• 제목/요약/키워드: food supply status

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Enzymes involved in folate metabolism and its implication for cancer treatment

  • Kim, Sung-Eun
    • Nutrition Research and Practice
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    • 제14권2호
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    • pp.95-101
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    • 2020
  • BACKGROUND/OBJECTIVES: Folate plays a critical role in DNA synthesis and methylation. Intracellular folate homeostasis is maintained by the enzymes folylpolyglutamate synthase (FPGS) and γ-glutamyl hydrolase (GGH). FPGS adds glutamate residues to folate upon its entry into the cell through a process known as polyglutamylation to enhance folate retention in the cell and to maintain a steady supply of utilizable folate derivatives for folate-dependent enzyme reactions. Thereafter, GGH catalyzes the hydrolysis of polyglutamylated folate into monoglutamylated folate, which can subsequently be exported from the cell. The objective of this review is to summarize the scientific evidence available on the effects of intracellular folate homeostasis-associated enzymes on cancer chemotherapy. METHODS: This review discusses the effects of FPGS and GGH on chemosensitivity to cancer chemotherapeutic agents such as antifolates, such as methotrexate, and 5-fluorouracil. RESULTS AND DISCUSSION: Polyglutamylated (anti)folates are better substrates for intracellular folate-dependent enzymes and retained for longer within cells. In addition to polyglutamylation of (anti)folates, FPGS and GGH modulate intracellular folate concentrations, which are an important determinant of chemosensitivity of cancer cells toward chemotherapeutic agents. Therefore, FPGS and GGH affect chemosensitivity to antifolates and 5-fluorouracil by altering intracellular retention status of antifolates and folate cofactors such as 5,10-methylenetetrahydrofolate, subsequently influencing the cytotoxic effects of 5-fluorouracil, respectively. Generally, high FPGS and/or low GGH activity is associated with increased chemosensitivity of cancer cells to methotrexate and 5-fluorouracil, while low FPGS and/or high GGH activity seems to correspond to resistance to these drugs. Further preclinical and clinical studies elucidating the pharmocogenetic ramifications of these enzyme-induced changes are warranted to provide a framework for developing rational, effective, safe, and customized chemotherapeutic practices.

양식 넙치의 가격변동 및 예측에 관한 연구 (A Study on the Price Fluctuation and Forecasting of Aquacultural Flatfish in Korea)

  • 옥영수;김상태;고봉현
    • 한국수산경영학회:학술대회논문집
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    • 한국수산경영학회 2007년도 춘계학술발표회 및 심포지엄
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    • pp.19-41
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    • 2007
  • In Side of Supply and Demand of Fisheries Products, The Aquacultural Industry stayed in subsidized situation for the whole fishery industry of korea when it's dawned. But nowaday, the Aquacultural Industry has been developed to unique industry itself, and it could be said the Hoe - korean style Sashimi or Sushi culture of korea can't exist without its aquacultural industry. So it could be said that the Aquacultural industry is not only a part of the fishery industry but also inevitable unique industry. The main objective of this paper is to analysis the present situation for production of Flatfish, distribution of Flatfish, and consumption structure of Flatfish. Especially, the production for aquacultural Flatfish in 2005 has been raised over 38 times against the production in 1990, and it takes the status as the major fish which leads the domestic aqua cultural industry compare with others. The distribution of Flatfish can be divided to the domestic and export mainly. In field of its domestic distribution, Flatfish is the major item with Rockfish, and the deal of its over 90% happens in Similarity Fishery Wholesale Markets such as In-chon, Ha-nam, and Bu-san Fishery Wholesale Market not in the common distribution process of the fishery products. At present, the exporting of Flatfish take 13.9% among the whole Aquacultural Industry of korea, and Flatfish mainly export to Japan. Also, through the development of chinese economy, Hoe consumption culture is expanded gradually. And the future of exporting Flatfish is very bright because of developing of the U.S. market. The brief introduction of the consumption style of live fish is as belows. According to the research, generally the most of korean consumers prefer individual item as their food to combination style in korean Hoe consumption culture and the favorite item of korean consumers are Flatfish and Rockfish.

