• 제목/요약/키워드: Mushroom production

검색결과 586건 처리시간 0.03초

최대 엔트로피 기법으로 도출한 지속 가능한 송이 생산 전략 (Sustainable Production Strategy of Pine Mushroom (Tricholoma matsutake) using the Maximum Entropy Technique)

  • 최준영;구자춘;윤여창
    • 한국산림과학회지
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    • 제102권3호
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    • pp.365-371
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    • 2013
  • 송이(Tricholoma matsutake)는 인공재배가 불가한 임산물로 노동 이외의 투입 요소가 적은 반면 가격이 높아 산촌 주민의 수익 증대에 큰 역할을 해왔다. 이러한 송이의 특성은 과도한 채취로 이어져 송이 자원의 고갈이 염려되는 상황이다. 송이의 지속 가능한 생산 전략을 제시하기 위하여 송이채취업의 생산함수와 송이의 성장함수를 추정하였다. 두 함수 추정에 필요한 정보의 제약을 고려하여 최대 엔트로피기법을 활용하였다. 2005년부터 2011년까지 송이의 생산량과 노동 투입량만으로 송이채취업의 생산함수와 송이의 성장함수를 도출한 것이다. 연구 결과, 송이 생산량은 노동 투입보다 자원량에 영향을 더 받았으며, 노동투입 부문에서는 송이채취업을 전업으로 하는 임가의 생산에 대한 노동 탄력성이 송이채취업을 겸업으로 하는 경우보다 컸다. 송이채취업의 생산함수와 송이의 생장함수를 이용하여 송이의 지속가능한 최적 생산 조건을 도출하였는데, 최근 7년의 실제 송이 생산은 지속가능한 최적 생산수준을 만족하지 못하는 것으로 나타났다. 따라서 송이 생산이 지속 가능한 최대 수준까지 도달할 수 있는 송이 자원량이 되도록 지금의 송이 생산을 억제하는 것이 필요하다.

Current prospects of mushroom production and industrial growth in India

  • Raman, Jegadeesh;Lee, Seul-Ki;Im, Ji-Hoon;Oh, Min-Ji;Oh, Youn-Lee;Jang, Kab-Yeul
    • 한국버섯학회지
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    • 제16권4호
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    • pp.239-249
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    • 2018
  • The global mushroom industry has grown rapidly in recent years in terms of beneficial effects, market value, and demand. India has a wide range of agro-climatic conditions and is largely an agricultural country with a cultivated area of about 4.37 %, generating about 620 million tons of agro waste annually. Mushroom cultivation not only helps recycle agro wastes, but also fills the nutritional gap prevalent among a large population of India. Recently, government industrial policy and creative innovation has promoted research and other endeavors aiming towards the cultivation of mushrooms. Mushroom cultivation in India was initiated in Solan, in the mid-sixties. Mushroom cultivation has been successful in temperate regions of the Himalayas, the Western Ghats, and the hills of northeast India. Recently, many unemployed people have begun to adopt mushroom cultivation as a means of self-employment. It is high time that Indian mushroom cultivators and consumers became aware of the nutritional and medicinal values of cultivated and wild species of mushrooms. The total mushroom production in India between 2010 and 2017 was approximately 0.13 million tons, accounting for a 4.3% increase in the average growth rate of mushrooms per annum. In particular, the total production of white button mushrooms is the highest, with a share of about 73% of total mushroom production. In this review article, we have analyzed the current scenario of the Indian mushroom industry and its contribution to the economic growth of the country.

한국 버섯산업의 발전사 (History of Mushroom Industry in Korea)

  • 유창현
    • 한국버섯학회지
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    • 제1권1호
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    • pp.1-8
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    • 2003
  • 한국의 버섯재배는 1960년대 초에 정부에서 농산물 수출과 농민의 소득을 증대시키기 위하여 양송이와 표고의 증산계획을 세워 시작하였다. 농촌진흥청 산림청 등 국가 연구기관에서는 유전적 소질이 우수한 품종의 육성, 양질의 종균보급, 고품질 버섯을 대량생산하는 기술을 개발하고 농민에게 재배기술을 교육하고 현지 지도를 하였으며, 재배시설비 등을 정책적으로 지원하였다. 재배방법이 개발되어 농가에서 대량으로 생산하기 시작한 버섯종류는 표고, 양송이, 느타리버섯, 팽이, 영지, 큰느타리버섯 등이다. 현재 버섯을 재배하는 농가는 약 2만호, 생 버섯의 총 생산량은 약 17만톤으로 느타리버섯이 가장 많고 다음이 팽이, 표고, 양송이 순으로 많다. 버섯의 총 농업생산액은 7,000억원을 넘으며, 연중생산이 가능한 농가의 중요한 소득작목으로 발전하였다.

