• 제목/요약/키워드: Ginseng root rots

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수확 후 인삼뿌리썩음병의 생물학적 방제 (Biological Control of Postharvest Root Rots of Ginseng)

  • 정후섭;정은선;이용환
    • 한국식물병리학회지
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    • 제14권3호
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    • pp.268-277
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    • 1998
  • The production of Korean ginseng, one of the most important medicinal root crops, is limited by many factors including soil sickness, root rots in fields as well as during storage prior to consumption. Although much research has been conducted on the diseases in field condition, little information is available on the control of postharvest roots rots. To obtain better management strategy of postharvest root rots in ginseng, biological control using antagonistic bacteria was attempted. Of 208 bacteria obtained form suppressive soil samples, 4 were selected based on the inhibitory effect on mycelial growth of two major causal fungi for postharvest root rots in ginseng, Botrytis cinerea and Fusarium solani. The culture filtrates of these bacterial antagonists greatly inhibited the conidial germination of both pathogenic fungi and produced abnormal morphology such as swollen germ tubes in F. solani and vacuolation of nongerminated conidia in B. cinerea. The population levels of bacterial antagonists on the ginseng roots were gradually increased up to 8 days of incubation. Postharvest root rots of ginseng caused by f. solani and B. cinerea were controlled in dipping tests in the ranges of 60∼80% by antagonistic Bacillus spp. obtained from suppressive soil. These results suggest that biological control using these antagonistic bacteria would be an alternative strategy to control postharvest root rots in ginseng.

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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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Seed and Root Rots of Ginseng (Panax quinquefolius L) Caused by Cylindrocarpon destructans and Fusarium spp.

  • Reeleder, R.D.;Roy, R.;Capell, B.
    • Journal of Ginseng Research
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    • 제26권3호
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    • pp.151-158
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    • 2002
  • Ginseng (Panax quinquefolius L.) has become one of the most valuable herb crops grown in North America. However, traditional cropping practices are favourable to disease and significant losses due to root disease are common, despite frequent use of fungicides. Seedlots are often contaminated with pathogens, however, little is known about the causes of seed decay and the role of seed pathogens as incitants of root rots. It was shown that both Fusarium spp. and Cylindrocarpon destructans were able to rot seeds and that C. destructans was more virulent than Fusarium spp. on seedling roots. A modified rose bengal agar MRBA) medium (1 g KH$_2$PO$_4$; 0.5 g MgSO$_4$; 50 mg rose bengal; 10 g dextrose; 5 g Bacto peptone; 15 g Bacto agar; 30 mg streptomycin sulfate; 250 mg ampicillin; 10 mg rifampicin; 500mg pentachloronitrobenzene; 500 mg dicloran; and 1 L distilled water) was superior to potato dextrose agar in detecting C. destuctans in diseased roots. Isolation of C. destructans from diseased seedlings arising from seeds sown in replant soil supported the hypothesis that this pathogen is a cause of ginseng replant failure in North America.

인삼근부(人蔘根腐) 병원균(病原菌), Fusarium solani 및 Cylindrocarpon destructans에 길항적(拮抗的)인 Streptomyces species의 분류동정(分類同定) (Identification of Streptomyces species antagonistic to Fusarium solani or Cylindrocarpon destructans causing ginseng root rots)

  • 심재욱;이민웅
    • 한국균학회지
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    • 제19권1호
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    • pp.66-73
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    • 1991
  • 인삼병원균(人蔘病原菌) 억제토양(抑制土壤)으로부터 110종(種)의 방선균(放線菌)을 분리(分離)하여 인삼근부(人蔘根腐) 병원균(病原菌)인 Fusarium solani와 Cylindrocapon destructans에 길항효과(拮抗?果)를 나타내는 3종(種)의 방선균(放線菌)이 형태적 배양적 생리적인 특정에 의거하여 각각 분류동정(分類同定)되었다. 포자사슬의 모양은 강화 6-2(K 6-2) 가 감긴형태 (Spira)였고, 서울 2-1(S 2-1)은 고리형태(Retinaculum-apertum)였으며, 양주 2-2(Y 2-2)는 꾸불꾸불한 형태(Rectus-flexibi-lis)였다. 포자벽 표면의 모양은 강화 6-2(K 6-2)에 서는 바늘모양의 형태(Spiny)인 반면, 서울 2-lCS 2- 1)과 양주 2-2(Y 2-2)에서는 모두 매끄러운 형태(Smooth)였으며, 기생균사체의 색깔은 모두 회색(灰色)계통이었다. 따라서, 강화 6-2(K 6-2), 서울2-lCS 2- 1), 양주 2-2(Y 2-2)는 Streptomyces variabilis, Stre-ptomyces virginiae, Streptomyces griseolus로 각각 분류동정(分類同定)되었다 .

