• 제목/요약/키워드: Blue mold

검색결과 50건 처리시간 0.034초

종자 소독처리와 광질에 따른 약용작물 잔대 종자의 발아특성 (Germination Characteristics of Medicinal Crop Adenophora triphylla var. japonica Hara as Affected by Seed Disinfection and Light Quality)

  • 이혜리;김현민;정현우;오명민;황승재
    • 생물환경조절학회지
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    • 제28권4호
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    • pp.404-410
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    • 2019
  • 본 연구는 고부가가치 약용작물인 잔대(Adenophora triphylla var. japonica Hara)의 종자 형태특성과 휴면 유형을 조사하고, 발아율 향상을 위한 소독제와 광질을 선발하기 위해서 수행되었다. 종자 소독은 증류수(대조구), NaClO 4%, $H_2O_2$ 4%와 benomyl $500mg{\cdot}L^{-1}$를 이용하여 실시하였으며, 광질처리는 암조건(control I), 형광등(control II), LEDs[red, blue, green, RB LEDs(red:blue = 8:2, 6:4, 4:6, 2:8)]를 광주기 12/12(light/dark), 광도 $150{\mu}mol{\cdot}m^{-2}{\cdot}s^{-1}$ photosynthetic photon flux density로 설정하였다. 잔대 종자는 emryo (E):seed (S) ratio가 0.4로 미숙배 종자지만 30일 이내에 발아가 되며, 침지 6시간 만에 포화상태에 도달하였다. 종자 소독 후 benomyl 처리에서 곰팡이 발생이 유의적으로 억제되었으며, 최종 발아율이 87%로 가장 높았다. 적색광에서 최종 발아율이 92%로 가장 높았으며, 일일평균발아수는 R2B8에서 가장 적었다. 따라서 잔대 종자는 휴면이 거의 없으며, benomyl 소독제와 적색광이 발아율 향상에 효과적이여, 향후 약용작물 잔대 재배에 이용가치가 높을 것이라 판단된다.

Proteome Changes in Penicillium expansum Grown in a Medium Derived from Host Plant

  • Xia, Xiaoshuang;Li, Huan;Liu, Fei;Zhang, Ye;Zhang, Qi;Wang, Yun;Li, Peiwu
    • Journal of Microbiology and Biotechnology
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    • 제27권3호
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    • pp.624-632
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    • 2017
  • Penicillium expansum causes blue mold rot, a prevalent postharvest disease of pome fruit, and is also the main producer of the patulin. However, knowledge on the molecular mechanisms involved in this pathogen-host interaction remains largely unknown. In this work, a two-dimensional gel electrophoresis-based proteomic approach was applied to probe changes in P. expansum 3.3703 cultivated in apple juice medium, which was used to mimic the in planta condition. The results showed that the pH value and reducing sugar content in the apple juice medium decreased whereas the patulin content increased with the growing of P. expansum. A total of 28 protein spots that were up-regulated in P. expansum when grown in apple juice medium were identified. Functional categorization revealed that the identified proteins were mainly related to carbohydrate metabolism, secondary metabolism, protein biosynthesis or degradation, and redox homeostasis. Remarkably, several induced proteins, including glucose dehydrogenase, galactose oxidase, and FAD-binding monooxygenase, which might be responsible for the observed medium acidification and patulin production, were also detected. Overall, the experimental results provide a comprehensive interpretation of the physiological and proteomic responses of P. expansum to the host plant environment, and future functional characterization of the identified proteins will deepen our understanding of fungi-host interactions.

사과 푸른곰팡이병균의 각종 살균제에 대한 내성 (Tolerance of Apple Blue Mold (Penicillium expansum) to Various Fungicides)

