• 제목/요약/키워드: ginseng-field soil

검색결과 182건 처리시간 0.027초

인삼 유묘 뿌리썩음병 진전에 따른 토양군별 특성 (Characteristics of Soil Groups Basd on the Development of Root Rot of Ginseng Seedlings)

  • 박규진;정후섭
    • 한국식물병리학회지
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    • 제13권1호
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    • pp.46-56
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    • 1997
  • Based on the principal component analysis (PCA) of Richards' parameter estimates, ginseng field soils were grouped as the principal component 1 (PC1) and the principal component 2 (PC2). The microflora and physico-chemical characteristics of each soil group were compared to elucidate soil environmental factors affecting the disease development of root rot of ginseng seedling. Among 3 soil groups by PC1, there were differences in the populations of total fungi (TF) and Cylindrocarpon plus Fusarium (C+F), and the population ratio of Cylindrocarpon plus Fusarium to total fungi or total bacteria (C+F/TF, C+F/TB) in rhizoplane of ginseng seedlings, the population of total actinomycetes (TA) and the population ratio of total Fusarium to total actinomycetes (Fus/TA) in soil, and soil chemical properties (EC, NO3-N, K, Mn, ect.). Among 4 soil groups by PC2, there were differences in TF, C+F, TB, C+F/TF and C+F/TB in the rhizoplane, Trichoderma plus Gliocladium (T+G) in soil, and P2O5 content in soil. Especially, EC, NO3-N, K, K/Mg and Mn were positively correlated to PC1, and TA was negatively to PC1; however, TF, C+F, TB, C+F/TF and C+F/TB in the rhizoplane were significantly correlated to PC2 positively. On the other hand, microbes in the rhizoplane were not significantly correlated to the stand-missing rate (SMR), although TA and Fe/Mn were negatively correlated, and pH and Ca were positively correlated to SMR.

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들민달팽이의 생활사와 인삼의 피해 및 약제 방제 (Life History, Ginseng Damage and Chemical Control of the Field Slug, Deroceras varsans A, Adams)

  • 김기황;오승환
    • Journal of Ginseng Research
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    • 제14권3호
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    • pp.421-426
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    • 1990
  • Field and laboratory works were conducted to Investigate the life history, ginseng damage and chemical control effect of the field slug, Deroceras varians A. Adams. D. varians laid eggs from April to June, but a small number of eggs were also found from July to September in the field. Most young slugs grew through the slimmer months to maturity by October. overwintered beneath the moist soil surface, and began feeding and egg-laying in the following April. indicating that D varians have a life cycle in a year. Damage of ginseng plants by D. varina occurred mainly from late April to mid May in the 3rd to 5th year ginseng fields with rice-straw mulching. It seems that this damage is caused by the adults in oviposition periods and related to rice-straw mulching of ginseng fields. In the experiment, ethoprop 5% granule and metaldehyde 6% bait showed relatively high effectiveness in the control of D. varians adults. Bordeaux mixture was more effective when the chemical was sprayed after infestation of the slug than before the infestation and when the 6-12 mixture was used.

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인삼 연작장해 유발토양과 억제토양의 화학성, 미생물상 및 뿌리썩음병 발생 특성 (Soil Chemical Properties, Microbial Community and Ginseng Root Rot in Suppressive and Conducive Soil Related Injury to Continuously Cropped Ginseng)

  • 이성우;이승호;서문원;장인복;권나영;허혜지
    • 한국약용작물학회지
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    • 제28권2호
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    • pp.142-151
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    • 2020
  • Background: Suppressive soil inhibits soil-borne diseases if pathogens are present, and ginseng does not show injury even if replanted in the same field. Methods and Results: Soil chemical properties and microbial community of soil were investigated in soil suppressive and conducive to ginseng root rot. Root rot disease in 2-year-old ginseng was tested by mixing conducive soil, with suppressive or sterilized suppressive soil. The root rot ratio in suppressive soil was 43.3% compared to 96.7% in conducive soil. Biological factors acted to inhibit the root rot because disease ratio was increased in the sterilized suppressive soil compared to that in non-suppressive soil. The suppressive soil had lower pH, nitrate nitrogen and sodium than the conducive soil. Dominat bacteria and fungi (more than 1.0%) were 3 and 17 species in conducive soil and 7 and 23 species in suppressive soil, respectively. The most predominant fungi were Pseudaleuria sp. HG936843 (28.70%) in conducive soil and Pseudogymnoascus roseus (7.52%) in suppressive soil. Conclusion: Microbial diversity was more abundant in the suppressive soil than in the conducive soil, and the proportion of pathogens (Nectriaceae sp.) causing root rot was significantly lower in the suppressive soil than in the conducive soil.

