인삼탄저병에 감염된 포기의 종자에는 , 겉으로 건전한 포기의 종자에도 의 탄저병균을 보유하고 있었으며, Fusarium, Alternaria, Phoma, Trichoderma 등도 많이 분리되었다. 탄저병균은 실내에 있는 잎의 조직에서 18개월간 생존하였으며, 옥외의 노지, 지하 10, 30cm에서도 월동할 수 있었다. 인삼잎에 탄저병균의 분생자를 접종하였을 때에 발병하였고, 이하에서는 전혀 병반이 형성되지 않았다. 암흑구, 400룩스구에서 탄저병반은 미소하였고, 1200룩스구에서 중정도, 직사광선에서는 극심하였다. 그리고 연령이 어린 잎일수록, 분생자수가 많을수록 병반면적율은 높았다. 병원균의 균사생장 및 분생자형성의 최적온도는 였고, 균사생장의 최적 pH는 2.8-4.2였으며 분생사형성은 5.2-5.8이었다. 포장에서 살균제와 인삼탄저병균의 분생자를 함께 3년생식물에 처리했을 때 방제효과가 큰 것은 difolatan 그리고 maneb, zineb, captan, phaltan의 순위였으며 ferbam과 보르도액은 약간 낮았다.
Background : This study was conducted to investigate the resistance of Collectotrichum gloeosporioides to 9 fungicides.
Methods and Results : With 3 isolates of Collectotrichum gloeosporioides obtained from diseased leaf of ginseng, it was conducted to detect the fungicide resistance of C. gloeosporioides against 9 chemicals through an agar dilution method. PDA medium was used for monitoring the resistance. Among the chemicals, fenhexamid・prochloraz manganese complex, fluazinam and metconazole exhibited high antifungal activity to the ginseng anthracnose fungus. When measuring the effectiveness for the prevention of anthracnose, 3 fungicides at 10 ㎍/㎖ showed 88.1 - 94.7% of preventive effect against C. gloeosporioides. But, the isolates resist to dimethomorph・dithianon, iminoctadine tris (albesilate), kasugamyci n・thiophanate-methyl, dimethomorph・pyraclostrobin, azoxystrobin.
Conclusion : In summary, to develop the control system with fungicides, 3 fungicides (fenhexamid・prochloraz manganese complex, fluazinam and metconazole) were applied on ginseng at the indicated time. A reduced spray program based on efficacious fungicides will be useful for ginseng growers and provide more options for controlling anthracnose in Korea.
Background : Among registered fungicides for controlling ginseng disease, the disease occurrence rate from the mixed use of a single ingredient, mancozeb WP, and copper sulfate basic WP was examined, and experiments were conducted to establish safe disease control system.
Methods and Results : As for the medicines used for the experiments, besides registered Pyraclostrobin WG as a single ingredient for ginseng disease control, 14 kinds were used for experiments. The fungicide was sprayed 5 times on June 21, July 4, July 16, August 2 and August 24. The examination was conducted 5 days, 10 days, 15 days, and 20 days after the final fungicide treatment. Anthracnose occurrence rate 5 days after the final fungicide treatment was 0.0 - 61.3% which was different depending on fungicides, and in a single treatment, the occurrence rate was less than 1% in 6 fungicides. In the single treatment, the occurrence rate was more than 1%, but 9 kinds of fungicides which had less than 1% occurrence rate in the case of mixed use with mancozeb, and one kind in the case of mixed use with copper sulfate basic 10 days later, the occurrence rate was 0.0 - 100% and there were lots of differences in the disease occurrence rate depending on fungicides. 10 kinds of fungicides showed the disease occurrence rate of more than 10.0% in the case of a single treatment. Among them, 9 fungicides showed the disease occurrence rate of less than 1.0% in the case of mixed use with mancozeb, indicating the effect of lowering disease occurrence rate in the case of mixed use. 15 days later, 9 fungicides showed disease occurrence rate of more than 2%, 1 kind of fungicide had the disease occurrence rate of less than 1%, and the overall disease occurrence rate increased. Among them, 7 kinds of fungicides showed the disease occurrence rate of less than 1% from the mixed use. 20 days later, 12 kinds of fungicides showed the disease occurrence rate of more than 50%, and only 1 kind of fungicide showed the disease occurrence rate of less than 1%. In the case of mixed use with mancozeb, 2 kinds had the disease occurrence rate of less than 10% and 1 kind of fungicide had the disease occurrence rate of less than 1%.
Conclusion : For prevention of anthracnose disease of ginsengs during a rainy season, the disease occurrence rate from a single or mixed use was examined, and the examination found that rather than a single use, mixed use decreased the disease occurrence rate. In particular, the mixed use with mancozeb showed low disease occurrence rate and prevented the disease occurrence rate for a long time.