  • 이창은
    • 한국식물병리학회지
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    • 제1권2호
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    • pp.128-135
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    • 1985
  • 국내 사과산지 4개처에서 푸른곰팡이 병균 Penicillium expansum을 분리하여 각종 살균제에 대한 반응을 조사하였다. 일반적으로 균의 약제내성은 지역간에 차이가 적었으며 약제의 종류 및 농도에 의한 차이는 컸고 봄균주가 자랄 수 없는 고농도에서도 가을균주는 생장하였다. 균사생장에 대한 살균제의 $ED_{50}$$0.1{\mu}g\~41.7{\mu}g/ml$$100{\mu}g\~2,250{\mu}g/ml$로서 저장고 및 과수원에서 분리한 균의 억제효과가 높고 균의 내성이 낮았으며, captafol, captan, iprodione, mancozeb이 $2.6{\mu}g\~750{\mu}g/ml$$638{\mu}g\~40,500{\mu}g/ml$로서 약효 및 균의 내성이 중도였고, chlorothalonil folpet, oxidong, propineb, triademefon이 $27.8{\mu}g\~8,354{\mu}g/ml$$2,625{\mu}g\~150,357{\mu}g/ml$로서 효과가 낮고 균의 내성이 높았다. 포자형성 억제효과는 균사생장 억제효과와 같은 경향을 보였으며 포자발아 억제효과는 ployoxin 및 triademefon을 제외하고는 반대의 경향을 보였다.

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비접촉식 저온 대기압 면방전 플라즈마를 이용한 저장 '세토카' 감귤의 선도유지 효과 (Preservatory effect of stored 'Setoka'(Citrus sp.) using the noncontacted low temperature atmospheric pressure surface discharged plasma)

  • 안현주;박경진;김상숙
    • 한국식품저장유통학회지
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    • 제23권6호
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    • pp.772-777
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    • 2016
  • 국내 주요 재배되는 만감류 중의 하나인 '세토카'는 시설재배하여 3월 까지 수확이 이루어진다. 껍질이 얇은 '세토카'는 저장 중 풍미 변화와 부패율 정도가 다른 만감류에 비하여 상대적으로 높다. 비접촉식 대기압 면방전 저온 플라즈마 기술은 전기적 방전을 통하여 주변의 기체를 플라즈마 상태로 전환시키는 것으로 이를 통해 오존($O_3$)과 질소산화물(NOx) 등이 발생되고, 이들 활성종 기체들에 의해 살균효과를 볼 수 있다. 본 실험에서는 서귀포에서 수확한 '세토카'를 일반상온저장, 저온저장($10{\pm}1^{\circ}C$, $80{\pm}3%$), 저온저장에 플라즈마 처리군으로 나누어 80일 동안 저장하고 10일 간격으로 품질 및 부패율을 조사하였다. 총 당함량은 3 처리 모두 일정하게 유지되었으며, 산 함량은 저장기간 동안 꾸준히 감소하였고, 특히 상온저장 처리에서 저장 30일부터 급격하게 감소하여 0.5%이하의 산 함량을 나타내었다. 경도는 저장 40일까지 소폭으로 증가하는 경향이었으나 처리간 유의적인 차이는 보이지 않았다. 감모율은 상대적으로 저장 온도가 높은 상온저장에서의 중량감소가 컸다. 저장 80일 후의 부패율은 상온저장 50.5%, 저온저장 5.6%, 저온저장에 플라즈마 처리군에서는 1.9%로 조사되었다. 상온저장에서 발생된 저장병의 73%가 곰팡이병이었으나 플라즈마 처리군에서 발생된 부패병은 대부분 무름병 증상이며, Penicillium 균에 의한 부패병은 발생되지 않움으로써 '세토카' 저장 시 플라즈마의 살균효과를 확인하였다.