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절식이 나일 틸라피아 Oreochromis niloticus의 Kiss2, GnRH I mRNA 발현 및 성 스테로이드 호르몬 농도에 미치는 영향 (Effects of Fasting on Brain Expression of Kiss2 and GnRH I and Plasma Levels of Sex Steroid Hormones, in Nile Tilapia Oreochromis niloticus)

  • 박진우;권준영;진예화;오승용
    • Ocean and Polar Research
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    • 제38권1호
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    • pp.81-88
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    • 2016
  • In many fish species, including Nile tilapia (Oreochromis niloticus), gonadal development occurs at the expense of stored energy and nutrients. Therefore, reproductive systems are inhibited by limited food supply. It has been well established that reproductive function is highly sensitive to both metabolic status and energy balance. Nothing is known about the possible mediated connection between energy balance and reproduction. Kisspeptin, a neuropeptide product of the Kiss gene has emerged as an essential gatekeeper of reproduction and may be possibly be linked to energy balance and reproduction in non-mammalians. Thus, in this study, the effect of fasting (10 days) on the expression of kisspeptin and the gonadotropin-releasing hormone (GnRH) gene were assessed in Nile tilapia (male and female) using qRT-PCR. In addition, plasma levels of estradiol-$17{\beta}$ ($E_2$) and 11-ketotestosterone (11-KT) in adult tilapia were measured by ELISA. In male tilapia, fasting reduced Kiss2 and GnRH I mRNA expression in the brain and 11-KT level in comparison with the fed tilapia (p < 0.05). In females, however, there were no significant differences in GnRH I mRNA expression and $E_2$ between fish subjected to fasting and those fed (p > 0.05). These data indicate the impact of nutritional states on kisspeptin as a potential regulatory mechanism for the control of reproduction in male Nile tilapia.

An Overview of Kenyan Aquaculture: Current Status, Challenges, and Opportunities for Future Development

  • Munguti, Jonathan Mbonge;Kim, Jeong-Dae;Ogello, Erick Ochieng
    • Fisheries and Aquatic Sciences
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    • 제17권1호
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    • pp.1-11
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    • 2014
  • The Kenyan aquaculture sector is broadly categorized into freshwater aquaculture and mariculture. Whereas freshwater aquaculture has recorded significant progress over the last decade, the mariculture sector has yet to be fully exploited. The Kenyan aquaculture industry has seen slow growth for decades until recently, when the government-funded Economic Stimulus Program increased fish farming nationwide. Thus far, the program has facilitated the alleviation of poverty, spurred regional development, and led to increased commercial thinking among Kenyan fish farmers. Indeed, national aquaculture production grew from 1,000 MT/y in 2000 (equivalent to 1% of national fish production) to 12,000 MT/y, representing 7% of the national harvest, in 2010. The production is projected to hit 20,000 MT/y, representing 10% of total production and valued at USD 22.5 million over the next 5 years. The dominant aquaculture systems in Kenya include earthen and lined ponds, dams, and tanks distributed across the country. The most commonly farmed fish species are Nile tilapia Oreochromis niloticus, which accounts for about 75% of production, followed by African catfish Clarias gariepinus, which contributes about 21% of aquaculture production. Other species include common carp Cyprinus carpio, rainbow trout Oncorhynchus mykiss, koi carp Cyprinus carpio carpio, and goldfish Carassius auratus. Recently, Kenyan researchers have begun culturing native fish species such as Labeo victorianus and Labeo cylindricus at the National Aquaculture Research Development and Training Centre in Sagana. Apart from limited knowledge of modern aquaculture technology, the Kenyan aquaculture sector still suffers from an inadequate supply of certified quality seed fish and feed, incomprehensive aquaculture policy, and low funding for research. Glaring opportunities in the Kenyan aquaculture industry include the production of live fish food, e.g., Artemia, daphnia and rotifers, marine fish and shellfish larviculture; seaweed farming; cage culture; integrated fish farming; culture of indigenous fish species; and investment in the fish feed industry.

