• Title/Summary/Keyword: Pleurotus eryngii

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Comparative analysis of total sugar and sugar alcohol contents of the fruiting bodies in edible and medicinal mushrooms (식용 및 약용버섯류의 단당류, 이당류, 당알코올 함량 비교 분석)

  • Cho, Jae-Han;Park, Hye-Sung;Han, Jae-Gu;Lee, Gang-Hyo;Sung, Gi-Ho;Jhune, Chang-Sung
    • Journal of Mushroom
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    • v.12 no.4
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    • pp.316-323
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    • 2014
  • We analyzed saccharide by dividing and comparing Monosaccharide, Disaccharide and sugar Alcohol. At first, Glucose had outstanding contained quantity of ASI 7114 with 81.11 g/l even comparing with other mushrooms for medical use and edibility. And 119.98 g/l of Fructose was observed at Hericium erinaceum that was more contained quantity than Flammulina velutipes and Lentinus edodes. But, the most contained quantity observed in Ganoderma lucidum was ASI 7015 with 15.70 g/l that was the level of 1/8 approximately against Hericium erinaceum. Ribose was found at low level generally that was hardly contained. Xylose was also observed low level. ASI 7004 was detected at 0.96g/l that was the most content with imperceptible difference by comparing with other mushrooms for medical use and edibility. Next, 35.21 g/l of Trehalose, disaccharide was observed at Agaricus bisporus that was around 11 times of content than ASI 3.09 g/l that was the most content of Ganoderma lucidum. For ${\alpha}$-Lactose, Sparassis crispa has the most amount of 3.38 g/l that was around 12.5 times of ASI 7060 0.27 g/l that was the most content of Ganoderma lucidum. For Glycerol, sugar alcohol, 64.74 g/l was observed at Pleurotus eryngii. We knew it was around 8 times of ASI 7004 8.61 g/l that was the most content of Ganoderma lucidum. 0.72 g/l of Solbitol was observed at Flammulina velutipes. We knew it was around 2times of ASI 7003 0.31 g/l that was the most content of Ganoderma lucidum. Moreover most of Ganoderma lucidum didn't contain Solbitol. 2.96 g/l of Mannitol was observed at Agaricus bisporus. that was the most content among other mushrooms. Also Mannitol was contained in Lentinus edodes and leurotus cornucopiae only. Even Ganoderma lucidum didn't have Mannitol. At last, as a result of myo-Inosito content analysis, it was seemed not to be involved in any of mushrooms.

Evaluation of Spent Mushroom Substrates as Food for White-spotted Flower Chafer, Protaetia brevitarsis seulensis (Coleoptera: Cetoniidae) (버섯 수확 후 배지의 흰점박이꽃무지 사료화 연구)

  • Lee, Seul Bi;Kim, Jong Won;Bae, Sung Mun;Hwang, Yeon Hyeon;Lee, Heung-Su;Lee, Byeong Jeong;Hong, Kwang Pyo;Park, Chung Gyoo
    • Korean journal of applied entomology
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    • v.57 no.2
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    • pp.97-104
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    • 2018
  • The larva of the white-spotted flower chafer, Protaetia brevitarsis seulensis (Coleoptera: Cetoniidae), is known to have important medicinal properties, such as anti-cancer activity. However, the consumer market for the larvae is depressed because of its high production cost which needs to be reduced. This study was carried out to evaluate two spent mushroom substrates as food source for chafer larvae to improve the productivity and reduce production cost. The larvae were fed with spent substrates of king oyster mushroom (Pleurotus eryngii) (P-SMS) and shiitake mushroom (Lentinula edodes) (L-SMS), with a control of fermented oak sawdust. Effects of the diets on the development of P. brevitarsis seulensis and contents of minor nutrient components in the larvae produced were examined. In the P-SMS diet, the larval rearing period was shorter at 16.2 days, while the rate of larval weight gain and the cocoon weight were higher at 156.3% and 4.1 g, respectively, than that in the L-SMS diet. The pupation rate was 100% and the adult emergence was higher at 93.3% in the P-SMS diet than in the L-SMS diet with no difference to the control diet. In the P-SMS diet, the total nitrogen content during rearing was higher at 10.28% and the minor nutrient component, particularly Fe (145.8 mg/kg), was higher than that in other diets. The oviposition preference of adults showed no significant difference among the diets. Economic analysis showed that P-SMS costs approximately 667,960 Won less per 100 kg of larvae produced, compared to that of the control diet.