Biological Control of Soil-borne Diseases with Antagonistic Bacteria

  • Kim, Byung-Ryun;Hahm, Soo-Sang;Han, Kwang-Seop;Kim, Jong-Tae;Park, In-Hee
    • 한국균학회소식:학술대회논문집
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    • 한국균학회 2016년도 춘계학술대회 및 임시총회
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    • pp.25-25
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    • 2016
  • Biological control has many advantages as a disease control method, particularly when compared with pesticides. One of the most important benefits is that biological control is an environmental friendly method and does not introduce pollutants into the environment. Another great advantage of this method is its selectivity. Selectivity is the important factor regarding the balance of agricultural ecosystems because a great damage to non target species can lead to the restriction of natural enemies' populations. The objective of this research was to evaluate the effects of several different bacterial isolates on the efficacy of biological control of soil borne diseases. White rot caused by Sclerotium cepivorum was reported to be severe disease of garlic and chive. The antifungal bacteria Burkholderia pyrrocinia CAB08106-4 was tested in field bioassays for its ability to suppress white rot disease. In field tests, B. pyrrocinia CAB08106-4 isolates suppressed white rot in garlic and chive, with the average control efficacies of 69.6% and 58.9%, respectively. In addition, when a culture filtrate of B. pyrrocinia CAB08106-4 was sprayed onto wounded garlic bulbs after inoculation with a Penicillium hirstum spore suspension in a cold storage room ($-2^{\circ}C$), blue mold disease on garlic bulbs was suppressed, with a control efficacy of 79.2%. These results suggested that B. pyrrocinia CAB08106-4 isolates could be used as effective biological control agents against both soil-borne and post-harvest diseases of Liliaceae. Chinese cabbage clubroot caused by Plasmodiophora brassicae was found to be highly virulent in Chinese cabbage, turnips, and cabbage. In this study, the endophytic bacterium Flavobacterium hercynium EPB-C313, which was isolated from Chinese cabbage tissues, was investigated for its antimicrobial activity by inactivating resting spores and its control effects on clubroot disease using bioassays. The bacterial cells, culture solutions, and culture filtrates of F. hercynium EPB-C313 inactivated the resting spores of P. brassicae, with the control efficacies of 90.4%, 36.8%, and 26.0%, respectively. Complex treatments greatly enhanced the control efficacy by 63.7% in a field of 50% diseased plants by incorporating pellets containing organic matter and F. hercynium EPB-C313 in soil, drenching seedlings with a culture solution of F. hercynium EPB-C313, and drenching soil for 10 days after planting. Soft rot caused by Pectobacterium carotovorum subsp. carotovorum was reported to be severe disease to Chinese cabbage in spring seasons. The antifungal bacterium, Bacillus sp. CAB12243-2 suppresses the soft rot disease on Chinese cabbage with 73.0% control efficacy in greenhouse assay. This isolate will increase the utilization of rhizobacteria species as biocontrol agents against soft rot disease of vegetable crops. Sclerotinia rot caused by Sclerotinia sclerotiorum has been reported on lettuce during winter. An antifungal isolate of Pseudomonas corrugata CAB07024-3 was tested in field bioassays for its ability to suppress scleritinia rot. This antagonistic microorganism showed four-year average effects of 63.1% of the control in the same field. Furthermore, P. corrugata CAB07024-3 has a wide antifungal spectrum against plant pathogens, including Sclerotinia sclerotiorum, Sclerotium cepivorum, Botrytis cinerea, Colletotrichum gloeosporioides, Phytophotra capsici, and Pythium myriotylum.

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Effect of LED Irradiation on Growth Characteristids of Ginseng Cultivated in Plastic Film House

