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        검색결과 8

        1.
        2022.06 KCI 등재 구독 인증기관 무료, 개인회원 유료
        The canine parvovirus (CPV) causes clinical signs, such as severe enteritis, dehydration, diarrhea, vomiting, leukopenia, and hair loss, which may lead to death. Vaccination is still the most important approach, as no specific treatment exists to prevent CPV. Monoclonal antibodies are valuable tools to study the pathogenic mechanisms of CPV and develop effective diagnostic reagents and pharmaceuticals. In this study, two monoclonal antibodies (MAbs) against CPV-2a were obtained through hybridoma technology by fusing myeloma cells and B cells from the spleens of mice immunized with CPV type 2a (CPV-2a). Two MAbs (CPV-330 and CPV-620) were studied on the reactivity of vaccine (CPV-2a) and field strains (CPV-new 2a, -2b, and -2c) by indirect immunofluorescence (IFA), hemagglutination inhibition test (HI), virus neutralization test (VN), and inhibition of virus growth test. Two MAbs showed similar antibody titers for HI and VN. On the other hand, CPV-330 inhibited the viral replication in Crandell-Rees Feline Kidney (CRFK) cells better than CPV-620. These CPV MAbs may provide valuable biological reagents to study the CPV pathogenic mechanisms and work as therapeutic antibodies.
        4,000원
        2.
        2022.06 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Pleurotus ostreatus is a globally cultivated mushroom crop. Cap color is a quality factor in P. ostreatus. However, cap color can spontaneously mutate, degrading the quality of the mushroom on the market. Early detection and removal of mutant strains is the best way to maintain the commercial value of the crop. To detect the cap color mutant Gonji7ho, molecular markers were developed based on insertion/deletions (InDels) derived from the comparison of mitogenomes of Gonji7ho and Gonji7hoM mushrooms. Sequencing, assembly, and comparative analysis of the two mitogenomes revealed genome sizes of 73,212 bp and 72,576 bp with 61 and 57 genes or open reading frames (ORFs) in P. ostreatus Gonji7ho and Gonji7hoM, respectively. Fourteen core protein-encoding genes, two rRNA, and 24 tRNA with some OFRs were predicted. Of the 61 genes or OFRs in the wild type, dpo, rpo, and two orf139 were missing (or remnant) in the mutant strain. Molecular markers were developed based on the sequence variations (InDels) between the two mitogenomes. Six polymorphic molecular markers could detect the mutated mitochondria by PCR. These results provide basic knowledge of the mitogenomes of wild-type and mutant P. ostreatus, and can be applied to discriminate mutated mitochondria.
        4,000원
        5.
        2017.10 구독 인증기관·개인회원 무료
        The production scale of mushroom cultivation in Korea is approximately 600 billion won, which is 1.6% of the Korean gross agricultural output. Annually, ca. 190,000 tons of mushrooms are harvested in Korea. The oyster mushroom is one of the most favorite and commonly consumed mushrooms in Korea. In case of breeding, the protoplast fusion technique of the oyster mushroom, P. ostreatus was first commercialized in the world. To develop the high temperature varieties, various examinations were accomplished. Protoplast fusion of abalone mushroom, high temperature, and oyster mushroom, popular mushroom, were attempted. 2 strains of P.ostreatus and 2 strains of P.abalonus were fused to each other by protoplast isolation. Fusion strains were investigated by random amplified polymorphic DNA(RAPD) marker, and selected strains were cultivated at 25°C after completing the mycelial growth. As a result of sawdust bag cultivation, most of strains showed the fruiting body, but the morphological characteristics among them were not significant different. However, these protoplast fusion strains were expected as new parents strains to develop varieties.
        6.
