Abstract:
본 발명은 백색미와 프로안토시아니딘계 색소를 종피에 함유하는 유색미의 현미 종피색을 판별하기 위한 프라이머 세트, 상기 프라이머 세트를 포함하는 백색미와 프로안토시아니딘계 색소를 종피에 함유하는 유색미의 현미 종피색을 판별하기 위한 키트 및 상기 프라이머 세트를 이용하여 증폭 반응을 수행함으로써 백색미와 프로안토시아니딘계 색소를 종피에 함유하는 유색미의 현미 종피색을 판별하는 방법을 제공한다. 본 발명의 프라이머 세트를 사용하면 영양생장 후 출수 및 등숙이 이루어진 이후에 종피의 색을 확인할 수 있는 기존의 선발방법에 비해 유색미 판별을 유묘상태에서 가능하게 해주며, 또한 형질의 동형/이형 판별을 가능케 하여 유색미의 조기선발 및 최소자원을 활용한 육종효율을 증진시키는 장점이 있다
Abstract:
The present invention relates to a method for manufacturing rice crepe, and more specifically, to a method for manufacturing rice crepe using the mixture of rice and tapioca starch instead of wheat flour. The method for manufacturing rice crepe according to one embodiment of the present invention includes a step of immersing rice into water, a step of crushing the immersed rice and obtaining rice powder, a step of obtaining dough by mixing the rice powder with the tapioca starch and adding water and salt, and a step of steaming the dough.
Abstract:
PURPOSE: A biodegradable plant propagation multi-pot is provided to have moderate strength for plant propagation, and to improve sterilization ability, deodorant ability and heterogeneity, and to be naturally degradable in soil. CONSTITUTION: An environment-friendly composition for plant propagation comprises 30-60 weight% of rice chaff, 5-15 weight% of rice bran, 5-15 weight% of starch, 5-10 weight% of urea, 1-10 weight% of titanium powder, and 20-30 weight% of water. A manufacturing method thereof comprises: a step of crushing the rice chaff and the rice bran by using a pulverizer; a step of forming a composition for plant propagation by using the crushed rice chaff and the rice bran; a step of mixing the composition for plant propagation for 10-20 minutes; and a step of molding the composition by heating and pressurizing.
Abstract:
PURPOSE: A non-destructive analysis method is provided to effectively analyze ingredient consisting of fatty acid of a grain. CONSTITUTION: A non-destructive analysis method for a fatty acid composition of a single granule comprises: a step of randomly selecting a plurality of prediction model development group and prediction model evaluation group; a step of measuring near infrared absorption spectrum of two groups; a step of randomly selecting grain granule sample among the prediction model development groups and measuring near infrared ray absorption spectrum; a step of pulverizing the granule sample and performing chemical analysis of fatty acid ingredients; and a step of applying primary and secondary derivatives to the absorption spectrum.