• Title/Summary/Keyword: Microbial pesticide

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Identification of Beauveria spp. Isolated from Mulberry Longicorn Beetle (Apriona germari Hope) using Polymerase Chain Reaction (뽕나무 하늘소(Apriona germari Hope)로부터 Beauveria속 사상균의 분리 및 PCR에 의한 동정)

  • 서종복;진병래
    • Journal of Sericultural and Entomological Science
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    • v.37 no.2
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    • pp.167-171
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    • 1995
  • To develope a microbial pesticide for the control of mulberry longicorn beetle, Apriona germari, Beauveria spp. were isolated from the infected Apriona germari larvae. The morphology of Beauveria spp. was observed by phase contrast and scanning electron microscope. In addition, the Beauveria spp. isolated from Apriona germari were identified by the random amplification of polymorphic DNA using polymerase chain reaction. The results showed that the Beauveria spp., SFB-1A and SFB-3A, isolated from Apriona germari were identified with B. bassiana and B. brongniartii, respectively, suggesting that the random amplification of polymorphic DNA is effective for the identification of Beauveria spp.

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Comparison of Pathogenicity Parasporal Crystal Protein in some Bacillus thuringiensis (Bacillus thuringiensis 균주에 따른 살충력 비교)

  • Kim, Yeong-Hun;Kim, Sang-Hyeon;Gang, Seok-Gwon
    • Journal of Sericultural and Entomological Science
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    • v.33 no.2
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    • pp.75-81
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    • 1991
  • The study has been carried out to acquire some basic informations about Bacillus thuringiensis for developing the microbial pesticide. Pathogenicity tests on three of B.thuringiensis var. aizawai, kurstaki, and dendrolimus were determined in two species of insects, H. cunea and B. moris. The pathogencity in varieties of B. thuringiensis against H. cunea and B. mori was depended on instar age of tested larvae. Bacillus thuringiensis var. dendrolimus, kurstaki, aizawai are arranged in order of pathogenicity against H. cunea and B. mori. In result Bacillus thuringiensis var. kurstaki was shown the most stable toxicity with respect to each instar of tested larvae.

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Microbial Biodegradation and Toxicity of Vinclozolin and its Toxic Metabolite 3,5-Dichloroaniline

  • Lee, Jung-Bok;Sohn, Ho-Yong;Shin, Kee-Sun;Kim, Jong-Sik;Jo, Min-Sub;Jeon, Chun-Pyo;Jang, Jong-Ok;Kim, Jang-Eok;Kwon, Gi-Seok
    • Journal of Microbiology and Biotechnology
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    • v.18 no.2
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    • pp.343-349
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    • 2008
  • Vinclozolin, an endocrine disrupting chemical, is a chlorinated fungicide widely used to control fungal diseases. However, its metabolite 3,5-dichloroaniline is more toxic and persistent than the parent vinclozolin. For the biodegradation of vinclozolin, vinclozolin- and/or 3,5-dichloroaniline-degrading bacteria were isolated from pesticide-polluted agriculture soil. Among the isolated bacteria, a Rhodococcus sp. was identified from a 16S rDNA sequence analysis and named Rhodococcus sp. T1-1. The degradation ratios for vinclozolin or 3,5-dichloroaniline in a minimal medium containing vinclozolin $(200{\mu}ml)$ or 3,5-dichloroaniline $(120{\mu}g/ml)$ were 90% and 84.1%, respectively. Moreover, Rhodococcus sp. T1-1 also showed an effective capability to biodegrade dichloroaniline isomers on enrichment cultures in which they were contained. Therefore, these results suggest that Rhodococcus sp. T1-1 can bioremediate vinclozolin as well as 3,5-dichloroaniline.

Growth Rate of Entomopathogenic Fungi in Mass Culture System (곤충병원성 진균의 대량 배양체계에서의 성장율)

  • 이인기;서종복
    • Journal of Sericultural and Entomological Science
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    • v.38 no.2
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    • pp.150-153
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    • 1996
  • To develope a microbial pesticide for the control of agricultural and forestal pests in Korea, the mass culture system of entomopathogenic fungi was studied. Previously, we have developed the mass culture system which was adaptable for the culture of Beauveria bassiana. In this study, we determined the efficacy of this mass culture system for other entomopathogenic fungi, B. bassiana, Beauveria brongniartii, Metarhizium anisopliae, and Verticillium lecanni. To determine the efficacy of mass culture system, we examined the growth rate of entomopathogenic fungi in this system which was composed of 1st liquid media for growth of blastospore and 2nd pellet media for growth of conidia. As the result, we obtained that the blastopore numbers increased 103-104 times in liquid media at 72 hrs post inoculation. The results showed that this mass culture system for the growth of entomopathogenic fungi was effective.