        2016.06 구독 인증기관·개인회원 무료
        Oyster mushroom is one of mushrooms that are cultivated and consumed a lot in Korea. P. ostreatus 'ASI 2504(Suhan)' is a preferable cultivar to mushroom farmers because it has a dark pileus and a thick stipe. But it is very sensitive to environmental conditions, so farmers demand an alternative cultivar of ‘Suhan’ continuously. To develop a new cultivar, parental strains ‘ASI 2504(Suhan)’ and ‘ASI 0665(Heuktari)’ were selected from P. ostreatus’s various collected strains according to morphological characteristics. P. ostreatus ‘Soltari’ was developed by the method of Di-Mono crossing between dikaryotic strain ‘Suhan’ and monokaryotic strain derived from ‘Heuktari’. Analysis of the mitochondrial genetic characteristics was performed for primary selection in 100 crossed strains. The mitochondrial DNA profile of ‘Soltari’ was same as that of ‘Heuktari’, when mitochondrial DNA primer MtPo1 was used. And a nuclear DNA profile of ‘Soltari’ was similar as those of the parental strains, ‘Suhan’ and ‘Heuktari’, when RAPD(Random Amplified Polymorphic DNA) primer URP 1, 3 were used. The optimum temperature for mycelial growth was 30°C for ‘Soltari’. ‘Soltari’ was appropriate for middle high temperature to grow, especially 13~18°C. Fruiting body production per bottle (1,100mL) was about 158.6g. When compared to the control strain ‘Suhan’, the stipe’s length and thickness of ‘Soltari’ were similar to those of ’Suhan’. But the pileus diameter of ‘Soltari’ was a little shorter than that of ‘Suhan’, the former was 42.72mm, while the latter was 51.33mm. And the pileus thickness of ‘Soltari’ and ‘Suhan’ were 18.18mm and 25.46mm, respectively. ‘Soltari’ was more resistant at high CO2 concentration than ‘Suhan’ and the color of pileus of ‘Soltari’ was kept dark gray at high temperature. Therefore, it is suggested that this new cultivar ‘Soltari’ be an alternative of ‘Suhan’ and contribute to energy saving effect in oyster mushroom farms.
        7.
        2015.11 구독 인증기관·개인회원 무료
        Oyster mushroom is one of mushrooms that are cultivated and consumed a lot in Korea. P. ostreatus 'Suhan(ASI2504)' is a popluar cultivar because of high quality. But it is difficult for farmers to cultivate, so an alternative cultivar of ‘Suhan’ is demanded continuously. To develop a new variety, parental strains were selected using cultivation characteristics of Pleurotus ostreatus collected home and abroad. P. ostreatus 'Gosol' was developed by the method of Di-Mon crossing between dikaryotic strain P. ostreatus 'Mongdol(ASI0633)' and monokaryotic strain derived from P. ostreatus ‘Yasan(ASI0635)' in 2014. Analysis of the genetic characteristics of the new cultivar 'Gosol' showed a different DNA profile as that of the control strain, 'Suhan’ but a similar DNA profile as those of the parental strains, ‘Yasan’ and 'Mongdol’, when RAPD(Random Amplified Polymorphic DNA) primer URP 3 was used. The optimum temperature for mycelial growth was 25°C for ‘Gosol’ and ‘Suhan’. 'Gosol' was appropriate for middle high temperature to grow, especially 13~18°C. Fruiting body production per bottle was about 124.2g. When compared to the control strain 'Suhan’, the stipe was longer and the individual weight was heavier. But the stipe and the pileus were a little thinner than those of the control strain. ‘Gosol’ was more resistant at high CO2 concentration than the control strain. This new cultivar ‘Gosol’ of Pleurotus ostreatus was characterized dark bluish gray cultivar of oyster mushroom in the color of pileus and higer yield compared to those of other cultivar ‘Suhan’. Therefore, it is suggested that this new cultivar ‘Gosol’ be substitute for ‘Suhan’ in oyster mushroom’s farms.
        8.
        2019.06 KCI 등재 SCOPUS 서비스 종료(열람 제한)
        UV Psc is a typical RS CVn type system undergoing dynamic chromosphere activity. We performed photometric observations of the system in 2015 and secured new BVR light curves showing well-defined photometric waves. In this paper, we analyzed the light curves using Wilson-Devinney binary code and investigated the orbital period of the system. The combination of our light curve synthesis with the spectroscopic solution developed by previous investigators yielded the absolute parameters as: M1 = 1.104 ± 0.042 Mⵙ, R1 = 1.165 ± 0.025 Rⵙ, and L1 = 1.361 ± 0.041 Lⵙ for the primary star, and M2 = 0.809 ± 0.082 Mⵙ, R2 = 0.858 ± 0.018 Rⵙ, and L2 = 0.339 ± 0.010 Lⵙ for the secondary star. The eclipse timing diagram for accurate CCD and photoelectric timings showed that the orbital period may vary either in a downward parabolic manner or a quasi-sinusoidal pattern. If the latter is adopted as a probable pattern for the period change, a more plausible account for the cyclic variation may be the light time effect caused by a circumbinary object rather than an Applegate-mechanism occurring via variable surface magnetic field strengths.