본 연구는 인삼점무늬병과 탄저병에 대한 친환경자재로 만들어진 친환경 살균제의 억제효과를 알아보기 위해서 수행을 했다. 인삼 점무늬병과 인삼 탄저병들은 인삼뿌리가 비대하기 시작하기 전에 낙엽을 시켜서 수확량을 크게 감소하는 주요한 병들이다. 천연칼슘, 녹차추출물, 홍삼박 술등은 A. panax에 의해서 유발된 인삼 점무늬병에 대해서 상당한 억제효과를 보였고 게 껍질 발효액과 익모초자연즙액은 C. gloeosporioides에 의해서 유발된 인삼탄저병에 대해서 큰 억제효과를 나타내었다. 이들 친환경 살균제는 치료효능보다 대체적으로 예방효능이 더 우수 하였다. 그러므로 이들 친환경 자재들은 인삼 유기재배포장에서 사용할 수 없는 화학농약을 대체하는 살균제로써 이용할 수 있고 그들의 억제효과를 극대화하기 위해 발병 전에 처리를 해야 한다.
This study was conducted to select and develop effect of eco-friendly organic materials for the eco-friendly prevention of Anthracnose occurred in the ginseng. Anthracnose on ginseng is occurred by Colletotrichum gloeosporioides and the crop damage is severe especially from July to August after rainy season. The test results showed that control effect by test products materials on the three years ginseng and four years ginseng field was lower in eco-friendly organic materials than that of chemical pesticide. However, the control effect of bordeaux mixture was higher with 71.3% and 73.8% levels than those of mineral matter, microbial agent, and developed plants extract mixtures (Eugenol, Curcumin, Wood vinegar, etc). On the other hand, three types of developed plants extract mixtures (3 types) showed control effect in a range of from 58.1% to 63.6% against Anthracnose which was higher as compared with plant extract alone and sodium silicate regardless of ages of ginseng. The results of this study would attribute in verifying the control effect of eco-friendly materials against Anthracnose for ginseng through investigating antimicrobial compounds contained in the plants body. Also, it would be used as control method against Anthracnose occurred in ginseng by judging the right control time through monitoring occurrence of disease.
This study was carried out to research microorganisms having the antifungal activity against ginseng Alternaria blight pathogen Alternaria panax and ginseng anthracnose pathogen Colletotrichum gloeosporioides. Eleven Bacillus strains. were isolated from Korean traditional soybean paste and Kimchi. Among the 11 isolates, DJ5, KC1, KC2 and KC4 showing antagonistic activity on the mycelial growth of A. panax and C. gloeosporioides in pairing culture were finally selected as the antagonistic microorganisms. Based on 16s rRNA sequence and phylogenetic tree analysis, they were identified as Bacillus spp.. The selected microorganisms were investigated antagonistic activity by measured leaf-segment colonization in pot test. When Bacillus sp. were injected after A. panax treatment, KC1, KC2 and KC4 showed similar effect to chemical pesticides treated control. To measure preventive effect of Bacillus sp, antagonistic microorganisms were injected and C. gloeosporioides was treated in pot. When measuring the effectiveness for the prevention of Anthracnose, All Bacillus spp. showed approximately 83~90 % degree of superior preventive effect. In general, The four Bacillus spp. isolated from Korean traditional fermented foods showed therapeutic effect of Alternaria blight and preventive effect of Anthracnose.
16과 20종의 공시 식물체 중 양파(Allium cepa), 대황(Rheum undulatum) 및 황련(Coptis japonica) 등의 추출액이 인삼 탄저병균(C. gloeosporioides)에 대해 균사생장 억제 효과가 우수하였다. 양파와 대황은 배지내의 추출액 농도가 1.0% 이상일 때 균사 생장억제 효과가 인정 되었고, 황련의 추출액은 배지 내의 농도가 0.5% 이상일 때에도 균사 생장 억제 효과가 50% 이상으로 나타나 공시된 식물체 추출액 중에서 항균 활성이 가장 우수하였다. 양파의 추출액은 10.0% 희석농도에서는 60% 이상의 발아 억제 효과가 있었고, 대황의 추출액은 2.0% 그리고 황련의 추출액은 1.0%의 희석 농도에서도 포자 발아억제율이 90% 이상으로 나타나 황련추출액이 가장 우수함을 알 수 있었다. 양파와 대황의 추출액은 2.0%의 희석농도에서는 어느 정도 방제 효과가 있었으나 1.0% 이하의 희석 농도에서는 효과가 많이 떨어졌고, 황련의 추출액은 1.0%의 희석농도에서도 50%이상의 방제 효과가 있었으나, 3가지 식물체 추출액 모두 대조약제인 Mancozebwp에 비해서는 그 효과가 상당히 떨어지는 경향이 었다. 세가지 식물체 추출액 모두 10.0%의 희석농도에서는 인삼 잎의 엽육이나 엽맥이 갈변하는 등의 약해의 징후가 나타났고, 황련의 추출액은 2.0%의 희석 농도에서도 약간의 약해 징후가 관찰되었다.