• Title/Summary/Keyword: rice cell

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Cultivation Conditions for Mass Production of an Antagonistic Bacterium Stenotrophomonas maltophilia BW-13 (길항세균 Stenotrophomonas maltophilia BW-13의 대량배양을 위한 최적 배양조건)

  • Park Jong-Young;Kim Han-Woo;Kim Hyun-Ju;Chun Ok-Ju;Jung Soon-Je;Choi Woobong;Lee Seon-Woo;Moon Byung-Ju
    • Research in Plant Disease
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    • v.11 no.2
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    • pp.158-161
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    • 2005
  • Stenotrophomonas maltophilia BW-13 is a potent biocontrol agent to control crisphead lettuce bottom rot caused by Rhizoctonia solani. To define the optimum conditions for the mass production of the S. maltophilia BW-13, we have investigated optimum culture conditions and effects of various carbon sources on the bacterial growth. The optimum initial pH and temperature were determined as pH $6.0\~7.0 and $35^{\circ}C$, respectively. For the selection of effective carbon source for the mass production, we tested the low molecular carbon sources such as sucrose, glucose, lactose, maltose, manose and the high molecular carbon source such as dough conditioner, rice bran, corn starch, sweet potato starch. As the results, the addition of dough conditioner in a basal medium ($1.25\%\;K_{2}HPO_4,\;0.38\%\;KH_{2}PO_4,\;0.01\%\;MgSO_4{\cdot}7H_{2}O,\;0.5\%\;Yeast extract$) was able to achieve higher cell density and the antifungal activity than others. Therefore, the basal medium containing $3\%$ dough conditioner (named as dough conditioner medium) was finally selected the optimized media for the mass production of BW-13 strain.

Present and prospect of plant metabolomics (식물대사체 연구의 현황과 전망)

  • Kim, Suk-Weon;Kwon, Yong-Kook;Kim, Jong-Hyun;Liu, Jang-R.
    • Journal of Plant Biotechnology
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    • v.37 no.1
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    • pp.12-24
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    • 2010
  • Plant metabolomics is a research field for identifying all of the metabolites found in a certain plant cell, tissue, organ, or whole plant in a given time and conditions and for studying changes in metabolic profiling as time goes or conditions change. Metabolomics is one of the most recently developed omics for holistic approach to biology and is a kind of systems biology. Metabolomics or metabolite fingerprinting techniques usually involves collecting spectra of crude solvent extracts without purification and separation of pure compounds or not in standardized conditions. Therefore, that requires a high degree of reproducibility, which can be achieved by using a standardized method for sample preparation and data acquisition and analysis. In plant biology, metabolomics is applied for various research fields including rapid discrimination between plant species, cultivar and GM plants, metabolic evaluation of commercial food stocks and medicinal herbs, understanding various physiological, stress responses, and determination of gene functions. Recently, plant metabolomics is applied for characterization of gene function often in combination with transcriptomics by analyzing tagged mutants of the model plants of Arabidopsis and rice. The use of plant metabolomics combined by transcriptomics in functional genomics will be the challenge for the coming year. This review paper attempted to introduce current status and prospects of plant metabolomics research.

Biofilm Differentiation and Dispersal

  • Kjelleberg, Staffan;Barraud, Nicolas;Egan, Suhelen;Ho, Wing Ka;Huynh, Trieu Tran;Klebensberger, Janosch;Koh, Kai Shyang;Lucas-Elio, Patricia;Mai-Prochnow, Anne;Marshall, Dustin J.;Matz, Carsten;McDougald, Diane;Rice, Scott A.;Sanchez-Amat, Antonio;Schleheck, David;Shahbazi, Jeyran;Steinberg, Peter D.;Tan, Chuan Hao;Thomas, Torsten;Webb, Jermy S.;Woo, Jerry K.K.
    • Proceedings of the Microbiological Society of Korea Conference
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    • 2008.05a
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    • pp.42-44
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    • 2008
  • Bacterial biofilms are analogous to multi-cellular organisms or to clonal communities of higher organisms. In this respect, it can be demonstrated that biofilms display the type of genetic variation associated with macroorganisms. The formation of genetic variants from biofilms is the result of internally produced and regulated signals and the appearance of these variants coincides with dispersal from the biofilm. Moreover, the generation of such variation, has similar outcomes for the bacterial community, where diversification of phenotypic traits ensures that the bacterial community optimizes its chances of success when dispersing or surviving when challenged with environmental stress. These observations increase the complexity with which we view bacteria and also suggest that microbial systems can serve as models for the testing of eukaryotic ecological theories.