A Gene Functional Study of Rice Using Ac/Ds Insertional Mutant Population

  • Kim, So-Young;Kim, Chang-Kug;Kang, Min;Ji, Seung-Uk;Yoon, Ung-Han;Kim, Yong-Hwan;Lee, Gang-Seob
    • Plant Breeding and Biotechnology
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    • 제6권4호
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    • pp.313-320
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    • 2018
  • Rice is the staple food of more than 50% of the world population. Cultivated rice has the AA genome (diploid, 2n = 24) and small genome size of only 430 megabase (haploid genome). As the sequencing of rice genome was completed by the International Rice Genome Sequencing Project (IRGSP), many researchers in the world have been working to explore the gene function on rice genome. Insertional mutagenesis has been a powerful strategy for assessing gene function. In maize, well characterized transposable elements have traditionally been used to clone genes for which only phenotypic information is available. In rice endogenous mobile elements such as MITE and Tos have been used to generate gene-tagged populations. To date T-DNA and maize transposable element systems have been utilized as main insertional mutagens in rice. The Ac/Ds system offers the advantage of generating new mutants by secondary transposition from a single tagged gene. To enhance the efficiency of gene detection, advanced gene-tagging systems (i.e. activation, gene or enhancer trap) have been employed for functional genomic studies in rice. Internationally, there have been many projects to develop large scales of insertional mutagenized populations and databases of insertion sites has been established. Ultimate goals of these projects are to supply genetic materials and informations essential for functional analysis of rice genes and for breeding using agronomically important genes. In this report, we summarize the current status of Ac/Ds-mediated gene tagging systems that has been conducted by collaborative works in Korea.

Pig meat production in the European Union-27: current status, challenges, and future trends

  • G. G. Mateos;N. L. Corrales;G. Talegon;L. Aguirre
    • Animal Bioscience
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    • 제37권4_spc호
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    • pp.755-774
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    • 2024
  • The main objective of this study was to present data on the current situation and future trends of pig meat production in the European Union-27 (EU). Pig production has played an important social and economic role for centuries in many states of the EU. In 2022, pig meat production in the EU reached 23 M tons, which represented 21% of total production worldwide. The two key reasons that justify such amount of pork produced, are the acceptance and high consumption of the meat by the local population and the high quality of the meat produced which facilitated pork export. However, current data show a reduction in pork production for the last three years, as a consequence of a series of events that include i) problems with the chain of ingredients supply, ii) uncontrolled increase in African Swine Fever (ASF) outbreaks, iii) fast recovery of pig production in China, iv) increasing concerns by the rural population on the high cost to meet future requirements of the EU legislation on farm management, environmental sustainability and animal welfare, v) increased cost of all inputs involved in pig production and vi) limited interest of the new farmer generation to work on the pig sector. Consequently, pork production is expected to decrease in the EU for the next years, although sales will be maintained at a relative high level because pork is the meat preferred by local consumers in most EU countries. In order to maintain the favourable position of the pork industry in the near future, strategies to implement include: i) maintain the quality of the meat destinated to export markets, ii) improve the control of outbreaks of ASF and other swine diseases, iii) implementation of technological innovations to improve working conditions making more attractive to work in the pork sector of the food chain to the new generation of farmers and workers.