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Antibacterial and antifungal effects of Korean propolis against ginseng disease

  • Kim, Sung-Kuk;Woo, Soon Ok;Han, Sang Mi;Bang, Kyeong Won;Kim, Se Gun;Choi, Hong Min;Moon, Hyo Jung;Lee, Sung-Woo
    • International Journal of Industrial Entomology and Biomaterials
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    • 제39권2호
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    • pp.82-85
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    • 2019
  • We investigated the anti-microbial activity of propolis against the pathogenic bacteria and fungi on ginseng. We selected six microbials that caused postharvest root rots in ginseng. Propolis extracts were prepared by using the ethanol extraction method. We seeded the bacteria and fungi related to ginseng disease on a specific culture medium, and treated it with propolis extracts by using the paper disc method. Propolis extracts indicate the anti-microbial activity against Paenibacillus polymyxa, Fusarium solani, Rhizoctonia solani AG-1 and Pythium ultimum. However, the anti-fungal activity of propolis is weak on Pseudomonas fluorescens subsp. Cellulosa and Colletotrichum gloeosporioides. As a result, the antimicrobial effects of propolis against microbial that prevent ginseng growth were confirmed. The antimicrobial effects are shown according to the concentration of propolis against root rot. The fungi also showed antibacterial effects in a dose-dependent manner.

Ginseng Cultural Management and Research Update in Atlantic Canada

  • Ju, H.Y.;Asiedu, S.K.;Hong, S.C.;Gray, B.;Sampson, G.;LeBlanc, P.
    • 고려인삼학회:학술대회논문집
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    • 고려인삼학회 1998년도 Advances in Ginseng Research - Proceedings of the 7th International Symposium on Ginseng -
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    • pp.103-108
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    • 1998
  • The Canadian production of American ginseng (Panax quinquefolius L.) occurs mainly in Ontario, British Columbia and the Atlantic provinces. Although ginseng is a profitable crop, its successful production is dependent on careful consideration of cultural management f include site selection, site preparation, seed selection and handling, shading actors which and mulching, pest and nutritional management, and handling of harvested crops. Diseases of particular concern in Atlantic Canada are root rots caused by Phytopkthora cactorum, Cylindrocarpon destructans and Fusarium sp. Recently two systemic fungicides (metalaxyl and fosetylal) were registered; however, growers in Atlantic Canada have experienced metalaxyl resistance resulting from the reliance on this single compound for the control of Phytophthora sap. Current research being conducted on alternative control of these diseases will be discussed. In weed control research, 2, 4-D, MCPA, clopyralid have continued to show promise for weed contro1 at low rates. In trials to evaluate non-selective herbicides as post-senescence or pre-emergence in ginseng, glyphosate (Round-up) provided control of perennials as well as willowherb and lambsquarters. In phytoxicity trials, ginseng significantly tolerated grass herbicides, including clethodim, rimsulfuron, trakloxydim, nicosulfuron and fenoxyprop. For broadleaf herbicides, significant tolerance was shown for bromoxynil, thifensulfuron methyl, flumetulam/clopyralid, thifensulfuro/tribenuron. Disease and weed management of ginseng in Atlantic Canada will be discussed.