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Quality and physicochemical characteristics of newly developed Sunsik products with germinated brown rice (발아현미 선식의 품질 및 이화학적 특성)

  • Bang, Yae-Sol;Jang, Eun Hee;Chung, Hyun-Jung
    • Korean Journal of Food Science and Technology
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    • v.49 no.5
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    • pp.513-518
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    • 2017
  • The quality and physicochemical characteristics of newly developed Sunsik products were investigated. Sunsik A, B, and C were prepared under different roasting temperatures and times (A: $220^{\circ}C$, 15 min; B: $220^{\circ}C$, 25 min; C, D, E: $230^{\circ}C$, 15 min). Sunsik D was prepared using grain flours passed through a 100 mesh screen, whereas the other products were passed through a 140 mesh screen. Sunsik E was prepared by the addition of germinated grains. The moisture content of Sunsik products ranged from 3.24-7.10%. The viscosity and sugar content ranged from 57-74 cP and $1.5-1.7^{\circ}Bx$, respectively. The pH values were similar among the samples. Sunsik D had the highest gelatinization enthalpy, whereas Sunsik C had the lowest. The viable cell counts were in the range from 3-4 log CFU/g and coliform groups were not detected. Sunsik B and E had higher scores for savory flavor and sweet taste than other Sunsik products.

Continuously Recycling Sterilization of Yakju(Rice Wine) Using Pulsed Electric Fields (고전장펄스를 이용한 약주의 연속 재순환 살균)

  • Kim, Su-Yeon;Mok, Chul-Kyoon;Pyun, Yu-Ryang
    • Korean Journal of Food Science and Technology
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    • v.31 no.2
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    • pp.410-415
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    • 1999
  • Yakju was sterilized with high-voltage pulses of short time of a continuous pulsed electric field (PEF) system. The initial microbial counts of Yakju were $2.2{\times}10^{5}$ CFU/mL for total aerobes. The pH, acidity and electric conductivity of Yakju were 3.82, 0.37% and 1.24 mS/cm, respectively. Yakju was treated with exponential-wave formed electric pulses of 100 Hz for $0{\sim}4000{\mu}s$ under the field strength of $20{\sim}35\;kV/cm$. The lethal effect of electric fields on microorganisms was resulted from the breakdown of the cell membrane induced by the transmembrane electric potential. The critical values of the external field for the sterilization were 16.0 kV/cm for total aerobes. Logarithmic survival rates decreased linearly at low electric field strength, but curvilinearly at high electric field strength with treatment time. The sterilization of Yakju was more largely affected by the electric field strength than by the treatment time. Any changes in pH, acidity, and the growth of microorganisms were not found in the PEF treated Yakju during the storage at both $4^{\circ}C\;and\;30^{\circ}C$.