인삼 뿌리썩음병 발병에 미치는 토양전염성병원균과 토양환경요인 (Soil Environment and Soil-borne Plant Pathogen Causing Root Rot Disease of Ginseng)

  • 신지훈;윤병대;김혜진;김시주;정덕영
    • 한국토양비료학회지
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    • 제45권3호
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    • pp.370-376
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    • 2012
  • Disease is the major problem in ginseng cultivation from seed stratification, soil preparation prior to planting, right through to drying of the roots. There are many soil-borne disease pathogen in rhizosphere soil environment, furthermore occurrence of diseases by a diverse group of fungi and related organisms are closely related to various soil condition. Observable symptoms for soil-borne diseases include wilting, leaf death and leaf fall, death of branches and limbs and in severe cases death of the whole plant. The fungus Cylindrocarpon destructans is the cause of root rot characterized by a decay of the true root system in many ginseng production areas in Korea. Some pathogens are generally confined to the juvenile roots whilst others are capable of attacking older parts of the root system. However, the relation between the soil environmental characteristics and ginseng root rot by soil-borne disease pathogen is not clearly identified in ginseng field. In this paper, we reviewed soil-borne plant pathogen causing root rot disease of ginseng with respect to soil environment.

토양조건에 따른 몇가지 식물병원균의 포자발아와 토양정균 현상 (Spore Germination of Some Plant Pathogenic Fungi under Different Soil Conditions in Relation to Soil Fungistasis)

  • 이민웅;최혜정;심재욱
    • 한국식물병리학회지
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    • 제1권3호
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    • pp.157-164
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    • 1985
  • 인삼 주요 재배지인 금산, 괴산, 풍기 등 3곳의 토양조건과 토양에 따른 미생물분포, 근부병의 발병상태와 관련, 포자발아에 미치는 영향 등에 대하여 실험한 결과, 괴산 재작지 토양은 Ca와 Mg 함량이 높고, 유기물과 인의 함량은 낮고, K의 함량은 풍기 재작지에 가장 높고 기타에서는 큰 차이가 없다. 토성은 괴산 초작지가 시르트식양토이고, 기타는 시프트양토이었다. 액체배지에서 균의 포자발아율은 증유수에서 가장 높았고, 다음이 pfeffer액이며 토양침출액은 가장 낮은 발아율을 나타냈다. 세균은 금산 재작지에 많았고 사상균은 금산과 풍기의 재작지에 많았다. 방사균은 괴산과 풍기의 초작지에 많았으며, 기타 지역에서는 차이가 없었다. 토양내 세균과 사상균의 분포가 많은 토양조건에서 Fusarium solani, F. oxysporum, F. moniliforme 및 Alternaria panax의 4종 균에 미치는 정균현상은 일반적으로 미생물수의 다소에 따라 민감하고, 개량물질이 정균현상에 영향을 준 것은 마늘대, 분쇄콩, 인삼잎 등이고, 정균현상을 해소시킨 물질은 밀짚, 보리짚이며 토양조건에 따라 약간의 차이가 있다.

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고려인삼(高麗人蔘)의 답전윤환재배(畓田輪換栽培) 효과(效果) (Crop Rotation of the Korean ginseng (Panax ginseng C.A.Meyer) and the Rice in Paddy Field)

  • 조재성;김충수;원준연
    • 한국약용작물학회지
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    • 제4권1호
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    • pp.19-26
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    • 1996
  • 인삼의 답전윤환재배에 있어서의 문제점을 파악하는 한편 답전윤환 재배지 토양의 이화학적 특성과 인삼의 생육 및 수량을 조사하며 논에서의 인삼연작재배의 안전성 기작을 구명하여 인삼의 답전윤환재배를 위한 기초를 확립하고자 본 실험을 수행하였던 바 그 결과를 요약하면 다음과 같다. 1. 금산지방에서의 답전윤환 인삼재배시 가장 심각한 문제점은 벼의 재배후에 토양에 잔류하는 무기염류의 과다였다. 2. 밭재배지에 비하여 답전윤환 인삼재배지에서 유기물함량과 CEC 그리고 가리를 위시한 각종 양이온의 함량이 높은 경향이었다. 3. 답전윤환 초작지와 재작지에서의 3년생 및 4년생 인삼의 경엽생육은 밭초작지 인삼의 생육과 뚜렷한 차이가 없었으나 이들에 비해 밭재작지 인삼의 경엽생육은 현저하게 떨어졌다. 또한 답전윤환 재배지에서는 황병의 발생이 많았으며 땅강아지가 우점해충이었다. 4. 답전윤환 초작지와 재작지에서의 4년생 인삼근의 생육 및 간당 근수량은 밭초작지 인삼의 생육 및 수확량과는 뚜렷한 차이가 없었으나 이들에 비해 밭재작지 인삼근의 수량은 현저한 감소를 나타내었다. 5. 답전윤환재배시 인삼의 재배후에 4년정도 벼를 재배한 다음 다시 인삼을 재배하여도 인삼에 연각장해현상이 뚜렷하게 나타나지 않았으며 또한 근부병의 발생도 심하지 않아 비교적 안전한 재작이 가능하였다. 6. 답전윤환지에서 재배된 4년생 인삼의 조-Saponin 및 개별 Saponin함량은 관행의 방법으로 재배된 인삼과 전혀 차이가 없었다. 7. 정상답에 비하여 인삼재배답 토양의 비옥도가 대체로 약간 저조한 경향이었으나 수도의 생육 및 수량에는 전혀 영향을 미치지 않았다.