  • Seo, Sang Young;Cho, Jong hyeon;Kim, Chang Su;Kim, Hyo Jin;Kim, Dong Won;An, Min Sil;Yoon, Du Hyeon
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2019년도 추계학술대회
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    • pp.45-45
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    • 2019
  • This experiment was carried out using artificial clay and LED in the plastic film house (irradiation time: 08:00~18:00/day). Seedlings (n = 63 per $3.3m^2$) of ginseng was planted on May 17, 2018. LED was combined with red and blue light in a 3:1 ratio and irradiated with different light intensity. The average air temperature from April to September was $12.3^{\circ}C$ $-26.0^{\circ}C$ and it was the the highest at $26.0^{\circ}C$ in August. The test area where fluorescent lamp was irradiated tended to be somewhat higher than the LED irradiation area. The chemical properties of the test soil are as follows. pH levels was 5.3~5.5, EC levels 0.45~0.52 dS/m and OM levels 33~37%. The total nitrogen content was 0.35~0.47% and the available $P_2O_5$ contents was 13.7~16.0 mg/kg, which was lower than the suitable level of 70~200 mg/kg. Exchangeable cations K and Mg contents were within acceptable ranges, but the Ca contents was $28{\sim}38cmol^+/kg$ levels higher than the permissible level ($2{\sim}6cmol^+/kg$). Germination of ginseng leaves took 8~9 days and the overall germination rate was 70~75%. The photometric characteristics of LED light intensity are as follows. The greater the light intensity, the higher the PAR (Photosynthetic Action Radiation) value, illuminance and solar irradiation. Photosynthetic rate was also increased with higher light intensity was investigated at $1.7{\sim}3.2{\mu}mol\;CO_2/m^2/s$. Leaf temperature ($23.7{\sim}24.8^{\circ}C$) by light intensity was the same trend. The growth of aerial parts (plant height etc.) were generally excellent when irradiated with 3 times the light intensity, the growth of the ginseng aerial parts were excellent as follows. The plant height was 42.6 cm, stem length was 25.2 cm, leaf length was 9.6 cm and stem diameter was 5.0 mm. The growth of underground part (root length etc.) was the same, and the root length was 24.4 cm, the tap root length was 6.0 cm, diameter of taproot was 18.2 mm and the fresh root weight was 17.2 g. There were no disease incidence such as Alternaria blight, Gray mold and Anthracnose. Disease of Damping off occurred 2.2~3.6% and incidence ratio of rusty root ginseng was 14.6~20.7%. Leaf discoloration rate was 13.7~48.9% and increased with increasing light intensity. Ginsenoside content of ginseng by light intensity is under analysis.

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Effect of LED Light Quality and Intensity on Growth Characteristics of Ginseng Cultivated in Plastic House

  • Sang Young Seo;Jong hyeon Cho;Chang Su Kim;Hyo Jin Kim;Min Sil An;Du Hyeon Yoon
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2020년도 추계국제학술대회
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    • pp.61-61
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    • 2020
  • This experiment was carried out using artificial bed soil and LED in the plastic film house(irradiation time: 07:00-17:00/day). Seedlings(n=63 per 3.3 m2) of ginseng was planted on May 17, 2018. LED was combined with red and blue light in a 3:1 ratio and irradiated with different light intensity(40-160 µmol/m2/s). Average air temperature from April to September according to the light intensity test was 20.4℃-20.9℃. Average artificial bed soil temperature was 20.1℃-21.7℃. The test area where fluorescent lamp was irradiated tended to be somewhat lower than the LED irradiation area. The chemical properties of the test soil was as follows. pH levels was 6.6-6.7, EC levels 0.9-1.3 dS/m and OM levels 30.6-32.0%. The available P2O5 contents was 73.3-302.3 mg/kg. Exchangeable cations K and Ca contents were higher than the allowable ranges and mg content was high in the fluorescent lamp treatment. The photometric characteristics of LED light intensity are as follows. The greater the light intensity, the higher the PPFD(Photosynthetic Photon Flux Density) value, illuminance and solar irradiation. Fluorescent lamp treatment had high illuminance value, but PPFD and solar irradiation were lower than LED intensity 40 µmol/m2/s treatment. The photosynthetic rate increased(2.0-3.8 µmolCO2/m2/s) as the amount of light intensity increased, peaking at 120 µmol/m2/s, and then decreasing. The SPAD (chlorophyll content) value decreased as the amount of light intensity increased, and was the highest at 36.1 in fluorescent lamp treatment. Ginseng germination started on April 5 and took 14-17 days to germinate. The overall germination rate was 68.8-73.6%. The growth of aerial parts(plant height etc.) were generally excellent in the treatment of light intensity of 120-160 µmol/m2/s. The plant height was 41.9 cm, stem length was 24.1 cm, leaf length was 9.8 cm and stem diameter was 5.6 mm. The growth of underground part (root length etc.) was the best in the treatment with 120 µmol/m2/s of light intensity. Due to the root length was long(24.8 cm) and diameter of taproot was thick(18.7 mm), the fresh root weight was the heaviest at 24.8 g. There were no disease incidence such as Alternaria blight, Gray mold and Anthracnose. Disease of Damping-off caused by Rhizoctonia solani occurred 0.6-1.5% and incidence ratio of rusty root ginseng was 30.8-62.3%. It is believed that the reason for the high incidence of rusty root ginseng is that the amount of field moisture capacity of artificial bed soil is larger than the soil. Leaf discoloration rate was 13.7-32.3%.