Evaluation of Water Productivity of Thailand and Improvement Measure Proposals

  • Suthidhummajit, Chokchai;Koontanakulvong, Sucharit
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2019년도 학술발표회
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    • pp.176-176
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    • 2019
  • Thailand had issued a national strategic development master plan with issues related to water resources and water security in the entire water management. Water resources are an important factor of living and development of the country's socio-economy to be stable, prosperous and sustainable. Therefore, water management in both multidimensional and multi-sectoral systems is important and will supports socio-economic and environmental development. The direction of national development in accordance with the national strategic framework for 20 years that requires the country to level up security level in terms of water, energy and food. To response to the proposed goals, there is a subplan to increase water productivity of the entire water system for economical development use by evaluating use value and to create more value added from water use to meet international standard level. This study aims to evaluate the water productivity of Thailand in each basin and all sectors such as agricultural sector, service and industrial sectors by using the water use data from water account analysis and GDP data from NESDB during the past 10 years (1996-2015). The comparison of water productivity with other countries will also be conducted and in addition, the measures to improve water productivity in next 20 years will be explored to response to the National Strategic Master Plan goals. Water productivity is defined as output per unit of water depleted. The simplest way to compare water productivity across different enterprises is in monetary terms. World Bank presents water productivity as an indication of the efficiency by which each country uses its water resources. There are two data sets used for water productivity analyses, i.e., the first is water use data at end users and the second is Gross Domestic Product. The water use at end users are estimated by water account method based on the System of Environmental-Economic Accounting for Water (SEEA-Water) concept of United Nations. The water account shows the analyses of the water balance between the use and supply of each water resource in physical terms. The water supply and use linkage in the water account analyses separated into each phases, i.e., water sources, water managers, water service providers, water user at end user under water regulators of all kinds of water use activities such as household, industrial, agricultural, tourism, hydropower, and ecological conservation uses. The Gross Domestic Product (GDP), a well- known measuring method of the national economic growth is not actually a comprehensive approach to describe all aspects of national economic status, since GDP does not take into account the costs of the negative impacts to natural resources that result from the overexploitation of development projects, however, at present, integrating the environment with the economy of a country to measure its economic growth with GDP is acceptable worldwide. The study results will show the water use at each basin, use types at end users, water productivity in each sector from 1996-2015 compared with other countries, Besides the productivity improvement measures will be explored and proposed for the National Strategic Master Plan.

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TMR 원료로 이용하는 농식품 부산물 사료 이용 활성화 방안에 관한 연구 (Study on the Activation Plan for Utilization of Agri-food by-products as Raw Materials for TMR)

  • 정승헌;박현우;권병연;구교영;방서연;박경수
    • 한국초지조사료학회지
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    • 제34권4호
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    • pp.296-306
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    • 2014
  • 본 연구는 농식품 부산물을 TMR 원료로 이용하여 사료비 절감 효과와 축산물 품질향상에 도움이 될 수 있도록 그 이용을 활성화하기 위한 농식품 부산물 발생현황조사 및 분석, TMR 이용 현황 및 문제점 조사, 사료이용 시 문제점 및 법률과 제도적 대안을 제시코자 수행하였으며 그 결과는 다음과 같다. 첫째, 폐기물관리법에서 관리되고 있는 유기성폐기물은 폐식용유 10,488톤, 동식물성잔재물 832,493톤, 동물사체 5,740톤, 동물성잔재물 1,171,892톤, 식물성잔재물 2,172,415톤, 왕겨와 미강 12,905톤 등 총 4,205,931톤이었으며 TMR 원료로 이용할 수 있는 식물성 잔재물과 왕겨 그리고 미강이 전체의 51.7%를 차지하였으며 발생지 별로는 전국 상위 10개 지자체에서 76~100% 발생되고 있어 이의 체계적 수급관리시스템이 필요하였다. 둘째, TMR 원료로 사용되는 10대 주요 농식품 부산물은 콩비지, 미강, 깻묵, 맥주박, 주정박, 맥강, 장유박, 감귤박, 버섯부산물 및 기타 식품부산물(빵, 국수, 과자 등)이었다. 셋째, 농가가 농식품 부산물을 이용하는데 가장 큰 애로사항은 농식품 부산물이 폐기물관리법에 의해 폐기물로 관리되고 있어 이를 사용하기 위해서는 재활용신고나 재활용시설설치 등 법률적 의무가 있어 사료이용 활성화를 위해 폐기물 지위 종료제와 같은 제도 개선과 전국적으로 10여 개의 공적 유통센터 설립이 필요한 것으로 사료되었다.

