• 제목/요약/키워드: Growth of the ginseng industry

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1930년대 인삼업의 성장과 삼포민의 활동 -특별경작구역 이외 지역을 중심으로- (The Growth of Ginseng Industry and the Activities of Ginseng Cultivators in the 1930s: Focusing on Non-Government-Contract Cultivation Areas)

  • 양정필
    • 인삼문화
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    • 제5권
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    • pp.52-76
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    • 2023
  • 이 논문에서는 1930년대 인삼 특별경작구역이 아닌 지역의 인삼업 변동을 살펴보았다. 1930년대 인삼업의 큰 특징으로 삼포 면적의 급격한 증가를 꼽을 수 있다. 1929년 64만2천여 평, 1930년과 1931년 76만여 평이었던 삼포 면적은 1938년에 133만여 평으로 급증하였다. 이는 이 시기에 특별경작구역 외의 인삼경작이 크게 늘어났기 때문이다. 1930년대 초반까지 특별경작구역 내 삼포 면적과 특별경작구역 외 삼포 면적 비율은 약 70 대 30 수준이었다. 그런데 1930년대 후반이 되면 그 비율이 53대 47로 바뀌었다. 이러한 변동의 이유는 특별경작구역 내의 경우 신설 삼포 면적이 줄어든 반면 특별경작구역 외에서는 꾸준히 면적이 증가하였기 때문이다. 일제의 중국 침략 확대로 중국에서 홍삼을 불매하면서 수출이 부진해지자 특별경작구역 내 삼포 면적을 축소한 것이었다. 반면 특별경작구역 외에서는 그러한 영향을 받지 않고 꾸준히 삼포 면적이 증가하였다. 그 결과 1930년대 특별경작구역 외 인삼업이 비약적으로 성장하였다. 특별경작구역 외 인삼업의 성장을 이끈 지역은 전북이었다. 전북은 1930년대 후반으로 갈수록 다른 도들을 압도하여서 특별경작구역 외 삼포 면적에서 전북이 차지하는 비중이 50%를 넘었다. 전북에 이어서 경북과 강원도에서도 인삼경작이 활발하였다. 이외에도 경기도와 경남, 충북 등지에서도 비교적 인삼경작이 활발하였다. 반면 전남, 충남 등은 인삼경작이 이루어졌지만 활기를 띠지는 못했다. 1930년대 특별경작구역 외 인삼업의 성장을 이끈 것은 삼포민들의 노력과 당국의 지원이었다. 경북의 예천군, 경기의 강화군, 충북의 제천군의 사례를 보면, 세 지역 모두 인삼업이 일정하게 발전하자 삼포민들은 조합을 조직하였다. 조합은 인삼경작과 판매를 위해서 조직적으로 활동하였다. 강화군의 경우 특별경작구역 편입을 위해 적극적으로 활동하였다. 제천군의 덕산삼업조합은 경작자금 조달이 관건이라고 보고 도 당국에 보조금을 요청하였다. 이러한 삼포민들의 활동에 대해 행정 당국도 지원하였다. 삼포민의 적극적인 활동과 행정 당국의 지원이 이 시기 인삼업의 성장을 이끌었다.

Growth promotion effect of red ginseng dietary fiber to probiotics and transcriptome analysis of Lactiplantibacillus plantarum

  • Hye-Young Yu;Dong-Bin Rhim;Sang-Kyu Kim;O-Hyun Ban;Sang-Ki Oh;Jiho Seo;Soon-Ki Hong
    • Journal of Ginseng Research
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    • 제47권1호
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    • pp.159-165
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    • 2023
  • Background: Red ginseng marc, the residue of red ginseng left after water extraction, is rich in dietary fiber. Dietary fiber derived from fruits or vegetables can promote the proliferation of probiotics, and it is a key technology in the food industry to increase the productivity of probiotics by adding growth-enhancing substances such as dietary fiber. In this study, the effect of red ginseng dietary fiber (RGDF) on the growth of probiotic bacterial strains was investigated at the phenotypic and genetic levels. Methods: We performed transcriptome profiling of Lactiplantibacillus plantarum IDCC3501 in two phases of culture (logarithmic (L)-phase and stationary (S)-phase) in two culture conditions (with or without RGDF) using RNA-seq. Differentially expressed genes (DEGs) were identified and classified according to Gene Ontology terms. Results: The growth of L.plantarum IDCC3501 was enhanced in medium supplemented with RGDF up to 2%. As a result of DEG analysis, 29 genes were upregulated and 30 were downregulated in the RGDF-treated group in the L-phase. In the S-phase, 57 genes were upregulated and 126 were downregulated in the RGDF-treated group. Among the upregulated genes, 5 were upregulated only in the L-phase, 10 were upregulated only in the S-phase, and 3 were upregulated in both the L- and S-phases. Conclusions: Transcriptome analysis could be a valuable tool for elucidating the molecular mechanisms by which RGDF promotes the proliferation of L.plantarum IDCC3501. This growth-promoting effect of RGDF is important, since RGDF could be used as a prebiotic source without additional chemical or enzymatic processing.