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Paenibacillus polymyxa CK-1이 생산한 길항물질이 Trichoderma sp. 생육에 미치는 영향 (The effect of antagonists produced by Paenibacillus polymyxa CK-1 on the growth of Trichoderma sp.)

  • 이상원;최진상;김철호
    • 한국버섯학회지
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    • 제12권3호
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    • pp.201-208
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    • 2014
  • 버섯배지의 발효를 효율적으로 행하면서 버섯의 재배 시 빈번하게 발생하는 푸른곰팡이 병의 원인 균주인 Trichoderma sp. 곰팡이 성장을 억제하는 세균의 분리를 행하였다. 균원시료로부터 1차 분리한 약 200여 균주 중에서 성장속도가 빠르고, SM, AM 및 CM의 평판배지 상에서 clear zone이 뚜렷한 6균주를 2차 분리하였다. 분리한 6균주 중 cellulase, amylase 및 protease의 효소활성이 높고 T. virens와 T. harzianum에 대하여 강한 항균활성을 나타낸 C-1균주를 최종 분리균주로 선정하였다. 분리한 C-1균주는 Bergey's Manual of Systematic Bacteriology에 의한 동정과 16S rDNA 염기서열 분석을 행한 결과 Paenibacillus polymyxa 밝혀져 P. polymyxa CK-1으로 명명하였다. P. polymyxa CK-1균주의 생육조건을 검토한 결과 최적배양온도는 $45^{\circ}C$, 생육을 위한 배지의 최적 pH는 6.0~7.0 범위로 나타났다. T. virens와 T. harzianum 곰팡이의 생육억제를 위한 P. polymyxa CK-1의 배양시간은 22~36시간이 적당하였다. 그리고 P. polymyxa CK-1균주의 24시간째 배양용액을 처리한 petri dish에 두 곰팡이를 각각 접종한 후 10일 동안 방치하여도 곰팡이의 생육은 관찰되지 않았다. P. polymyxa CK-1 균주가 생산한 길항물질의 열안정성을 검토한 결과 $60^{\circ}C$$100^{\circ}C$로 20분 동안 처리한 시험구에서는 두 곰팡이의 균사성장이 전혀 관찰되지 않았지만 $121^{\circ}C$에서 20분 동안 처리한 시험구에서는 약간의 균사성장이 관찰되었다. P. polymyxa CK-1배양액이 버섯균사 생육에 미치는 영향을 검토한 결과 팽이버섯, 표고버섯 등의 다양한 버섯균사 생육에 전혀 영향을 미치지 않는 것으로 나타났다.

Bacillus spp. 및 Serratia marcescens에 의한 사과 푸른곰팡이병의 생물적 방제 (Biological Control of Blue Mold of Apples by Bacillus spp. and Serratia marcescens)

  • 김용기;이승돈;류재기;류재당
    • 식물병연구
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    • 제9권4호
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    • pp.229-236
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    • 2003
  • 사과 푸른곰팡이병을 방제하기 위하여 사과, 배, 복숭아 등 370점의 과일을 채취하여 과일표면으로부터 세균 1,080균주를 분리하였다. 분리한 1,080균주를 공시 하여 사과 저장병을 일으키는 Penicillium expansum, Alternaria alternata 그리고 Botrytis cinerea을 대상으로 항균활성 및 병 진전억제효과를 검정하여 8종의 길항세균을 선발하였다. 이 들 길항세균에 대한 세균학적 특성과 Biolog system에 의한 영양원 이용성을 조사한 결과 Bacillus amyloliquefaciens가 2균주, B. megaterium, B. subtilis var. gladioli, B. licheniformis, B. pumilus 및 Serratia marcescens로 동정하였다. Glucose, mannose, starch 등 8종의 탄소원을 공시하여 병원균의 생장 및 길항균의 중식에 미치는 영향을 조사한 결과, 병원균의 증식을 억제하고 길항균의 증식을 촉진하는 영양원으로 glucose가 선발되었다. 길항균의 처리효과를 높이기 위하여 길항균 현탁액에 glucose를 1% 첨가하여 사과에 처리한 다음 푸른곰팡이 병균을 $10^5$포자/ml 농도로 처리하였을 때, 병 진전억제효과가 S. marsecens P76-9처리에서 48%, B. amyloliquefaciens P43-2 처리에서 46% 그리고 B. licheniformis P94-1 처리에서 14% 증가되었다. 사과표면의 상처부위에서 처리한 길항균의 밀도변동에 있어서는 Bacillus 속 세균인 B. amyloliquefaciens P43-2과 B. licheniformis P94-1는 처리 후 7일까지 밀도가 증가하다가 처리 후 10일부터는 감소되는 경향이었으며, S. marsecens P76-9는 초기(처리 후 4일)에는 밀도가 감소되다가 처리 후 7일부터 증가되어 처리 후 7일까지도 일정한 수준으로 밀도가 유지되었다.

