• 제목/요약/키워드: Biofungicides

검색결과 14건 처리시간 0.036초

살균제 감량을 위한 인삼 점무늬병 방제체계의 개발 (Development of a System for Controlling Ginseng Alternaria Leaf Blight (Alternaria panax) to Reduce Fungicide Application and Use)

  • 리상국;최재을
    • 식물병연구
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    • 제15권1호
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    • pp.17-22
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    • 2009
  • 본 연구는 미생물제의 이용에 의한 농약잔류 및 안정성문제 확보, 농약 살포량 및 살포횟수를 줄이는 방법을 개발하기 위하여 실시하였다. 미생물제와 살균제를 2회씩 14일 간격으로 교호 살포한 처리구에서 인삼 점무늬병 방제가는 68.34%$\sim$73.56%이 었고, 살균제를 교호 살포한 처리구에서 방제가는 87.00%$\sim$89.42%이었다. 미생물제와 살균제를 28일 간격으로 3회 혼합 교호 살포한 처리구에서는 2종류의 처리구(Com-12, Com-17)를 제외하고는 방제가가 74.53%$\sim$87.23%로 조합에 따라 우수한 방제효과를 나타냈다. 이상과 같이 미생물제와 살균제를 교호 또는 혼합 교호 처리하면 75.00%$\sim$83.33%의 농약 감량효과를 나타낼 수 있다.

오이 흰가루병 방제용 미생물농약의 혼용에 의한 오이 주요 곰팡이병의 방제 효과 (Control Effect of Major Fungal Diseases of Cucumber by Mixing of Biofungicides Registered for Control of Powdery Mildew with Other Control Agents)

  • 김경희;박재영;차주훈;전치성;홍성준;김영호;허재선;고영진
    • 농약과학회지
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    • 제15권3호
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    • pp.323-328
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    • 2011
  • 국내 유통중인 오이 흰가루병 방제용 미생물농약의 혼용 및 기타 약제와의 혼용에 의한 오이 주요 곰팡이병 방제효과를 검정함으로써 오이 흰가루병 방제용 미생물농약의 활용증진 방안을 검토하였다. 오이 흰가루병에 대한 방제효과는 미생물농약의 종류에 따라 큰 차이가 있었는데 바실루스서브틸리스케이비401유상현탁제와 바실루스서브틸리스디비비1501수화제의 오이 흰가루병에 대한 방제효과는 20% 이상 차이가 있었다. 그러나 두 가지 미생물농약의 훈용에 의해 오이 흰가루병에 대한 방세효과가 증진되었고, 오이 흰가루병 방제용 미생물농약 바실루스서브틸리스케이비401유상현탁제와 노균병 방제용 화학약제 디메토모르프수화제의 혼용살포에 의해 오이 흰가루병과 노균병을 80% 이상씩 동시에 방제할 수 있었다. 이와 유사하게 오이 흰가루병 방제용 미생물농약 바실루스서브틸리스케이비401유상현탁제와 친환경자재 난황유의 혼용살포에 의해서도 오이 흰가루병은 95% 정도, 노균병은 70% 정도 방제효과를 얻을 수 있었다.

잔디 뿌리병 병원균인 Rhizoctonia solani의 성장을 저해하는 미생물 선발 (Screening of Potent Biofungicide for the Growth Inhibition of Soilborne Pathogenic Fungi, Rhizoctonia solani)

  • 이은열;이재화
    • 생명과학회지
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    • 제13권3호
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    • pp.355-358
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    • 2003
  • 식물 병원성 진균인 Rhizoctonia solani에 대한 길항능이 있는 Trichoderma 계열의 미생물 균주를 선별하였다. R. solani의 성장을 저해하는 능력이 우수한 균주를 선별하기 위하여 일차적으로 PDA 평판에서 inhibition zone을 측정하였고, 병원성 진균의 세포벽을 용해시킬 수 있는 세포외 효소인 glucanase 및 chitinase 활성을 분석하였다. 4∼5 mm 이상의 inhibition zone을 보여주었고, glucanase 및 chitinase 활성이 우수한 Trichoderma sp. UK-3와 T. viride 균주들을 선별할 수 있었다.

Antifungal Activity of Lichen-Forming Fungi Isolated from Korean and Chinese Lichen Species Against Plant Pathogenic Fungi

  • Oh, Soon-Ok;Jeon, Hae-Sook;Lim, Kwang-Mi;Koh, Young-Jin;Hur, Jae-Seoun
    • The Plant Pathology Journal
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    • 제22권4호
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    • pp.381-385
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    • 2006
  • Antifungal activity of Korean and Chinese lichen-forming fungi(LFF) was evaluated against plant pathogenic fungi of Botryosphaeria dothidea, Botrytis cinerea, Diaporthe actinidiae, Pestalotiopsis longiseta, Pythium sp., Rhizoctonia solani, and Sclerotium cepivorum. The LFF were isolated from Cladonia scabriuscula, Melanelia sp., Nephromopsis asahinae, Nephromopsis pallescens, Parmelia laevior, Pertusaria sp., Ramalina conduplicans, Ramalina sinensis, Ramalina sp., Umbilicaria proboscidea and Vulpicida sp. with discharged spore method. The isolates were deposited in the herbarium of Korean Lichen Research Institute(KoLRI) in Sunchon National University. The LFF of Melanelia sp., P. laevior, Pertusaria sp., R. conduplican and Ramalina sp. exhibited strong antifungal activity against all of the pathogenic fungi examined. Among them, LFF of P. laevior showed more than 90% of inhibition in fungal hyphae growth, compared with control. The results imply that LFF can be served as a promising bioresource to develop novel biofungicides. Mass cultivation of the LFF is now under progress in laboratory conditions for chemical identification of antifungal substances.