Current Status of Korean Ginseng Products and Trends in Enhanced Functional Ginseng Products

  • Byungdae Lee;Tae-Eun Kwon;Hoon-Il Oh;Ho-jung Yoon
    • 인삼문화
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    • 제6권
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    • pp.13-34
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    • 2024
  • The abolishment of the red ginseng monopoly act by the Korean government in 1996 resulted in a drastic change in the Korean ginseng industry, leading to a significant increase in the market size and consumption of ginseng products. Red ginseng is most popular type, with approximately 74% of harvested fresh ginseng being processed into various red ginseng products. Since 1997, there has been a substantial increase in the cultivation of ginseng for production of red ginseng, which, in turn, has contributed to the proliferation of ginseng processing companies. To investigate the products of ginseng manufacturing businesses, we select 200 companies primarily engaged in ginseng processing or specializing solely in ginseng. Our survey on the status of ginseng industry covered 8 different categories. 1) Root ginseng: There were 66 companies involved in manufacturing red ginseng root, accounting for 33.0% of all surveyed companies. This was followed by black ginseng root with 36 companies (18.0%) and red ginseng fine roots with 22 companies (11%). 2) Red ginseng products: A total of 144 companies were involved in manufacturing red ginseng pouches, making it the most common product category. This was closely followed by 142 companies producing pure(100%) red ginseng extract concentrate. 3) Fermented red ginseng products: Companies producing fermented red ginseng extract concentrate products were the most numerous, totaling 26. Following this, companies producing fermented red ginseng stick and pouch products were next in line. 4) Ginseng products: There were 15 companies involved in the production of ginseng products, with the majority focusing on ginseng tea. 5) Black ginseng products: Companies producing black ginseng extract concentrate were the most numerous, with 31 companies, followed by 26 companies producing black ginseng extract pouches. 6) Taegeuk ginseng products: Only 5 companies were involved in the production of taegeuk ginseng products. 7) Fermented black ginseng, and 8) Ginseng berry products: These categories are manufactured by less than 5 companies each. However, the variety in ginseng berry products suggests the potential for future growth. In the 2000s, a trend emerged with the development of new processed products aimed at enhancing the functional components of red ginseng, and these products have captured the attention of consumers. However, this study primarily focuses on black ginseng, fermented red ginseng/fermented black ginseng, and ginseng berry products as they have exerted a significant influence on the overall ginseng industry.

Red ginseng (Panax ginseng Meyer) oil: A comprehensive review of extraction technologies, chemical composition, health benefits, molecular mechanisms, and safety

  • Truong, Van-Long;Jeong, Woo-Sik
    • Journal of Ginseng Research
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    • 제46권2호
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    • pp.214-224
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    • 2022
  • Red ginseng oil (RGO), rather than the conventional aqueous extract of red ginseng, has been receiving much attention due to accumulating evidence of its functional and pharmacological potential. In this review, we describe the key extraction technologies, chemical composition, potential health benefits, and safety of RGO. This review emphasizes the proposed molecular mechanisms by which RGO is involved in various bioactivities. RGO is mainly produced using organic solvents or supercritical fluid extraction, with the choice of method greatly affecting the yield and quality of the end products. RGO contains a high unsaturated fatty acid levels along with considerable amounts of lipophilic components such as phytosterols, tocopherols, and polyacetylenes. The beneficial health properties of RGO include cellular defense, antioxidation, anti-inflammation, anti-apoptosis, chemoprevention, hair growth promotion, and skin health improvement. We propose several molecular mechanisms and signaling pathways that underlie the bioactivity of RGO. In addition, RGO is regarded as safe and nontoxic. Further studies on RGO must focus on a deeper understanding of the underlying molecular mechanisms, composition-functionality relationship, and verification of the bioactivities of RGO in clinical models. This review may provide useful information in the development of RGO-based products in nutraceuticals, functional foods, and functional cosmetics.