저장 감귤의 부패에 관여하는 Penicillium spp.에 대한 Iminoctadine tris(albesilate)와 Kresoxym-methyl의 방제 효과 (Protective Effect of Iminoctadine tris(albesilate) and Kresoxim-methyl Fungicides to Citrus Postharvest Diseases caused by Penicillium spp.)

  • 현재욱;이성찬;임양빈;김동환;고상욱;김광식
    • 농약과학회지
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    • 제5권2호
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    • pp.37-44
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    • 2001
  • 본 연구는 감귤을 부패시키는 Penicillium spp.에 대한 kresoxim-methyl 과 iminoctadine tris(albesilate)의 방제효과를 검정하기 위하여 실시하였다. P. italicum과 P. digitatum의 균사생장에 대한 iminoctadine tris(albesilate)의 $EC_{50}$값은 각각 0.01-0.02와 $0.01{\mu}g$ a.i./mL이었지만, 아직 미동정인 새로운 유형의 Penicillium spp.균은 iminoctadine tris(albesilate)가 $0.64{\mu}g$ a.i./mL들어 있는 PDA배지에서도 거의 균사생장이 억제되지 않았다. 또한 P. italicum과 P. digitatum의 발아와 발아관의 생장에 대한 iminoctadine tris(albesilate)의 $EC_{50}$값은 $0.0013-0.0025{\mu}g$ a.i./mL이었지만 새로운 유형치 Penicillium spp.는 $0.2{\mu}g$ a.i./mL 농도에서도 포자 발아가 거의 억제되지 않았다. P. italicum과 P. digitatum 그리고 미동정 Penicillium spp.의 균사생장에 대한 kresoxim-methyl의 $EC_{50}$은 각각 0.08-0.16, 0.04 그리고 $0.16{\mu}g$ a.i./mL이었으며 P. italicum과 새로운 유형의 Penicillium spp.의 포자 발아 및 발아관 생장에 대한 $EC_{50}$$0.04{\sim}0.08{\mu}g$ a.i./mL이며 P. digitatum에 대해서는 $0.01{\sim}0.02{\mu}g$ a.i./mL였다. Kresoxim-methyl과 iminoctadine tris(albesilate)의 저장병에 대한 방제효과를 알아보기 위하여 이들 약제를 각각 $155{\mu}g$ a.i./mL과 $200{\mu}g$ a.i./mL의 농노로 수상살포하고 7일 후 수확하여 90일간 저장한 결과 무처리구와 thiophanate-methyl $700{\mu}g$ a.i./mL을 처리한 대조구에서의 부패율은 각각 $20.3{\pm}10.0%\;and\;19.5{\pm}9.6%$으로 높은데 반하여 tresoxim-methyl과 imonoctadine tris(albesilate) 처리구에서의 부패율은 각각 $3.6{\pm}1.8%$$5.9{\pm}1.8%$로써 방제효과가 높았다. 이들 처리로부터 저장 후 0, 30, 60, 90일에 각각 iminoctadine tris(albesilate)와 kresoxim-methyl의 잔류량을 조사해본 결과 각 조사 기간 중 iminoctadine tris(albesilate)의 최대잔류량은 0.10 ppm이었고 kresoxlm-methyl의 최대 잔류량은 0.45 ppm이었다.

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