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Comparisons of Food Intake Patterns and Iron Nutritional Status by Dietary Iron Density Among College Students (식사의 철분밀도에 따른 남녀 대학생의 식품섭취 패턴 및 철분 영양상태의 차이)

  • Hyeon, Tae-Seon;Yeon, Mi-Yeong;Han, Yeong-Hui;Hwang, Seok-Yeon;Gu, Hye-Jin;Kim, Seon-Yeong
    • Journal of the Korean Dietetic Association
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    • v.9 no.1
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    • pp.71-80
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    • 2003
  • Food intake patterns and iron nutritional status of male and female college students were studied based on dietary iron density. Dietary data were collected using the method of 24-hour recalls for 3 consecutive days from 106 students, and fasting blood were drawn to measure iron nutritional status indicators such as total iron binding capacity, serum iron, hematocrit, hemoglobin, and red blood cell count. Mean daily iron intakes of male and female students were 13.3㎎ and 10.0㎎, which were 107% and 63% of the RDA, respectively. However, dietary iron density were similar between male and female students as 5.9㎎/1,000㎉ and 5.7㎎/1,000㎉, respectively. The diets were divided into two groups according to iron density; high iron density group (6㎎/1,000㎉ or more) and low iron density group (less than 6㎎/1,000㎉). The students in high density group had lower intakes of energy, especially fat, than those in low density group. Female students in high density group showed significantly higher intakes of iron, and non-heme iron and folate than those of low density group. The students in high density group consumed more rice, hamburger, and eggs, while those in low density group consumed more Ra-myon and alcoholic beverages. The students in high density group consumed greater proportions of iron from plant-origin foods. Vegetables, legumes and seasonings were the food groups that female students in high density group consumed significantly more than those in low density group. Also the percentages of female students with iron deficiency were higher in low density group. These results suggest that diet with high iron density is important to improve iron nutritional status of women, and further research about the effective way to increase iron density in our diet is needed.

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Studies on the nuclear cytology of Pyricularia oryzae CAV (도열병균의 핵학적 연구)

  • Lee S. C.;Shim J. S.;Lee E. J.
    • Korean journal of applied entomology
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    • v.5_6
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    • pp.19-26
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    • 1968
  • Results obtained from the observation of 1,000 matured resting conidia of Pyricularia oryzae CAV. were as fellows. The percentage of a condium conitaining was 95.5, while that of a multinucleate conidium was 4.5. Formation of the three-celled mature conidium containing a nucleus in each cell, which was derived from the immatured conidium, could be recognized. Chromosomes could be observed in the conidium when the nuclear division took place. The number of chromosomes was n=3, 4, 5 or 6 but rile majority was 5. The nucleus was moved into the germ-tube from the conidium by following ways: (a) a resting nucleus divided into two nuclei in the conidium and one of them was moved into the germ-tube. The other nucleus remained in the conidium (43 per cent): (b) a nucleus was moved into the germ-tube from the conidium without nuclear division (57 Per cent). The appressorium without a nucleus was abundantly observed when stain was made. However, tile number of a mononucleate appressorium was 476 out of 500 appressoria which had nuclear sap. On the ground of this experiment, we could support the conidium of blast fungus contained mononucleus and also homokaryon seemed to b: appealed on the conidia even though those were multilocular. As the results, it could be concluded that use of inoculum derived from single spore isolate was reasonable for any experiments in the rice blast fungus.

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Quality Characteristics of Lotus Leaf Jeolpyun during Storage (저장기간에 따른 연잎절편의 품질 특성)

  • Han, Kee-Young;Yoon, Sook-Ja
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.36 no.12
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    • pp.1604-1611
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    • 2007
  • This study was conducted to investigate the quality characteristics of Jeolpyun prepared with different percentages of lotus leaf powder for 4 days. The moisture content of Jeolpyun without lotus leaf powder was 50.63% and those of Jeolpyun with the powder were $50.17{\sim}52.63%$ on 0 day; however, they did not show constant tendency during storage. Total cell counts of Jeolpyun with lotus leaf powder increased less than those of Jeolpyun without the powder during storage. As lotus leaf powder increased, L values of lotus leaf Jeolpyun significantly decreased and their a values significantly increased. As storage time increased, L values of lotus leaf Jeolpyun increased, and a and b values did not show constant tendency during storage. There was no difference between Jeolpyun with lotus leaf powder and Jeolpyun without the powder in hardness and chewiness on 0 day. As lotus leaf powder increased, the hardness and chewiness of lotus leaf Jeolpyun decreased after 1 day. The adhesiveness of 0% lotus leaf Jeolpyun significantly decreased after 2 days, and there was no difference in adhesiveness except for 3% lotus leaf Jeolpyun by 2 days. The springiness of 2% and 3% lotus leaf Jeolpyun was not significantly different for 4 days and the gumminess of all samples increased after 2 days. There was significant difference in cohesiveness between Jeolpyun with lotus leaf powder and Jeolpyun without on 0 day, but there was no great difference during storage. In the sensory evaluation, 2% lotus leaf Jeolpyun showed the highest preference scores; hence, 2% lotus leaf Jeolpyun prepared with 980 g rice flour, 20 g lotus leaf powder, 10 g salt and 360 g water was picked as the best.