배지의 pH 조정에 의한 홍삼 추출물 첨가가 Lactobacillus SP., Escherichia coli와 Listeria monocytogenes의 생육에 미치는 영향 (Effect of Red Ginseng, Extract on Growth of Lactobacillus sp., Escherichia coli and Listeria monocytogenes in pH Controled Medium)

  • 배형철;이조윤;남명수
    • 한국축산식품학회지
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    • 제25권2호
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    • pp.257-264
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    • 2005
  • 홍삼 추출물이 유산간균 3종(L. acidophilus, L. casei 및 L. salivarius ssp. salivarius)과 병원성 균으로서 E. coli 및 L. monocytogenes에 대한 성장 촉진과 억제 효과를 홍삼 추출물 0, 1, 2, 5와 $10\%$ 농도로 조사하였으며, 홍삼 추출물에 의한 pH 저하를 buffer제를 사용하여 조정하고 미생물의 성장을 대조구와 비교하여 조사하였다. 유산간균 3종의 경우 홍삼 추출물 $1\%$ 농도까지는 무처리구와 유사한 성장을 보였으나, $2\%$이상의 홍삼 추출물 첨가 시 농도가 높아질수록 유산균의 성장도 둔화되었다. E. coli의 경우 홍삼 추출물이 $1\%$부터 높아질수록 성장이 억제되었고, L. monocytogenes의 경우 $5\%$ 이상의 처리구에서 억제 효과가 있었다. Buffer제를 사용하여 pH를 조정하고 홍삼 추출물을 $10\%$ 첨가한 구와 pH를 조정하지 않은 구를 비교하여 보면 유산간균과 병원성 균의 성장이 두 구간에 모두 억제되므로 미생물의 억제 효과가 홍삼 추출물 중의 유기산에 의한 pH 저하가 원인이 아님을 알 수 있었으며, 이와 같은 미생물의 성장억제 효과는 홍삼 추출물 중 다른 유효성분에 의한 것으로 생각되어진다.

Cold-induced ginsenosides accumulation is associated with the alteration in DNA methylation and relative gene expression in perennial American ginseng (Panax quinquefolius L.) along with its plant growth and development process

  • Hao, Mengzhen;Zhou, Yuhang;Zhou, Jinhui;Zhang, Min;Yan, Kangjiao;Jiang, Sheng;Wang, Wenshui;Peng, Xiaoping;Zhou, San
    • Journal of Ginseng Research
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    • 제44권5호
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    • pp.747-755
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    • 2020
  • Background: Ginsenosides accumulation responses to temperature are critical to quality formation in cold-dependent American ginseng. However, the studies on cold requirement mechanism relevant to ginsenosides have been limited in this species. Methods: Two experiments were carried out: one was a multivariate linear regression analysis between the ginsenosides accumulation and the environmental conditions of American ginseng from different sites of China and the other was a synchronous determination of ginsenosides accumulation, overall DNA methylation, and relative gene expression in different tissues during different developmental stages of American ginseng after experiencing different cold exposure duration treatments. Results: Results showed that the variation of the contents as well as the yields of total and individual ginsenosides Rg1, Re, and Rb1 in the roots were closely associated with environmental temperature conditions which implied that the cold environment plays a decisive role in the ginsenoside accumulation of American ginseng. Further results showed that there is a cyclically reversible dynamism between methylation and demethylation of DNA in the perennial American ginseng in response to temperature seasonality. And sufficient cold exposure duration in winter caused sufficient DNA demethylation in tender leaves in early spring and then accompanied the high expression of flowering gene PqFT in flowering stages and ginsenosides biosynthesis gene PqDDS in green berry stages successively, and finally, maximum ginsenosides accumulation occurred in the roots of American ginseng. Conclusion: We, therefore, hypothesized that cold-induced DNA methylation changes might regulate relative gene expression involving both plant development and plant secondary metabolites in such cold-dependent perennial plant species.

