学分析设备。 本发明涉及一种用近红外线吸收光谱对一粒种子进行无损分析的方法,它包括以下步骤:通过水平手动模块测量30-100粒种子的选定颗粒样品的近红外线吸收光谱(400-2500mm),校正 每个波长的吸光度分别用每个波长的单个平均吸收光谱测量30-100个颗粒,随机区分150个平均吸收光谱为约100个估计模型开发模型和约50个估计模型测试模型,使用筛子校正样品的均匀性 制备粉末样品后,通过在105℃干燥器中干燥2小时测试粉末样品的含水量,精确地对粉末样品中含有的蛋白质和脂肪等组分的含量进行化学分析 两次或更多次,从化学分析的差异超过0.2-0.4%的范围内移除样品 将其中含水量被修正的实际成分含量插入到测量的平均吸收光谱中,进行统计分析以设置各个成分的最佳估计模型,并通过区分估计模型的精度来选择最佳估计模型。
    • 8. 发明公开
    • 봄철 하우스재배용 부추 신품종 식물
    • 用于保护春季保养的中国菜肴
    • KR1020030076089A
    • 2003-09-26
    • KR1020020015750
    • 2002-03-22
    • 대한민국(농촌진흥청장)
    • 김병주정찬식권일찬오기원곽용호신두철문헌팔
    • A01H1/02
    • A01H5/12A01H1/02
    • PURPOSE: A Chinese chive variety for protected cultivation in spring is provided, which Chinese chive variety can grow rapidly in spring. CONSTITUTION: A Chinese chive variety for protected cultivation in spring is prepared by crossbreeding YCA 15 as a mother plant with YCA 6 as a father plant using apomixis, wherein the Chinese chive variety has medium dormancy and medium low temperature extension as ecological characteristics, and 28.0±5cm of grass length, 4.9±1.0mm of leaf width, 11.1±2.0 of tillering number, bright green(10GY) of leaf color, 51.9±10cm of flower stalk length, 36±10 of flower number per a flower stalk, yellow(10Y) of stamen color, and white of flower color as morphological characteristics.
    • 目的:提供春季保护性种植的中国韭菜品种,春季可以快速增长。 规定:春季保护性种植的中国韭菜品种通过杂交育种YCA 15作为母本植物,以YCA 6作为父母植物,使用无剪切异体,其中韭菜品种具有中等休眠和中等低温延伸作为生态特征,28.0 草长±5cm,叶宽4.9±1.0mm,分蘖数为11.1±2.0,叶色明亮绿(10GY),花茎长51.9±10cm,花茎数36±10,黄花 (10Y)雄蕊颜色,白色花色为形态特征。
    • 9. 发明公开
    • 품종판별을 위한 코드화 방법
    • 用于编排作品以分类其变体的方法
    • KR1020020095793A
    • 2002-12-28
    • KR1020010034002
    • 2001-06-15
    • 대한민국(농촌진흥청장)
    • 최해춘황흥구권수진문헌팔
    • C12Q1/68
    • PURPOSE: Provided is a method for coding crops to classify their own variety and to give a coding number to each crop. CONSTITUTION: The method for coding crops to classify varieties thereof comprises the steps of: subjecting DNA markers to PCR amplification, 4% acrylamide gel electrophoresis and silver staining(S100); analyzing each bend pattern for each variety of crops(S200); giving the specific code number of 2 digits to the each variety for each DNA marker according to analysis of the bend pattern(S300); and sequentially giving the specific code numbers to crops according to the order of chromosomes using the numbers given above according to the order of DNA markers present in a chromosome of the plant.
    • 目的:提供编码作物以分类自己的品种并给每个作物编码的方法。 构成:将作物分类为品种的方法包括以下步骤:使DNA标记物进行PCR扩增,4%丙烯酰胺凝胶电泳和银染(S100); 分析每种作物的每种弯曲图案(S200); 根据弯曲图案的分析给出每个DNA标记的每个品种的2位数的特定代码号(S300); 并依照染色体的顺序依次按照染色体染色体中存在的DNA标记的顺序,给出上述给出的编号。