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BIOLOGICAL CONTROL OF GINSENG ROOT ROTS WITH SOIL AMENDMENTS

  • Chung Hoo Sup;Kim Choong Hoe
    • 고려인삼학회:학술대회논문집
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    • 고려인삼학회 1978년도 학술대회지
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    • pp.67-74
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    • 1978
  • The phenomenon of 'soil sickness' is one of the most important limiting factors for ginseng(Panax ginseng) production in Korea. The principal cause is known to be due to the root rots caused by Cylindrocarpon destructans and Fusarium solani. Attempts were made to control the root rots with non-polluting cultural methods or soil amendments. Among the nine soil amendments tested, crab shell, cow bone and pig feces were selected for further testing. Each of the three amendments increased the populations or various actinomycetes in the range of 10-25 times over that of non-amended soil, whereas the population of C. destructans was reduced to about $50-70\%$ as compared with the control. Five isolates of Streptomyces with clear zones on chitin-agar medium were selected and then tested for their antagonistic effects on C. destructans. When anyone of the five isolates of Streptomyces and C. destructans was grown together in a modified peptone broth, growth of the latter was highly inhibited. When three levels of crab shell, cow bone, or pig feces were used to amend potted soil infested with C. destruetans, the root rot ratings of ginseng seedlings were reduced to less than one half in all the treatments as compared to the control. In another similar experiment, crab shell and cow bone amendments resulted in almost complete control of the seedling root rots in soil infested with C. destructans or F. solani. In conclusion, biological control with soil amendments of ginseng root rots caused by C. destructans and F. solani was successful. Further basic studies should be pursued using soil amendments for better control. In addition, field experiments are needed to complement the soil amendment control measures in an integrated pest control program.

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경기지역 인삼재배지의 토양 및 엽중 적정양분함량 검정 (The Chracterization of Critical Ranges of Soil Physico-chemical Properties of Ginseng Field and Nutrient Contents of Ginseng Leaves in Gyeonggi Province)

  • 진현오;권혁범;양덕춘
    • 한국자원식물학회지
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    • 제24권5호
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    • pp.642-649
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    • 2011
  • 본 연구는 경기도 안성, 포천지역 인삼재배지의 이화학적 성질 및 인삼의 엽 분석을 실시하여 인삼의 생육에 적합한 토양 및 엽중 적정 양분 농도를 설정하고자 수행하였다. 인삼 생근중은 우량포지가 불량포지에 비하여 안성지역이 2-5배, 포천지역이 1.5-2배 차이를 보여 동일 지역내에서도 큰 생육차이를 보이고 있었다. 인삼 생육에 관여하는 토양의 이화학적 성질의 적정 범위는 안성지역에서 공극률(>50%), 전질소(2.0-2.8 g/kg), 유효인산(500-900 mg/kg), 치환성 Ca(2.3-3.5 $cmol_c\;kg^{-1}$)이었으며, 포천지역에서는 액상(13%<), 유효인산(400-650 mg/kg), 치환성 Ca(4.0-4.7 $cmol_c\;kg^{-1}$), 치환성 Mg(<0.8 $cmol_c\;kg^{-1}$), 치환성 K(<0.5 $cmol_c\;kg^{-1}$)로 나타났다. 특히, 안성지역에 있어서는 치환성 염기 성분비(Exch Ca:Mg:K)도 인삼생육에 관여하고 있었는데 우량포지에서 6:2:1, 불량포지에서 4:2:1의 값을 보였다. 엽중 무기양분 함량 적정 범위는 안성지역에서 P(<0.25%), Mg(0.22%<), 포천지역에서 N(1.8%<), P(0.18%<), K(1.5-3.0%)의 값을 보였으며 그 이외의 일부 엽중 무기양분 성분비에서도 적정 범위가 설정되었다.