The Adaptation of Ginseng Production of Semi-arid Environments The Example of British Columbia, Canada

  • Bailey, W.G.
    • 고려인삼학회:학술대회논문집
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    • 고려인삼학회 1990년도 Proceedings of International Symposium on Korean Ginseng, 1990, Seoul, Korea
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    • pp.155-167
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    • 1990
  • Ginseng Is renowned for both its medicinal and herbal uses and successful cultivation of Panax ginseng in Asia and Panax quinquefolium in North America has until recently taken place in the native geographical ranges of the plants. As a consequence of the potential high capital return and anticipated increases in consumer consumption, commercial cultivation of American ginseng now occurs well outside the native range of the plant in North America. In fact, the region of greatest expansion of cultivation is in the semi-arid interior region of British Columbia, Canada. Linked with this expansion is the potential domination of the ginseng industry by agricultural corporations. In the interior of British Columbia, the native deciduous forest environment of eastern North America is simulated with elevated polypropylene shade and a surface covering of straw mulch. The architecture of these environments is designed to permit maximum machinery usage and to minimize labor requirements. Further, with only a four- years growth cycle, plant densities in the gardens are high. In this hot, semi-arid environment, producers believe they have a competitive advantage over other regions in North America because of the low precipitation rates. This helps to minimize atmospheric humidity such that the conditions for fungal disease development are reduced. If soil moisture level become limited, supplemental water can be provided by irrigation. The nature of the radiation and energy balance regimes of the shade and many environments promotes high soil moisture levels. Also, the modified environment redlines soil heating. This can result in an aerial environment for the plant that is stressful and a rooting zone environment that is suloptimal. The challenge of further refining the man modified environment for enhanced plant growth and health still remains. Keywords Panax ginseng, Panax quinquefolium, cultivation, ginseng production.

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온실 복합생장환경 관제 시스템 구현 (Implementation of Complex Growth-environment Control System in Greenhouse)

  • 조현욱;조종식;박인곤;서범석;김찬우;신창선
    • 디지털산업정보학회논문지
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    • 제7권1호
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    • pp.1-9
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    • 2011
  • In this paper, Wireless sensor network technology applied to various greenhouse agro-industry items such as horticulture and local specialty etc., we was constructed automatic control system for optimum growth environment by measuring growth status and environmental change. existing monitoring systems of greenhouse gather information about growth environment depends on the temperature. but in this system, Can be efficient collection and control of information to construct wireless sensor network by growth measurement sensor and environment monitoring sensor inside of the greenhouse. The system is consists of sensor manager for information processing, an environment database that stores information collected from sensors, the GUI of show the greenhouse status, it gather soil and environment information to soil and environment(including weather) sensors, growth measurement sensor. In addition to support that soil information service shows the temperature, moisture, EC, ph of soil to user through the interaction of obtained data and Complex Growth Environment information service for quality and productivity can prevention and response by growth disease or disaster of greenhouse agro-industry items how temperature, humidity, illumination acquiring informationin greenhouse(strawberry, ginseng). To verify the executability of the system, constructing the complex growth environment measurement system using wireless sensor network in greenhouse and we confirmed that it is can provide our optimized growth environment information.

강우량이 극히 적은 여건에서의 인삼재배의 순응 : 캐나다 브리티쉬 콜롬비아의 실례 (The Adaptation of Ginseng Production of Semi-arid Environments : The Example of British Columbia, Canada)

  • Bailey, W.G.
    • Journal of Ginseng Research
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    • 제14권2호
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    • pp.297-309
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    • 1990
  • Ginseng is renowned for both its medicinal and herbal uses and successful cultivation of Panax ginseng in Asia and Panax Vtiinvtiefolilim in North America has until recently taken place in the native geographical ranges of the plants. As a consequence of the potential high capital return and anticipated increases in consumer consumption, commercial cultivation of American ginseng now occurs well outside the native range of the plant in North America. In fact, the region of greatest expansion of cultivation is in the semi-arid interior region of British Columbia, Canada. Linked with this expansion is the potential domination of the ginseng industry by agricultural corporations. In the interior of British Columbia, the native decidous forest environment of eastern North America is simulated with elevated polypropylene shade and a sllrface covering of straw mulch. The architecture of these environments is designed to permit maximillm machinery useage and to minimize labour requirements. Further, with only a four-year growth cycle, plant densities in the gardens are high. In this hot, semiarid environment, producers believe they have a competitive advantage over other regions in North America because of the low precipitation rates. This helps to minimize atmospheric humidity such that the conditions for fungal disease development are reduced. If soil moisture levels become limited, supplemental water can be provided by irrigation. The nature of the radiation and energy balance regimes of the shade and much environment promotes high soil moistilre levels. Also, the modified environment reduces soil heating. This can result in an aerial environment for the plant that is stressful and a rooting zone environment that is sub-optimal. The challenge of further refining the man modified environment for enhanced plant growth and health still remains.

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