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Serratia plymuthica에 의한 인삼 세균뿌리썩음병 발생 (First Report of Bacterial Root Rot Caused by Serratia plymuthica on Panax ginseng)

  • 정원권;김영수;최진국;김승한;장명환;권태룡;전용호
    • 식물병연구
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    • 제24권4호
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    • pp.332-338
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    • 2018
  • 2011년 8월 경상북도 봉화군 재산면 농가포장 5년생 인삼포장에서 잎이 푸른색을 띈 채 급격하게 마르는 증상이 발견되었다. 잎이 시든 직후 인삼의 뿌리를 채취하였으나, 뿌리나 줄기에서 특별한 병징은 없었으며, 뿌리의 수분이 약간 빠져나간 상태였다. 이러한 증상이 발생된 지 10일이 경과된 뿌리에서는 뿌리가 물러지면서 썩는 증상이 나타났다. 이러한 병징과 건전부의 경계부위에서 세균이 분리되었으며, 이 세균에 의한 뿌리썩음병이 의심되었다. 세균을 배양한 후 건전 인삼에 접종하자, 동일한 썩음 증상이 발현되었으며, 병반으로부터 동일한 세균이 재분리되었다. 이 세균을 BioLog system에 의한 탄소원 이용여부, Vitek 2 system을 이용한 생화학적 반응, GC-MIDI Sherlock system을 이용한 지방산 조성, 16S rRNA 염기서열을 분석한 결과, 모두 Serratia plymuthica로 동정되었다. 이에 따라 인삼 뿌리에 발생하는 이 병을 Serratia plymuthica에 의한 인삼 세균뿌리썩음병으로 명명하여 보고하고자 한다.

Past, Present, and Future Researches on Biological Control of Plant Diseases in Korea

  • Chung, Hoo-Sup
    • 한국식물병리학회:학술대회논문집
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    • 한국식물병리학회 1994년도 Proceedings of International Symposium on BIOLOGICAL CONTROL OF PLANT DISEASES Korean Society of Plant Pathology
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    • pp.1-10
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    • 1994
  • Biological control of plant disease has been considered a potential control strategy in integrated pest management in recent years. This paper reviewed the progress of research on the biological control of plant diseases in Korea during the last two decades and adopts some future prospects. The crop diseases included, red pepper, Phytophthora blight, ginseng root rots cucumber wilt, sesame damping-off, strawberry wilt and tobacco bacterial wilt and mosaic. Biological control of plant diseases requires a multi-disciplinary approach involving input from plant pathologists, ecologists, mycologists and molecular biologists. The author proposed to organize a group“Committee for Biological Control”including researchers, industries, growers and administrators.

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토양내(土壤內) 식물(植物) 병원균(病原菌)의 발병억제(發病抑制) 및 유발성질(誘發性質) (Nature of Suppressiveness and Conduciveness of Some plant pathogens in Soils)