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Historical Record of Mushroom Research and Industry in Korea

  • Yoo, Young Bok;Oh, Youn Lee;Shin, Pyung Gyun;Jang, Kab Yeul;Sung, Gi-Ho;Kong, Won-Sik
    • 한국균학회소식:학술대회논문집
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    • 한국균학회 2014년도 춘계학술대회 및 임시총회
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    • pp.13-13
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    • 2014
  • Two kinds of mushrooms, Gumji (金芝; Ganoderma) and Soji, were described in old book of Samguksagi (History of the three kingdoms; B.C 57~A.D 668; written by Bu Sik Kim in 1145) in Korea-dynasty. Many kinds of mushrooms were also described in more than 17 kinds of old books during Chosun-dynasty (1392~1910) in Korea. Nowadays, mushroom cultivation has been increased through out the world last decade years. Production of mushrooms has also been increased 10-20% and many varieties have been cultivated. Similar trends were also observed in Korea. Approximately two hundred commercial strains of 37 species in mushrooms were developed and distributed to cultivators. Somatic hybrid variety of oyster mushroom 'Wonhyeong-neutari' were developed by protoplast fusion, and distributed to grower in 1989. The fruiting body yield index of somatic hybrids of Pleurotus ranged between 27 and 155 compared to parental values of 100 and 138. In addition, more diverse mushroom varieties such as Phellinus baumi, Auricularia spp., Pleurotus ferulae, Hericium erinaceus, Hypsizigus marmoreus, Grifola frondosa, Agrocybe aegerita and Pleurotus cornucopiae have been attempted to cultivate in small scale cultivation. Production of mushrooms as food was 190,111 metric tons valued at 800 billion Korean Won (one trillion won if include mushroom factory products; 1dollar = 1,040 Won) in 2011. Major cultivated species are Pleurotus ostreatus, Pleurotus eryngii, Flammulina velutipes, Lentinula edodes, Agaricus bisporus, and Ganoderma lucidum, which cover 90% of total production. Since mushroom export was initiated from 1960 to 1980, the export and import of mushrooms have been increased in Korea. Technology developed for liquid spawn production and automatic cultivation systems lead to the reduction of the production cost resulting in the increasement of mushroom export. However some species were imported because of high production cost for these mushrooms requiring the effective cultivation methods. Developing of effective post-harvest system will be also directly related to mushroom export. In academic area, RDA scientists have been conducting mushroom genome projects. One of the main results is the whole genome sequencing of Flammulina velutipes for molecular breeding. An electrophoretic karyotype of of F. velutipes was obtained using CHEF with 7 chromosomes, with a total genome size of approximately 26.7 Mb. The mususcript of the genome of F. velutipes was published in PLOS ONE this year. For medicinal mushrooms, we have been conducting the genome research on Cordyceps and its related species for developing functional foods using this mushroom. In 2013, Korea Food and Drug Administraion (KFDA) approved Cordyceps mushroom for its value as an immune booster.

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Introduction of the representative mushroom cultivars and groundbreaking cultivation techniques in Korea

  • Jang, Kab-Yeul;Oh, Youn-Lee;Oh, Minji;Woo, Sung-I;Shin, Pyung-Gyun;Im, Ji-hoow;Kong, Won-Sik
    • 한국버섯학회지
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    • 제14권4호
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    • pp.136-141
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    • 2016
  • The production scale of mushrooms in Korea is approximately 600 billion won, which is 1.6% of Korea's gross agricultural output. In Korea, ca. 190,000 tons of mushrooms are harvested annually. Although the numbers of mushroom farms and cultivators are constantly decreasing, total mushroom yields are increasing owing to large-scale cultivation facilities and automation. The recent expansion of the well-being trend has caused an increase in mushroom consumption in Korea: the annual per capita mushroom was 3.9 kg ('13), whichis a little higher than that in Europe. Thus, mushroom export, mainly Flammulina velutipes and Pleurotus ostreatus, has increased since the mid-2000s. Recently, however, it is slightly reduced. Nevertheless, Vietnam, Hong Kong, the United States, and the Netherlands continue to export mushrooms, and Korea has increased its export to Australia, Canada, Southeast Asia, etc. Canned Agaricus bisporus, the first export of the Korean mushroom industry, reached it speak sales in 1977-1978. When Korea initiated trade with China in 1980, the international prices of mushrooms fell sharply, leading to shrinkage of the domestic markets. Spurred by the high demand to develop substitute goods for A. bisporus, the oyster mushroom (P. ostreatus) gained attention since it seemed to suit the taste of Korean consumers. Although the log cultivation technique for oyster mushroom was developed in the early 1970s, it required a great deal of labor. Thus, we developed the shelf cultivation technique, which is easier to manage and allows for mass production. In this technique, the growing shelf is made mafrom fermented rice straw, whichis the only P. ostreatus medium in the world and isused only in South Korea. After then, the use of cotton wastes as an additional material of medium, the productivity. Currently, we are developing a standard cultivation technique and environmental control system that can stably produce mushrooms throughout the year. The increase of oyster mushroom production may boostthe domestic market and contribute to industrial development. In addition, oyster mushroom production technology played a role in forming the basis for the development of bottle cultivation, which made mass production. In particular, bottle cultivation using liquid spawn could allow for the export of F. velutipes and Pleurotus eryngii. In addition, the white varieties of F. velutipes were second developed in the world after Japan. We also developed the new A. bisporus cultivar 'Saeah', which is easy to grow in Korea. In hopes to advance the mushroom industry, we will continue to develop cultivars with international competitive power and to improve cultivation techniques.

