• Title/Summary/Keyword: Complex plant

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The Rapid Apple Decline Phenomenon: Current Status and Expected Associated Factors in Korea

  • Seung-Yeol Lee;Kari A. Peter;Kallol Das;Avalos-Ruiz Diane;Hee-Young Jung
    • The Plant Pathology Journal
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    • v.39 no.6
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    • pp.538-547
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    • 2023
  • Rapid apple decline (RAD) is a complex phenomenon affecting cultivated apple trees and particularly dwarf rootstocks on grafted young apple trees. Since its first appearance in the United States, RAD has been reported worldwide, for example in Canada, South America, Africa, and Asia. The phenomenon has also been observed in apple orchards in Korea, and it presented similar symptoms regardless of apple cultivar and cultivation period. Most previous reports have suggested that RAD may be associated with multiple factors, including plant pathogenic infections, abiotic stresses, environmental conditions, and the susceptibility of trees to cold injury during winter. However, RAD was observed to be more severe and affect more frequently apple trees on the Malling series dwarf rootstock. In this study, we reviewed the current status of RAD worldwide and surveyed biotic and abiotic factors that are potentially closely related to it in Korea.

Re-identification of Colletotrichum gloeosporioides Species Complex Isolates in Korea and Their Host Plants

  • Le Dinh Thao;Hyorim Choi;Yunhee, Choi;Anbazhagan Mageswari;Daseul Lee;Dong-Hyun Kim;Hyeon-Dong Shin;Hyowon Choi;Ho-Jong Ju;Seung-Beom Hong
    • The Plant Pathology Journal
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    • v.40 no.1
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    • pp.16-29
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    • 2024
  • The Colletotrichum gloeosporioides species complex includes many phytopathogenic species, causing anthracnose disease on a wide range of host plants and appearing to be globally distributed. Seventy-one Colletotrichum isolates in the complex from different plants and geographic regions in Korea were preserved in the Korean Agricultural Culture Collection (KACC). Most of them had been identified based on hosts and morphological features, this could lead to inaccurate species names. Therefore, the KACC isolates were re-identified using DNA sequence analyses of six loci, comprising internal transcribed spacer, gapdh, chs-1, his3, act, and tub2 in this study. Based on the combined phylogenetic analysis, KACC strains were assigned to 12 known species and three new species candidates. The detected species are C. siamense (n = 20), C. fructicola (n = 19), C. gloeosporioides (n = 9), C. aenigma (n = 5), C. camelliae (n = 3), C. temperatum (n = 3), C. musae (n = 2), C. theobromicola (n = 2), C. viniferum (n = 2), C. alatae (n = 1), C. jiangxiense (n = 1), and C. yulongense (n = 1). Of these, C. jiangxiense, C. temperatum, C. theobromicola and C. yulongense are unrecorded species in Korea. Host plant comparisons showed that 27 fungus-host associations are newly reported in the country. However, plant-fungus interactions need to be investigated by pathogenicity tests.

Anti-inflammatory Activity of Complex Saponin Separated from Pueraria flos and Adzuki Beans Mixture Extract

  • Jung Hwan Nam;Jong Nam Lee;Su hyoung Park;Su Jeong Kim;Hwang Bae Sohn;Do Yeon Kim
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2022.09a
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    • pp.90-90
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    • 2022
  • Pueraria flos and Adzuki Beans contains several bioactive compounds, such as saponin, oleanolic acid, and flavone. Pueraria flos and Adzuki Beans has traditionally been used to treat disorders of antioxidant activity, diabetes and liver detoxication, and it has antinociceptive and anti-inflammatory properties. However, complex saponin were validity of the anti-inflammatory activity has not been scientifically investigated. In this study, to determine anti-inflammatory activity of complex saponin separated from Pueraria flos and Adzuki Beans mixture extract on nitric oxide and prostaglandinE2 assay. The anti-inflammatory activities of complex saponin separated from Pueraria flos and Adzuki Beans mixture extract were evaluated for inhibitory activities against lipopolysacchride induced nitric oxide and prostaglandinE2 production protein expressions in RAW264.7 cell lines. The complex saponin separated from Pueraria flos and Adzuki Beans mixture extract inhibitory activity for both tests with protein high depressions(%) values showed in the ranges of 50~100 ㎍/ml. Overall, prostaglandinE2 tests had a higher inhibitory effect on inflammation than nitricoxide tests. Theseis result suggest a potential role of complex saponin separated from Pueraria flos and Adzuki Beans mixture extract as source of anti-inflammation agent.

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Taxonomy of fungal complex causing red-skin root of Panax ginseng in China

  • Lu, Xiao H.;Zhang, Xi M.;Jiao, Xiao L.;Hao, Jianjun J.;Zhang, Xue S.;Luo, Yi;Gao, Wei W.
    • Journal of Ginseng Research
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    • v.44 no.3
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    • pp.506-518
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    • 2020
  • Background: Red-skin root of Asian ginseng (Panax ginseng) significantly reduces the quality and limits the production of ginseng in China. The disease has long been thought to be a noninfectious physiological disease, except one report that proved it was an infectious disease. However, the causal agents have not been successfully determined. In the present study, we were to reveal the pathogens that cause red-skin disease. Methods: Ginseng roots with red-skin root symptoms were collected from commercial fields in Northeast China. Fungi were isolated from the lesion and identified based on morphological characters along with multilocus sequence analyses on internal transcription spacer, β-tubulin (tub2), histone H3 (his3), and translation elongation factor 1α (tef-1α). Pathogens were confirmed by inoculating the isolates in ginseng roots. Results: A total of 230 isolates were obtained from 209 disease samples. These isolates were classified into 12 species, including Dactylonectria sp., D. hordeicola, Fusarium acuminatum, F. avenaceum, F. solani, F. torulosum, Ilyonectria mors-panacis, I. robusta, Rhexocercosporidium panacis, and three novel species I. changbaiensis, I. communis, and I. qitaiheensis. Among them, I. communis, I. robusta, and F. solani had the highest isolation frequencies, being 36.1%, 20.9%, and 23.9%, respectively. All these species isolated were pathogenic to ginseng roots and caused red-skin root disease under appropriate condition. Conclusion: Fungal complex is the causal agent of red-skin root in P. ginseng.