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Isolation of Entomopathogenic Fungi for Infection to the Pine Gall Midges, Thecodiplosis japonensis from the Forest Soil in Korea (삼림 토양으로부터 솔잎혹파리 감염 사상균의 분리)

  • 서종복;진병래;신상철;이범영;이창근;강석권
    • Korean journal of applied entomology
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    • v.34 no.4
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    • pp.368-372
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    • 1995
  • To develop a microbial pesticide for the control of pine gall midges. Thecodiplosis japonensis, entomopathogenc fungi were isolated from 233 soil samples in the damaged region of Thecodiplosis japonenesis, and identified with Beauveria spp. 29 strains and Paecilomyces spp. 2 strains. The morphology of entomopathogenic fungi was observed by scanning electron miroscope. In addition, the toxicity of entomopathogenic fungi was observed by scanning electron microscope. In addition, the toxicity of entomopathogenic fungi isolated from soil samples was determined by bioassay against Thecodiplosis japonensis larvae. The result showed that toxicity of relatively pathogenic strains, Beauveria spp. SFB-168-2 was 82.9%, suggesting that Beauveria spp. SFB-168-2 is effective entomopathogenic fungi for the control of pine gall midges.

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Status and Future Prospects of Pest Control Agents in Environmentally-friendly Agriculture, and Importance of their Commercialization (친환경농업 해충방제용 제제의 현황과 전망, 그리고 산업화의 중요성)

  • Kim, In-Seon;Kim, Ik-Soo
    • Korean Journal of Environmental Agriculture
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    • v.28 no.3
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    • pp.301-309
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    • 2009
  • The use of bioactive materials derived from microorganisms and plants has played a role in pest management in environmentally-friendly agriculture (EFA) system. In Korea, a number of agricultural agents for the control of insect pests have been registered officially as biopesticides and marketed widely. However, most of the biopesticides has a limitation in the resource availability of bioactive materials, which has been one of main problems related to the commercialization of agricultural agents. Plant materials and microbial metabolites are the best sources as starting components to commercialize natural-occurring agricultural agents for pest management. The lack of modernized system for the standardization and quality control of the starting materials, however, has also received as a main problem related to the commercialization of agricultural agents. Considered that EFA business has kept growing bigger and bigger with global economic status, the commercialization of agricultural agents is necessary to meet the required number of agricultural agents officially available in EFA. This study describes the status and future prospects of pest control agents in EFA. A number of main issues hindered in the commercialization of agricultural agents are discussed in order to present a promising approach to successful commercialization.

Acute Oral Toxicity and Pathogenicity of a Potential Probiotic Bacillus sp. A9184 Isolated from Soybean Paste

  • Lim, Jong-Hwan;Park, Byung-Kwon;Kim, Myoung-Seok;Rhee, Man-Hee;Park, Seung-Chun;Yun, Hyo-In
    • Toxicological Research
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    • v.20 no.4
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    • pp.359-363
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    • 2004
  • This study provides more information about the potential toxicological risk of Bacillus sp. A9184 isolated from soybean paste. The evaluation was based on the guidelines of acute oral toxicity/pathogenicity for microbial pesticide and was to get more comprehensive understanding on the acute toxicity of the potential probiotic in Sprgue-Dawley rats. No dead animal was observed in rats after single oral administration with bacteria ($10^8$ CFU per animal). There were neither no treatment-related changes in clinical signs, nor changes in body weight and body temperature as com-pared with the untreated group. All tested animal showed the increase in body weight with time. The results obtained in this study suggest that the potential probiotic, Bacillus sp. A9184, is non-toxic for rat.

Formulation of a novel bacterial consortium for the effective biodegradation of phenol

  • Dhanya, V.
    • Advances in environmental research
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    • v.9 no.2
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    • pp.109-121
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    • 2020
  • Phenol is frequently present as the hazardous pollutant in petrochemical and pesticide industry wastewater. Because of its high toxicity and carcinogenic potential, a proper treatment is needed to reduce the hazards of phenol carrying effluent before being discharged into the environment. Phenol biodegradation with microbial consortium offers a very promising approach now a day's. This study focused on the formulation of phenol degrading bacterial consortium with three bacterial isolates. The bacterial strains Bacillus cereus strain VCRC B540, Bacillus cereus strain BRL02-43 and Oxalobacteraceae strain CC11D were isolated from detergent contaminated soil by soil enrichment technique and was identified by 16s rDNA sequence analysis. Individual cultures were degrade 100 μl phenol in 72 hrs. The formulated bacterial consortium was very effective in degrading 250 μl of phenol at a pH 7 with in 48 hrs. The study further focused on the analysis of the products of biodegradation with Fourier Transform Infrared Spectroscopy (FT/IR) and Gas Chromatography-Mass Spectroscopy (GC-MS). The analysis showed the complete degradation of phenol and the production of Benzene di-carboxylic acid mono (2-ethylhexyl) ester and Ethane 1,2- Diethoxy- as metabolic intermediates. Biodegradation with the aid of microorganisms is a potential approach in terms of cost-effectiveness and elimination of secondary pollutions. The present study established the efficiency of bacterial consortium to degrade phenol. Optimization of biodegradation conditions and construction of a bioreactor can be further exploited for large scale industrial applications.