공판되는 송이의 등급별 비율을 통한 향후 생산량 추이 예측 (Prediction of Pine-mushroom (Tricholoma matsutake) Production from the Ratio of Each Grade at the Joint Market)

  • 박현;정병헌
    • 한국산림과학회지
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    • 제99권4호
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    • pp.479-486
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    • 2010
  • 당해년도 송이 생산량 추이와 가격 예측을 위하여 수매되는 송이의 일자별 생산량과 품질등급의 관련성을 분석하였다. 2000년부터 2008년까지의 9년간 영덕군 산림조합의 수매자료를 분석한 결과, 송이 수매량 변화와 각 품질등급이 차지하는 비율은 극심한 가뭄과 이상기온 등 특이한 해를 제외하면, 고급품(1등급과 2등급) 송이는 초기에 50%를 넘는 비율을 차지하다가 점차 줄어드는 모습을 나타낸 반면, 저급품(개산품, 파손품 및 벌레 먹은 것 등)의 경우에는 수매량이 정점을 이룬 이후에 지속적으로 그 비율이 증가하는 것으로 나타났다. 송이 수매량이 정점에 도달하기 1~9일 전에 고급품의 비율과 저급품의 비율이 반전되었으며, 이를 통하여 고급품 송이에 비하여 개산품의 비율이 많아지면 조만간 송이 생산량이 줄어들게 됨을 예측할 수 있었다. 고급품 송이가 차지하는 비율은 전체 수매량의 패턴과 비슷하지만 3~4일 정도 앞서 나가는 모습을 보여주고 있었으며, 매일의 송이 수매량은 3~4일 전의 고급품 수매량과 0.5 이상(3일전의 상관계수는 0.51, 4일전은 0.54)의 상관관계를 나타내었다. 따라서 송이 수매품의 품질등급 분포 검토를 통해 예측하는 해당 시점 이후의 송이 생산량 추이(증가 또는 감소 여부)를 예측할 수 있다고 판단되었다. 또한, 고급품 송이 가격은 수매량과 반비례하는 관계가 뚜렷하게 나타난다. 따라서 송이 수매량 추이는 송이 가격변화를 예측할 수 있는 정보를 제공하게 되므로 송이 유통에서도 중요한 역할을 할 수 있음을 알 수 있었다.

Effect electric pulse application on the fruit body production of Tricholoma matsutake-In situ condition

  • Islam, Ferzana;Islam, Afsana;Ohga, Shoji
    • 농업과학연구
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    • 제40권1호
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    • pp.13-18
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    • 2013
  • Effect of electric pulse stimulation was tested on the fruit body formation of valuable mushroom Tricholoma matsutake in the field of natural habitat of this mushroom. After applying the electric stimulator to the specific area of pine forest we found that the treatment especially stimulated the fructification of T. matsutake. And the most valuable findings of our study was that only our treatment plots showed fruit body formation whereas the control plots and the whole natural habitats of our study area showed zero production of this mushroom during the same time. From the point of view of mushroom production, our experiment shows that fruit body production can be upgraded by using pulsed power as an electrical stimulation in the field of the natural habitat of this mushroom. These findings from our experiment confirm the effectiveness of the significance of pulsed power technology for the improvement of T. matsutake fruit body production in the natural habit of this mushroom.