Response of Alisma plantago Varieties Cultivated After Early Maturing Rice Cropping to Fertilizer Levels

  • Park, Hee-Jin;Kwon, Byung-Sun;Shin, Jong-Sup;Lee, Sang-Rae
    • Plant Resources
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    • v.3 no.3
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    • pp.200-205
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    • 2000
  • This study selects Sunwol local group, Gusang local group and Yongjun local group to examine the appropriate amount of applied fertilizer in cultivating the double crop seed of Alisma plantago by transplantation in the southern area, improve and complements the double cropping techniques and contribute to stable production. While the plant height is 45,47 and 49cm and the number of leaves is 11.7, 12.5 and 14.4 at non-fertilizing plot, the plant height is 67, 72 and 75cm and the number of leaves is 15.8, 17.2 and 19.3 at all fertilizing plot and their growth is active and in the character of plant height and the number of leaves, especially in the groove of N-P$_{2}$O$_{5}$-K$_{2}$O= 30-15-45kg/10a, the mean plant height of Sunwol is 75cm and mean number of its leaves is 19.3, the mean plant height and number of leaves in Gusang are 72cm and 17.2 respectively and those of Yongjun are 67cm and 15.8 respectively. While the number of floral axis is 1,2 in non-fertilizing plot, that of the whole varieties in all fertilizing plot is 3, 4, 5 and the mean floral axis of Sunwol is N-P$_{2}$O$_{5}$-K$_{2}$O = 10-5-15, 20-10-30, 30-15-45 kg/10a and 18-0-18 of complex fertilizer and 21-17-17kg/10a and it is small in all fertilizing plot. The yield of dry root per 10a is high in all fertilizing grooves and especially in the groove of N-P$_{2}$O$_{5}$-K$_{2}$O = 30-15-45 kg/10a, it is 372.6kg, in the groove of 18-0-18kg/10a using complex fertilizer, it is 389.1kg and in that of 21-17-17kg/10a, it is 376.7kg.6.7kg.

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Regulation of Gene Expression in Higher Plant (고등식물의 유전자 발현의 조절)

  • 심웅섭
    • Proceedings of the Botanical Society of Korea Conference
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    • 1987.07a
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    • pp.241-260
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    • 1987
  • The regulatory mechanisms of gene expression in higher plant were not ascertained in detail because the genome size is very large and complex. However, the above-mentioned study is remarkably progressed in parallel with development of DNA recombinant technology and plant vector system. Some research results connected with the mechanisms could be summarized as follows. 1. Many plant genes including chloroplast genes are cloned. 2. The structures of some regulatory regions of gene expression are determined, and it is confirmed that new regulatory units are made by transposable elements. 3. Plant gene expression is regulated not only at transcriptional level but also at translational level. 4. The factors that regulate plant gene expression could be divided as two categorys. One is endogenous elements including the structural change of chromatin during development stage and tissue differentiation. The other is environmental stimulations such as air, water, heat, salts and light. However, some sufficient research-aid fund is essential in order to study the regulatory mechanisms of gene expression more systematically.

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Application of genotyping-by-sequencing (GBS) in plant genome using bioinformatics pipeline

  • Lee, Yun Gyeong;Kang, Chon-Sik;Kim, Changsoo
    • Proceedings of the Korean Society of Crop Science Conference
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    • 2017.06a
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    • pp.58-58
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    • 2017
  • The advent of next generation sequencing technology has elicited plenty of sequencing data available in agriculturally relevant plant species. For most crop species, it is too expensive to obtain the whole genome sequence data with sufficient coverage. Thus, many approaches have been developed to bring down the cost of NGS. Genotyping-by-sequencing (GBS) is a cost-effective genotyping method for complex genetic populations. GBS can be used for the analysis of genomic selection (GS), genome-wide association study (GWAS) and constructing haplotype and genetic linkage maps in a variety of plant species. For efficiently dealing with plant GBS data, the TASSEL-GBS pipeline is one of the most popular choices for many researchers. TASSEL-GBS is JAVA based a software package to obtain genotyping data from raw GBS sequences. Here, we describe application of GBS and bioinformatics pipeline of TASSEL-GBS for analyzing plant genetics data.

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A development of video-complex remote monitoring system for offshore plant (영상복합형 해양플랜트 원격 관제 시스템 개발)

  • Kim, Hun-Ki;Hwang, Hun-Gyu;Yoo, Gang-Ju;Lee, Jang-Se;Park, Hyu-Chan;Shin, Ok-Keun;Lee, Seong-Dae
    • Journal of Advanced Marine Engineering and Technology
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    • v.38 no.1
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    • pp.56-63
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    • 2014
  • An offshore plant needs costly maintenance and has difficulty coping with various accidents coming from the exposure to the environmental threats such as typhoons, tidal waves and etc., in addition to the artificial ones such as fire, collision of ships and etc. In this paper, we develop the video-complex remote monitoring system for an offshore plant, using AtoN AIS and multi-stage database to monitor an offshore plant and solve those problems. The system handles real time video cameras to collect and monitor images on an offshore plant. So, users can be exactly and quickly aware of the information on various situations with the monitoring application based on ENC.