Efficacy of an Integrated Biological Control of an Egg Parasitoid, Trichogramma evanescens Westwood, and Microbial Insecticide Against the Oriental Tobacco Budworm, Helicoverpa assulta (Guenée) Infesting Hot Pepper (고추를 가해하는 담배나방[Helicoverpa assulta (Guenée)]의 효과적 방제를 위한 쌀좀알벌(Trichogramma evanescens Westwood)과 미생물제제의 종합생물방제 효과)

  • Kim, Geun-Seob;Heo, Hye-Jung;Park, Jung-A;Yu, Yong-Suk;Hahm, Eun-Hye;Kang, Sung-Young;Kwon, Ki-Myeon;Lee, Keon-Hyung;Kim, Yong-Gyun
    • Korean journal of applied entomology
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    • v.47 no.4
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    • pp.435-445
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    • 2008
  • Due to internal feeding behavior, the oriental tobacco budworm, Helicoverpa assulta ($Guen\acute{e}e$), infesting hot pepper has been regarded to be effectively controlled by targeting egg and neonate larval stages just before entering the fruits. This study aimed to develop an efficient biological control method focusing on these susceptible stages of H. assulta. An egg parasitoid wasp, Trichogramma evanescens Westwood, was confirmed to parasitize the eggs of H. assulta. A mixture of Gram-positive soil bacterium, Bacillus thuringiensis subsp. kurstaki, and Gram-negative entomopathogenic bacterium, Xenorhabdus nematophila ANU101, could effectively kill neonate larvae of H. assulta. A sex pheromone trap monitored the occurrence of field H. assulta adults. The microbial insecticide mixture was proved to give no detrimental effects on immature development and adult survival of the wasp by both feeding and contact toxicity tests. A combined treatment of egg parasitoid and microbial pesticide was applied to hot pepper fields infested by H. assulta. The mixture treatment of both biological control agents significantly decreased the fruit damage, which was comparable to the chemical insecticide treatment, though either single biological control agent did not show any significant control efficacy. This study also provides morphological and genetic characters of T. evanescens.

Genetic Diversity and Pathotypes of Xanthomonas orzyae pv. oryzae Isolated in Korea (국내 수집 벼흰잎마름병균의 유전적 다양성 및 병원형)

  • Oh, Chang-Sik;Roh, Eun-Jung;Lee, Seung-Don;La, Dong-Soo;Heu, Sung-Gi
    • Research in Plant Disease
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    • v.16 no.3
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    • pp.224-231
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    • 2010
  • Xanthomonas oryzae pv. oryzae, causal agent of bacterial leaf blight (BLB) of rice, had been collected and identified using Biolog and fatty acid analysis. Epidemics of BLB had been occurred all the times at several rice cultivating areas in Korea in 1999-2004. Most X. oryzae pv. oryzae isolated in 1999 and 2002 belonged to Korean race K1, but more than 50% of the pathogen isolated in 2003 belonged to Korean race K3. Especially, most pathogens isolated in Jeonnam and Joenbuk provinces belonged to Korean race K3. Inoculation test of near isogenic lines (NIL) of rice carrying single resistance genes against BLB showed that many isolates belonging to Korean race 1 reacted differently to diverse resistant monogenic lines of rice. Southern blot analysis also showed that the bacterial pathogens belonged to the same race had different numbers of avirulence genes. This results suggested that each Korean race type may respond to many resistance genes of rice. All the K3 races isolated in Jeonnam and Joenbuk provinces were able to cause disease on Xa3 monogenic lines of rice. Since most rice cultivars cultivated in Jeonnam and Jeonbuk were carrying Xa3 resistance genes, the bacterial pathogens isolated in Jeonnam and Jeonbuk were likely to develop to adapt to Xa3 resistance gene. Together with avirulence gene patterns of the bacterial isolates and the results of disease reaction of monogenic lines of rice to them, Korean X. oryzae pv. oryzae was classified into 19 pathotypes. This newly classified pathotypes should help the breeding of new resistance rice cultivars in Korea.