  • 심재욱;이민웅
    • 한국균학회지
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    • 제18권3호
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    • pp.164-177
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    • 1990
  • 인삼(人蔘)(Panax ginseng C. A. Meyer)의 증산을 제한하는데 가장 큰 요인(要因)은 연작장해이므로 인삼(人蔘)의 증산에 기여할 수 있는 기초자료를 얻기위해 조사(調査)를 실시하였다. 1. 토양(土壤) pH가 F. solani 및 C. destructans의 포자발아(胞子發芽) 그리고 R. solani의 균사생장(菌絲生長)에 미치는 상관관계(相關關係)는 각각 r=0.2645, r=0.315, r=0.19로서 정(正)의 상관(相關)을 나타내었다. 2. 병원균(病原菌)의 포자발아(胞子發芽)와 토양미생물(土壤微生物) 분포수(分布數)와의 관계(關係)를 분석(分析)한 결과(結果), F. solani와 전세균(全細菌), 방선균(放線菌), 섬유소분해(纖維素分解) 세균(細菌)의 분포수(分布數)와의 관계(關係)에서 각각 r=0.21, r=0.37, r=0.20의 정(正)의 상관(相關)을 나타내었으나 전진균(全眞菌)과의 관계(關係)에서는 r=-0.20으로서 부(負)의 상관관계(相關關係)였다. R. solani의 균사생장(菌絲生長)과 방선균(放線菌)의 분포수(分布數)사이에는 정(正)의 상관(相關)(r=0.24)이 있었다. 3. 총 146개 토양(土壤)중에서 F. solani는 40개 토양(土壤)에서, C. destructans는 20개 토양(土壤)에서, R. solani는 9개 토양(土壤)에서 각각 병원균(病原菌) 억제토양(抑制土壤)으로 선발(選拔)되었다. 4. 병원균(病原菌) 억제토양(抑制土壤)의 K, Ca, Mg, Na의 평균함양(平均含量)은 유발토양(誘發土壤)의 것보다 적었으며 병원균(病原菌) 억제토양(抑制土壤)의 유기물함양(有機物含量)은 유발토양(誘發土壤)보다 2배이상 높았다. $P_2O_5$의 함양(含量)은 F. solani와 R. solani의 억제토양(抑制土壤)이 유발토양(誘發土壤)보다 낮은 반면, C. destructans의 억제토양(抑制土壤)은 유발토양(誘發土壤)보다 약간 높았다. 토양(土壤) pH에 있어서 억제토양(抑制土壤)의 평균(平均) pH는 유발토양(誘發土壤)보다 낮은 수치였다. 토양(土壤)의 물리적(物理的) 특성(特性)에 있어서 모래의 평균함양(平均含量)은 병원균(病原菌) 억제토양(抑制土壤)이 유발토양(誘發土壤)보다 2배 정도가 높은 반면, 미사(微砂)와 점사(粘士)의 함양(含量)은 유발토양(誘發土壤)보다 낮았다. 5. 병원균(病原菌) 억제토양(抑制土壤)과 유발토양(誘發土壤)의 미생물분포(微生物分布)는 F. solani 억제토양(抑制土壤)에 있어서 전세균(全細菌), 전진균(全眞菌), 섬유소분해(纖維素分解) 진균(眞菌)의 분포수(分布數)가 유발토양(誘發土壤)보다 높았던 반면, 방선균(放線菌), 섬유소분해(纖維素分解) 세균(細菌)의 분포수(分布數)는 유발토양(誘發土壤)보다 낮았으며, 전세균(全細菌) 및 전진균(全眞菌)의 분포수(分布數)는 병원균(病原菌) 억제토양(抑制土壤)과 유발토양(誘發土壤) 사이에 각각 유의성(有意性)(P=0.05)이 있었고, 방선균(放線菌)은 고도(高度)의 유의성(有意性)(P=0.01)이 두 토양(土壤) 사이에서 인정되었다. C. destructans의 억제토양(抑制土壤)에 있어서 전세균(全細菌), 전진균(全眞菌), 방선균(放線菌), 섬유소분해(纖維素分解) 진균(眞菌)의 분포수(分布數)는 유발토양(誘發土壤)의 분포수(分布數)보다 높았던 반면, 섬유소분해(纖維素分解) 세균(細菌)의 분포수(分布數)는 유발토양(誘發土壤)보다 2배 정도가 낮았다. R. solani의 억제토양(抑制土壤)에 있어서 전진균(全眞菌)의 분포수(分布數)가 유발토양(誘發土壤)의 분포수(分布數)보다 높았던 반면, 전세균(全細菌), 방선균(放線菌), 섬유소분해(纖維素分解) 세균(細菌), 섬유소분해(纖維素分解) 진균(眞菌)의 분포수(分布數)는 유발토양(誘發土壤)보다 낮았다. 6. 인삼근부병(人蔘根腐病) 발병(發病) 억제토양(抑制土壤)의 선발(選拔)은 공시(供試) 병원균(病原菌)별로 인삼(人蔘)이 식재(植栽)된 각각의 16개 토양(土壤)중 F. solani는 14개 토양(土壤)에서, C. destructans는 15개 토양(土壤)에서 각각 발병(發病) 억제성(抑制性)을 확인하였다. F. solani의 발병(發病) 억제토양(抑制土壤)에서 인삼(人蔘)의 근부률(根腐率)은 $1.0{\sim}17.4%$였으며, C. destructans의 발병(發病) 억제토양(抑制土壤)에서 인삼(人蔘)의 근부률(根腐率)은 $0.2{\sim}20.4%$였다.

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