Analyses of CO2 Concentration and Balance in a Closed Production System for King Oyster Mushroom and Lettuce (밀폐형 식물생산시스템 내 새송이 버섯과 상추의 혼합 재배 비율에 따른 CO2 농도 변화 및 균형 분석)

  • Jung, Dae Ho;Kim, Chan Kyo;Oh, Kyung Hun;Lee, Dong-Hyeon;Kim, Minsu;Shin, Jong Hwa;Son, Jung Eek
    • Horticultural Science & Technology
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    • v.32 no.5
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    • pp.628-635
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    • 2014
  • The large amount of $CO_2$ emitted from mushrooms during incubation and developmental stages can be utilized in plant production systems as a $CO_2$ source. The objectives of this study were to measure the $CO_2$ emission and absorption rates of mushroom and lettuce, respectively, and to analyze the $CO_2$ concentrations at various ratios of mushroom and lettuce in a closed production system. The $CO_2$ emission rate of king oyster mushrooms (Pleurotus eryngii ( DC.) Qu$\acute{e}$l) and $CO_2$ absorption rate of lettuces (Lactuca sativa L. cv. Asia Heuk Romaine) were measured by using two closed acryl chambers ($1.0m{\times}0.8m{\times}0.5m$) in which indoor temperatures were maintained at $18^{\circ}C$ and $22^{\circ}C$, respectively. The lettuce was grown at a light intensity of PPF $340mol{\cdot}m^{-2}{\cdot}s^{-1}$ and with nutrient solution at EC $1.2dS{\cdot}m^{-1}$. The air was periodically circulated between the two chambers using a diaphragm pump. The $CO_2$ emission rate of the mushroom increased until the $15^{th}$ day after scratching (DAS) and then decreased. The rate also increased with increased indoor temperature. In particular, the $CO_2$ emission rate per fresh weight of fruit body increased by about 3.1 times after thinning compared to before thinning. In terms of $CO_2$ balance, the $CO_2$ emission rates from a bottle (950 mL) of the mushroom at 9, 12, and 14 DAS were equivalent to those of 3, 4.5, and 5.5 lettuce plants at 7, 10, and 12 DAT (days after transplanting), respectively. This work shows that balance in $CO_2$ concentration could be achieved using an appropriate ratio of the two crops in a closed production system.

Trends of mushroom science and mushroom industry (버섯과학과 버섯산업의 동향)

  • Yoo, Young-Bok;Kong, Won-Sik;Oh, Se-Jong;Cheong, Jong-Chun;Jang, Kab-Yeul;Jhune, Chang-Sung
    • Journal of Mushroom
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    • v.3 no.1
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    • pp.1-23
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    • 2005
  • World production of mushrooms has been increasing 10-20% every year. Recently, Pleurotus eryngii and P. nebrodensis are very popular as new mushroom species for cultivation. Two kinds of mushrooms, Gumji (Ganoderma) and Soji, were described in old book of Samguksagi (History of the three kingdoms; 1145) in Koryo-dynasty. Many kinds of mushrooms were also described in more than 16 kinds of old books during Chosun-dynasty in Korea. One hundred and sixty commercial strains of 25 species in mushrooms were distributed to cultivators. By the way, only 8 varieties of them have registered variety protection. Mushroom industry as important export products developed from 1960 to 1980. Production of mushrooms as food was 181,828 metric tons valued at 800 billion Korean won in 2003. Isolated and identified substances from mushrooms are promising antifungal, antiinflammatory, antitumor, antiviral (anti-HIV), antibacterial & antiparasitic, antidiabetic, immunomodulating, kidney tonic, hepatoprotective, nerve tonic, and sexual potentiator. These substances can also be used for blood pressure regulation and effective against cardiovascular disorders, hypocholesterolemia & hyperlipidemia, and chronicbronchitis. Mushroom products including pharmaceuticals, tonics, healthy beverages, functional biotransformants, and processed foods have also became available on the markets. Compost and feed can likewise be made from mushroom substrates after harvest. The mushroom industry is already one of the fastest growing investment sectors in Korea. By the way, there is a need to strain improvement for variety protection, advanced cultivation technology at low cost for growers, and control of demand and supply for marketing in order to more upgrade development of mushroom industry in the future.

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