Antifungal Activity of Lichen-forming Fungi against Colletotrichum acutatum on Hot Pepper

  • Wei, Xinli;Jeon, Hae-Sook;Han, Keon-Seon;Koh, Young-Jin;Hur, Jae-Seoun
    • The Plant Pathology Journal
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    • 제24권2호
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    • pp.202-206
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    • 2008
  • Antifungal activity of Korean and Chinese lichen-forming fungi (LFF) was evaluated against plant pathogenic fungus of Colletotrichum acutatum, causal agent of anthracnose on hot pepper. This is the first attempt to evaluate antifungal activity of LFF, instead of lichen thalli, against C. acutatum. Total 100 LFF were isolated from the lichens with discharged spore method or tissue culture method. Among the 100 isolates, 8 LFF showed more than 50% of inhibition rates of mycelial growth of the target pathogen. Especially, Lecanora argentata was highly effective in inhibition of mycelial growth of C. accutatum at the rate of 68%. Antifungal activity of other LFF was in the order of Cetrelia japonica (61.4%), Ramalina conduplicans (59.5%), Umbilicaria esculenta (59.5%), Ramalina litoralis (56.7%), Cetrelia braunsiana (56.5%), Nephromopsis pallescensn (56.1%), and Parmelia simplicior (53.8%). Among the tested LFF, 61 isolates of LFF exhibited moderate antifungal activity against the target pathogen at the inhibition rates from 30 to 50%. Antifungal activity of the LFF against C. acutatum was variable at the species level rather than genus level of LFF. This study suggests that LFF can be served as a promising bioresource to develop novel biofungicides.

Isolation of Lichen-forming Fungi from Hungarian Lichens and Their Antifungal Activity Against Fungal Pathogens of Hot Pepper Anthracnose

  • Jeon, Hae-Sook;Lokos, Laszlo;Han, Keon-Seon;Ryu, Jung-Ae;Kim, Jung-A;Koh, Young-Jin;Hur, Jae-Seoun
    • The Plant Pathology Journal
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    • 제25권1호
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    • pp.38-46
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    • 2009
  • Lichen-forming fungi (LEF) were isolated from 67 Hungarian lichen species from ascospores or thallus fragments. LFF were successfully isolated from 26 species with isolation rate of 38.8%. Of the total number of isolation from ascospores (27 species) and thallus fragments (40 species), 48% and 32.5% of the species were successfully isolated, respectively. Comparison of rDNA sequences of ITS regions between the isolated LFF and the original thallus confirmed that all the isolates originated from the thallus fragments were LEF. The following 14 species of LEF were newly isolated in this study; Acarospora cervina, Bacidia rubella, Cladonia pyxidata, Lasallia pustulata, Lecania hyaline, Lecanora argentata, Parmelina tiliacea, Parmotrema chinense, Physconia distorta, Protoparmeliopsis muralis, Ramalina pollinaria, Sarcogyne regularis, Umbilicaria hirsuta, Xanthoparmelia conspersa and X. stenophylla. Antifungal activity of the Hungarian LFF was evaluated against plant pathogenic fungi of Colletotrichum acutatum, C. coccodes and C. gloeosporioides, causal agent of anthracnose on hot pepper. Among the 26 isolates, 11 LFF showed more than 50% of inhibition rates of mycelial growth of at least one target pathogen. Especially, LFF of Evernia prunastri, Lecania hyalina and Lecanora argentata were remarkably effective in inhibition of mycelial growth of all the tested pathogens with antibiotic mode of action. On the other hands, five isolates of Cladonia furcata, Hypogymnia physodes, Lasallia pustulata, Ramalina fastigiata and Ramalina pollinaria exhibited fungal lytic activity against all the three pathogens. Among the tested fungal pathogens, C. coccodes seemed to be most sensitive to the LFF. The Hungarian LFF firstly isolated in this study can be served as novel bioresources to develop new biofungicides alternative to current fungicides to control hot pepper anthracnose pathogenic fungi.