Research on soil composition measurement sensor configuration and UI implementation (토양 성분 측정 센서 구성 및 UI 구현에 관한 연구)

  • Ye Eun Park;Jin Hyoung Jeong;Jae Hyun Jo;Young Yoon Chang;Sang Sik Lee
    • The Journal of Korea Institute of Information, Electronics, and Communication Technology
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    • v.17 no.1
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    • pp.76-81
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    • 2024
  • Recently, agricultural methods are changing from experience-based agriculture to data-based agriculture. Changes in agricultural production due to the 4th Industrial Revolution are largely occurring in three areas: smart sensing and monitoring, smart analysis and planning, and smart control. In order to realize open-field smart agriculture, information on the physical and chemical properties of soil is essential. Conventional physicochemical measurements are conducted in a laboratory after collecting samples, which consumes a lot of cost, labor, and time, so they are quickly measured in the field. Measurement technology that can do this is urgently needed. In addition, a soil analysis system that can be carried and moved by the measurer and used in Korea's rice fields, fields, and facility houses is needed. To solve this problem, our goal is to develop and commercialize software that can collect soil samples and analyze the information. In this study, basic soil composition measurement was conducted using soil composition measurement sensors consisting of hardness measurement and electrode sensors. Through future research, we plan to develop a system that applies soil sampling using a CCD camera, ultrasonic sensor, and sampler. Therefore, we implemented a sensor and soil analysis UI that can measure and analyze the soil condition in real time, such as hardness measurement display using a load cell and moisture, PH, and EC measurement display using conductivity.

Plant abscission: An age-old yet ongoing challenge in future agriculture (탈리 신호전달의 메커니즘에 대한 최신 연구동향 및 미래 농업의 적용 방안)

  • Jinsu Lee
    • Journal of Plant Biotechnology
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    • v.50
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    • pp.142-154
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    • 2023
  • Plant abscission is a natural process in which plant organs or tissues undergo detachment, a strategy selected by nature for the disposal of nonessential organs and widespread dissemination of seeds and fruits. However, from an agricultural perspective, the abscission of seeds or fruits represents a major factor that reduces crop productivity and product quality. Therefore, during the crop domestication process in traditional agriculture, mutants exhibiting suppressed abscission were selected and crossbred, thereby enabling the production of modern crop varieties such as rice, tomatoes, canola, and soybeans. These crops possess a unique trait of retaining ripe fruits or seeds in contrast to disposal via abscission. During the previous century, research on quantitative trait loci along with genetic and molecular biological studies on Arabidopsis thaliana have elucidated various cell biological mechanisms, signaling pathways, and transcription regulators involved in abscission. Additionally, it has been revealed that various hormone signals, which are involved in plant growth, play crucial roles in modulating abscission activity. Researchers have developed several chemical treatments that target these hormones and signal transduction pathways to enhance crop yields. This review aimed to introduce the previously identified signal transduction pathways and pivotal regulators implicated in abscission activity. Moreover, this review will discuss the future direction of research required to investigate crop abscission mechanisms for their potential application in smart farming and other areas of agriculture, as well as areas within model systems that require extensive research.