• Title/Summary/Keyword: Yellow spot

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Identification and Characterization of Alternaria iridiaustralis Causing Leaf Spot on Iris ensata in China

  • Luo, Huan;Tao, Ya Qun;Fan, Xiao Yan;Oh, Sang Keun;Lu, Hong Xue;Deng, Jian Xin
    • Mycobiology
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    • v.46 no.2
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    • pp.168-171
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    • 2018
  • In 2016, a severe leaf spot disease was found on Iris ensata Thumb. in Nanjing, China. The symptom was elliptical, fusiform, or irregularly necrotic lesion surrounded by a yellow halo, from which a small-spored Alternaria species was isolated. The fungus was identified as Alternaria iridiaustralis based on morphological characteristics. The pathogenicity tests revealed that the fungus was the causal pathogen of the disease. Phylogenic analyses using sequences of ITS, gpd, endoPG, and RPB2 genes confirmed the morphological identification. This study is the first report of A. iridiaustralis causing leaf spots on I. ensata in China.

Two Species of the Genus Phasia Latreille (Insecta: Diptera: Tachinidae) New to Korea

  • Cha, Dong-Jun;Han, Ho-Yeon
    • Animal Systematics, Evolution and Diversity
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    • v.25 no.3
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    • pp.309-316
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    • 2009
  • As a result of an ongoing systematic study of the genus Phasia Latreille in Korea, we have discovered P. aurigera and P. takanoi for the first time in Korea. We here provide detailed redescriptions and illustrations with their diagnostic characters indicated. Phasia aurigera can be distinguished from other congeners by the combination of the following characteristics: 1) scutum with distinct yellow pruinose spot; 2) male abdominal tergite 5 posteromarginally with V-shaped yellow pruinosity; 3) distiphallus divided into anterior and posterior processes; 4) female sternite 7 short, as long as or slightly longer than sternite 6 (visible part); and 5) female sternite 8 (ovipositor) bent dorsally. Phasia takanoi can also be distinguished by the combination of the following characteristics: 1) abdominal tergites strongly shiny; 2) surstylus strongly bent upward; and 3) posterior margin of female sternite 7 straight in ventral view.

First report of Yellow-spotted Amazon River Turtle(Podocnemis unifilis) in neolb-eun pond area in Jeju Island (제주 넓은못 습지에서 관찰된 아마존노란점거북(Podocnemis unifilis)의 국내 첫 서식 보고)

  • Park, Seon-Mi;Oh, Hong-Shik
    • Journal of Wetlands Research
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    • v.23 no.2
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    • pp.116-121
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    • 2021
  • This study is the first official report on the wild habitats of alien species, Yellow-spotted Amazon River Turtle (Podocnemis unifilis) in Republic of Korea. On July 24, 2020, two P.unifilis were observed basking on rocks at 33°30'20.08"N 126°38'0.23"E, Waheul-ri, Jocheon-eup, Jeju-si, Jeju. One individual had a yellow spots on the head where as the other contains black spot. Our observatory site is close to road and easy access to people. Thus, these individuals were believed to be released in the pond after raising as pets. Recently, the number of alien turtles identified in wild(etc. lake, resevoir) is increasing, which is predicted to damage the aquatic ecosystem due to the inflow of exotic turtles. So, it is necessary to improve the people's awareness of alien species through citizen science projects and environmental education. We suggest that research on habitat adaptation, reproduction and management through continuous monitoring is needed in the future.

Occurrence of Powdery Mildew on Eggplant Caused by Leveillula taurica (Lev) Arnaud in Korea (Leveillula taurica(Lev.) Arnaud 의한 가지 흰가루병 발생)

  • 권진혁;강수웅;조동진;김희규
    • Korean Journal Plant Pathology
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    • v.14 no.2
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    • pp.186-187
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    • 1998
  • Yellow spot or blotch symptoms were observed on the upper surface of eggplant (Solanum melongena. cv: Cheonryang) leaves in a commerical vinyl-house of Hapchon-gun, Kyongnam, Korea. We identified Leveillula taurica(L v.) Arnaud as a pathogen causing powdery mildew of eggplant which was observed newly in Korea. The fungal conidia from eggplant leaves were reinoculated to eggplant, tomato and pepper to confirm the same disease as the symptomatology and morphology of the pathogen.