경장영양을 시행한 환자에서 영양집중지원에 따른 영양상태 비교 (A comparison of nutritional status by intensive nutritional support in enteral nutrition patients)

  • 김보희;김혜숙;권오란
    • Journal of Nutrition and Health
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    • 제51권2호
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    • pp.132-139
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    • 2018
  • 본 연구는 일반병동에 입원하여 3일 이상 경장영양을 시행한 성인 환자 95명을 대상으로 영양집중지원팀의 중재 효과를 평가하기 위해 영양중재를 받은 중재군과 받지 못한 군으로 분류하여 열량 및 단백질 지원율과 생화학적 지표를 비교 분석 하였다. 연구결과를 통해 환자의 입원초기부터 적절한 영양관리를 계획하고, 영양집중지원팀의 영양중재로 체계적인 관리를 실시하면 환자의 영양상태가 개선되는 것을 확인할 수 있었다. 결론적으로 영양불량 문제가 있는 환자에게 영양집중지원팀의 중재를 받아 문제를 개선할 수 있도록 절차를 마련한다면, 이는 환자의 임상적 치료에 긍정적인 영향을 줄 것으로 생각된다. 본 연구는 국내에서 경장영양을 시행한 일반병동 환자를 대상으로 영양집중 지원팀의 중재 효과에 대한 초기 연구이며, 집중영양치료료 수가 신설 이후 진행된 연구다. 추후 일반병동 환자를 대상으로 영양집중지원팀의 중재효과에 대한 연구가 다양하게 시행된다면 의료진의 관심이 증대 될 것이고, 나아가 영양집중지원팀의 중재를 통해 진료의 질을 높일 수 있을 것이다.

Ac/Ds 삽입 변이체를 이용한 벼 유전자 기능 연구 (Current status of Ac/Ds mediated gene tagging systems for study of rice functional genomics in Korea)

  • 이강섭;박성한;윤도원;안병옥;김창국;한창덕;이기환;박동수;은무영;윤웅한
    • Journal of Plant Biotechnology
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    • 제37권2호
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    • pp.125-132
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    • 2010
  • Rice is the staple food of more than 50% of the worlds population. Cultivated rice has the AA genome (diploid, 2n=24) and small genome size of only 430 megabase (haploid genome). As the sequencing of rice genome was completed by the International Rice Genome Sequencing Project (IRGSP), many researchers in the world have been working to explore the gene function on rice genome. Insertional mutagenesis has been a powerful strategy for assessing gene function. In maize, well characterized transposable elements have traditionally been used to clone genes for which only phenotypic information is available. In rice endogenous mobile elements such as MITE and Tos (Hirochika. 1997) have been used to generate gene-tagged populations. To date T-DNA and maize transposable element systems has been utilized as main insertional mutagens in rice. A main drawback of a T-DNA scheme is that Agrobacteria-mediated transformation in rice requires extensive facilities, time, and labor. In contrast, the Ac/Ds system offers the advantage of generating new mutants by secondary transposition from a single tagged gene. Revertants can be utilized to correlate phenotype with genotype. To enhance the efficiency of gene detection, advanced gene-tagging systems (i.e. activation, gene or enhancer trap) have been employed for functional genomic studies in rice. Internationally, there have been many projects to develop large scales of insertionally mutagenized populations and databases of insertion sites has been established. Ultimate goals of these projects are to supply genetic materials and informations essential for functional analysis of rice genes and for breeding using agronomically important genes. In this report, we summarize the current status of Ac/Ds-mediated gene tagging systems that has been launched by collaborative works from 2001 in Korea.