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        검색결과 25

        21.
        2018.04 구독 인증기관·개인회원 무료
        Entomopathogenic fungi have been known as promising candidates for biological control of insect pests. Recently, researchers consider the fungal thermotolerance in formulations and field applications. In this study, we investigated the production of thermotolerant Isaria javanica and I.fumosorosea conidia through grain-based solid cultures and exposure to light stress. As results, of the ten grain substrates, Italian millet, rice, perilla seed and sesame, rice, sorghum produced highly thermotolerant conidia in the strains. The two strains were exposed to a light stress and a heat stress. And they showed enhanced thermal stability compared to control, when exposed to 45°C for 2 hours. This work suggests that heat-resistant entomopathogenic fungal conidia can be produced by grain-based solid cultures and exposure to light stress.
        22.
        2018.04 구독 인증기관·개인회원 무료
        Melon thrips, Thrips palmi Karny (Thysanoptera: Thripidae) is a serious insect pest of various crops in the world. The management of this pest mainly have relied on chemical agents. However, the overuse of chemical agents for long times causes insect resistance, and negative effects on environment. Therefore, alternative control methods, such as biological control, that are less harmful to the environment and have different mode of action are needed to control this pest. In this study, we isolated entomopathogenic fungi from Korean soil, and characterized them via morphological and molecular identifications and pathogenicity check against Tenebrio molitor larvae. The isolated fungi were subjected to virulence assay against T. Palmi with a conidial suspension of 1×107 conidia/ml in laboratory conditions. This entomopathogenic fungi library would be a good resource to select effective strains for the control of T. palmi in fields.
        23.
        2018.04 구독 인증기관·개인회원 무료
        Entomopathogenic fungi play an important natural role in regulating their insect host populations, and their ecology was also associated with plant and soil. These microorganisms have been living by reacting to insect, plant and environmental factor. The advanced bioinformatics technology such as next-generation sequencing and RNA sequencing has revolutionized in understanding of entomopathogenic fungi. Recently studies provided a lot of information on evolutionary relationships and virulence-related characteristics. We are starting to know where these microorganisms from is, and how they live in nature. The bioinformatics technology will give us further our understanding of the natural roles of these fungi in nature.
        24.
        2017.10 구독 인증기관·개인회원 무료
        Little consideration has been given to the insect epizootiology in pest management. High production cost of fungalinsecticides might be a technical barrier. Application of the fungal insecticides to unfavorable conditions might result inlower performance in pest management. Herein this work, we suggest ecological biocontrol considering long-term colonizationin nature rather than quick pest control. Fungal biopesticides should be frequently combined with chemical pesticides infields, particualrly spatial combination strategy rather than temporal combination. Additionally other important technicalaspects need to be strongly considered, such as economic downstream process, effective control and environmentally safe,so finally proposing e-biopesticide. Lastly R&D system needs to be clearly and efficiently organized for high performance.Week-based summary and reporting system, weekly report and project file are main system in our laboratory which hasour lab work more effectively and efficiently, consequently resulting in tech-transfer to an industry and re-investment.
        25.
        2017.10 구독 인증기관·개인회원 무료
        The entomopathogneic fungal colonization has become an interesting issue in ecological pest management. Plant-orientedfungi induce plant growth promotion and act as natural control agents against insect pest. Herein this work, we evaluatedthe ability of fungal colonization on bark, branches and leaves of pine tree (Pinus densiflora) to select optimal candidatesfor controlling Japanese pine sawyer (Monochamus alternatus), which is the pine wilt disease vector in Korea. As a result,some Beauveria and Metarhizium isolates could colonize on the substrates of P. densiflora and showed pathogenicity againstM. alternatus. This result suggests that the selected entomopathogenic fungi are possibly candidates for long-term managementof M. alternatus in pine tree forest.
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