경북지역 양송이버섯(Agaricus bisporus) 생산 감소 원인 연구 (The causes of production decrease in button mushroom of Gyeongbuk province)

  • 강민구;조우식;김우현;이숙희
    • 한국버섯학회지
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    • 제13권3호
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    • pp.157-162
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    • 2015
  • 국내 양송이버섯 생산동향 및 생산량 감소 원인 분석 결과를 요약하면 다음과 같다. 가. 2000년 이후 국내 양송이버섯의 생산량은 70%, 농가수는 37%가 감소하였으며 경북지역은 감소폭이 더욱 컸다. 국내 재배면적은 6%가 증가하였지만 경북지역은 30%가 감소하였다. 2002년 이후 중국산 양송이(조제)가 공급되면서 양송이버섯 시장은 농가수가 감소하는 등 큰 영향을 받았으나 양송이버섯가격은 지속적으로 상승하였다. 특히, 단위면적당 생산량의 감소로 시장으로 공급되는 양이 수요량보다 부족하였음을 알 수 있었다. 나. 양송이버섯의 생산량이 감소한 원인으로는 농가경영여건의 악화, 수량보다는 품질에 중점을 둔 재배방식의 변화, 중국산 양송이버섯의 수입, 기후변화로 인한 재배환경 변화, 재배시설의 노후화, 양송이버섯 재배용 국산설비의 개발이 부진하였던 것을 뽑을 수 있다. 특히, 양송이버섯 재배용 배지의 원재료의 품질이 우수하지 못하며, 선진국에 비해 배지의 생산기술이 떨어지지만, 1980년대 이후 정착된 불안정한 한국형 배지생산 시스템으로 인해 양송이버섯 배지의 품질이 낮아진 것이 국내 및 경북지역의 양송이버섯 생산량 감소에 주요 원인 중 한가지로 작용하였다.

버섯산업의 과제와 발전방향 (Problems and improvement scheme for mushroom-industry)

  • 이영석;서건식
    • 한국버섯학회지
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    • 제3권4호
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    • pp.159-171
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    • 2005
  • The supply and demand of mushrooms has increased dramatically as the standard of living has increased and the nutritional and medical value of the mushrooms has been discovered. However, in meeting the demand, the profitability of the mushroom is being reduced. Even though there are many different types of and uses for mushrooms, the overall output production for the last ten years has consistently increased 5.9% per year, and for the last five years('00~'04) 5.2 % per year, and for the last 3 years('02~'04) 2.9% per year- the rate of increase has slowed. Looking at the standard gross income from mushroom production, it has increased 5.2% over the last nine years('95~'03), 1.6% over the last 4 years('00~'03), and 3.2% over the last 3 years('02~'04)-the annual gross income is decreasing. Even though the farmers are producing more mushrooms, the annual gross income is not increasing enough to keep up with the production, and therefore the profitability of mushrooms is decreasing. Since 2002, the constant increase of the output of edible mushrooms such as the Common Mushroom, Oyster Mushroom, King Oyster Mushroom and Winter Mushroom has resulted in a price declines. Before 2004, Korea mainly exported mushrooms, but after 2004 Korea mainly imported mushrooms. The mushroom industry of Korea is nearing the end of the stage of 'supplying domestic demand.' The stages are as follows: demand raised ${\rightarrow}$ supply domestic demand ${\rightarrow}$ export ${\rightarrow}$ country with developed mushroom industry. Therefore, we should have an efficient system to promote the exportation of mushrooms. Not only the exportation of mushroom itself but also the exportation of mushroom spawn, cultivation techniques and processing facilities should be our goal when we formulate the policy.

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버섯 생산량에 의한 배지 소요량 추정 (Estimate of Substrate Requirement by Mushroom Production Amounts)

  • 장현유
    • 현장농수산연구지
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    • 제11권1호
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    • pp.159-171
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    • 2009
  • Required total substrates amounts for mushroom production are 212,186M/T in Korea. 80% of these total substrates amounts, 169,748 M/T is used for main substrates. Also 20%of these total substrates amounts, 42,438 M/T is used for additives. Main substrates 169,748 M/T is composed of sawdust, waste cotton, cotton seed hull, straw and com cob etc.. Additives 42,438 M/T is composed of rice bran, wheat bran and beet pulp etc. In the mushroom management, the cost of substrates purchase is composed for the most of management. Substrates amount is limited to supply, and the demand of mushroom substrates is on the increase continuously. So there is nothing but the cost of substrates are raising. Therefore the most important thing must develop the cheap substrates for the mushroom production.