Evaluation of Certain Plant Extracts and Antagonists Against Fusarium solani and Alternaria tenuissima, the Incitants of Root Rot and Die-Back Diseases of Mulberry

  • Seetha, Ramulu J.;Raja, Gopal Reddy C.;Ramanjaneyulu, R.
    • International Journal of Industrial Entomology and Biomaterials
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    • 제20권1호
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    • pp.1-5
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    • 2010
  • The studies have been conducted to control the soil borne fungal pathogens viz, Fusarium solani (Mart) Sacc. and Alternaria tenuissima the incitants of root rot and die-back diseases on mulberry stem cuttings planted in the mulberry nurseries and also in established mulberry gardens ten plant extracts with 10% concentration except Lantana camara (undiluted) were tested through poisoned food technique and four biofungicides were also screened by dual culture method under in vitro conditions. Plant extract of Prosopis juliflora showed the maximum inhibition on the mycelial growth (81.2% over A. tenuissima and 80.0% over F. solani) and followed by L. camara (66.7% over A. tenuissima and 68.9% over F. solani). Among the antagonists Pseudomonas fluorescens and Trichoderma viride showed maximum inhibition on the mycelial growth of both pathogenic fungi. The promising plant extracts (P. juliflora and L. camara) and antagonists (P. fluorescens and T. viride) were tested against both the pathogenic fungi under in vivo conditions along with the existing popular chemical Mancozeb. All the tested plant products and bio-fungicides showed inhibitory effect on both fungi. But the maximum survival percentage of mulberry cuttings was recorded in the treatment with T. viride (95% against F. solani and 90% against A. tenuisssima) followed by P. fluorescens (90% against both fungi) and T. harzianum (80% against F. solani and 85% against A. tenuisssima). Incase of the treatments with plant extracts and chemical fungicide the P. juliflora (60% against F. solani and 55% against A. tenuisssima) showed higher survival percentage and followed by L. camara (55% against F. solani and 50% against A. tenuisssima) and Mancozeb (55% against both fungi). In case of control only 10% of survival was recorded in F. solani inoculated cuttings and 15% survival in A. tenuissima inoculated cuttings.

가지 잿빛공팜이병 방제용 생물농약 개발 및 방제효과 (Development of Biofugicide for Control of Gray Mole Rot of Eggplant Caused by Botrytis cinerea, and Bioassay in the Greenhouse Condition)

  • 김철승;이재필;송주희;임은경;정순재;하상영;문병주
    • 생명과학회지
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    • 제11권3호
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    • pp.235-241
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    • 2001
  • To select the sntagonistic bacteria against B. cinerea, isolates were screened from the eggplant leaves and rhizosphere soils in the eggplnat fields in the greenhouse. W1 and P99 isolates were selected by the inhibition of mycelial growth of B. cinerea E12 in vitro test. These isolates, W1 and P99, were identified as Bacillus subtilis and Pseudomonas putida, respectively, by the Bergeys manual and API systems, For the formulation of the antagonistic bacteria, the media for the mass production were prepared with biji(soybean curd residues) or soybean flour. B. subtilis W1 or P. putida P99 was mass cultured in biji broth or soybean flour extrect broth and then soybean flour, corn starch flour, rice glutinous flour and biji flour as high molecular substrates were added. These mixtures were dried, grinded and formulated as brofungicides of wettable powder type. The assess the control effect of biofungicides against the infection of B. cinerea, six types of formulations were assayed at the pot culturing with eggplant in the greenhouse. According to the results, there were no significant differences among the formulation methods. However, P99S or PppB formulated with P. putida P99 showed the highest control values as 90.4% and 96.1%, respectively. Then. BSB or BSD formulated whit B. subtilis W1 were 80.8% and 83.0%, respectively. There afforementioned values were more effective than that of chemical fungicide. Ipro W.P which showed as 72.6%.

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Bacillus subtilis 122와 Trichoderma harzianum 23에 의한 마늘 흑색썩음균핵병의 생물적 방제 (Biological Control of Garlic White Rot Accused by Sclereotium cepivorum and Sclereotium sp. Using Bacillus subtilis 122 and Trichoderma harzianum 23)

  • 이상엽;이상범;김용기;황순진
    • 식물병연구
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    • 제12권2호
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    • pp.81-84
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    • 2006
  • 마늘 흑색썩음균핵병균 (Sclerotium cepivrum, Sclerotium sp.)에 대하여 생물적 방제제 Trichoderma harzianum 23 WP와 Bacillus subtilis 122 WP를 제제화하였다. 2003 년에 포장시험결과에서 태안지역은 남도마늘의 흑색썩음균핵 병균 (Sclerotium cepivrum)에 Trichoderma harzianum 23 WP 와 Bacillus subtilis 122 WP를 습분의 처리한 결과는 무처리 10.9% 비하여 4.1% 와 6.2%로 병 발생이 감소하였다. 서산지역은 서산종 마늘의 흑색썩음균핵병균 (Sclerotium sp.)에 Trichoderma harzianum 23 WP 와 Bacillus subtilis 122 WP를 습분의 처리한 결과는 무처리 17.8% 비하여 1.2% 와 2.6%로 병 발생이 감소하였다. 마늘수량은 두 지역에서 무처리에 비하여 증수되었다. 그러므로 Trichoderma harzianum 23 WP 와 Bacillus subtilis 122 WP는 마늘 흑색썩음병에 생물농약으로서 방제가능성을 나타내었다.