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A Study on A Deep Learning Algorithm to Predict Printed Spot Colors (딥러닝 알고리즘을 이용한 인쇄된 별색 잉크의 색상 예측 연구)

  • Jun, Su Hyeon;Park, Jae Sang;Tae, Hyun Chul
    • Journal of Korean Society of Industrial and Systems Engineering
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    • v.45 no.2
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    • pp.48-55
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    • 2022
  • The color image of the brand comes first and is an important visual element that leads consumers to the consumption of the product. To express more effectively what the brand wants to convey through design, the printing market is striving to print accurate colors that match the intention. In 'offset printing' mainly used in printing, colors are often printed in CMYK (Cyan, Magenta, Yellow, Key) colors. However, it is possible to print more accurate colors by making ink of the desired color instead of dotting CMYK colors. The resulting ink is called 'spot color' ink. Spot color ink is manufactured by repeating the process of mixing the existing inks. In this repetition of trial and error, the manufacturing cost of ink increases, resulting in economic loss, and environmental pollution is caused by wasted inks. In this study, a deep learning algorithm to predict printed spot colors was designed to solve this problem. The algorithm uses a single DNN (Deep Neural Network) model to predict printed spot colors based on the information of the paper and the proportions of inks to mix. More than 8,000 spot color ink data were used for learning, and all color was quantified by dividing the visible light wavelength range into 31 sections and the reflectance for each section. The proposed algorithm predicted more than 80% of spot color inks as very similar colors. The average value of the calculated difference between the actual color and the predicted color through 'Delta E' provided by CIE is 5.29. It is known that when Delta E is less than 10, it is difficult to distinguish the difference in printed color with the naked eye. The algorithm of this study has a more accurate prediction ability than previous studies, and it can be added flexibly even when new inks are added. This can be usefully used in real industrial sites, and it will reduce the attempts of the operator by checking the color of ink in a virtual environment. This will reduce the manufacturing cost of spot color inks and lead to improved working conditions for workers. In addition, it is expected to contribute to solving the environmental pollution problem by reducing unnecessarily wasted ink.

Bacterial Spot Disease of Green Pumpkin by Pseudomonas syringae pv. syringae (Pseudomonas syringae pv. syringae에 의한 애호박 세균점무늬병)

  • Park, Kyoung-Soo;Kim, Young-Tak;Kim, Hye-Seong;Lee, Ji-Hye;Lee, Hyok-In;Cha, Jae-Soon
    • Research in Plant Disease
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    • v.22 no.3
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    • pp.158-167
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    • 2016
  • A pathogen that causes a new disease on green pumpkin in the nursery and the field was characterized and identified. Symptoms of the disease on green pumpkin were water soaking lesions and spots with strong yellow halo on leaf, brown lesion on flower, and yellow spot on fruit. The bacterial isolates from the leaf spot were pathogenic on the 8 curcubitaceae crop plants, green pumpkin, figleaf gourd, wax gourd, young pumpkin, zucchini, cucumber, melon, and oriental melon, whereas they did not cause the disease on sweet pumpkin and watermelon. They were Gram-negative, rod shape with polar flagella, fluorescent on King's B agar and LOPAT group 1a by LOPAT test. Their Biolog substrate utilization patterns were similar to Pseudomonas syringae pv. syringae's in Biolog database. Phylogenetic trees with 16S rRNA gene sequences and multilocus sequence typing (MLST) with nucleotide sequences of 4 housekeeping genes, gapA, gltA, gyrB, rpoD and those of P. syringae complex strains in the Plant Associated and Environmental Microbes Database (PAMDB) showed that the green pumpkin isolates formed in the same clade with P. syringae pv. syringae strains. The clade in MLST tree was in the genomospecies 1 group. The phenotypic and genotypic characteristics suggested that the isolates from green pumpkin lesion were P. syringae pv. syringae.

The Characteristics of Progenies derived from Lilium lancifolium and Asiatic hybrid "Dreamland" (참나리와 Asiatic hybrid "Dreamland"의 교잡 후대 특성)

  • Park, In-Sook;Suh, Dong-Hee;Hwang, Yoon-Jung;Park, Song-Kyung;Kang, Si-Yong;Rhee, Hye-Kyung;Lim, Ki-Byung
    • Korean Journal of Breeding Science
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    • v.41 no.4
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    • pp.451-455
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    • 2009
  • Lilium lancifolium, which is one of the Korean native lilies, possesses several useful genetic characteristics such as growth vigor, bulbil formation and resistance to Fusarium. Hybridization was performed to insert useful traits of Asiatic hybrid "Dreamland" as the male parent with upward direction and dark brown spotless on the petal into L. lancifolium as the female parent. The rate of pollen germination of L. lancifolium and "Dreamland" were 30% and 60%, respectively. The pollen germination ratio of $F_1$ progenies at flowering date was 25-57%, which is between the parents'pollen germination ratio. The individual flowering time was between 113 days and 131 days after planting. Of 99% of all plants, the leaf shape index was more than five, which means that the leaf shape of $F_1$ plants is more influenced by female than male parent. The flower color was separated into four types. 51.5% of the progenies showed orange and 44.2% showed light orange, respectively. The colors seemed to be highly influenced by female parents. Mixed colors of parents, orange yellow and light yellow orange, were 3.1%, 1.2%, respectively. Flowering directions were segregated by three different ways, upside, side, and downside. Side direction, which is medium type between female and male parent, was 73%. All progenies showed lots of spot on petals except one offspring. The percentage of bulbil formation on leaf axil was 49.4%. Among those, the maximum number of bulbil formation was 25. The mean number of bulbil formation per plant was five.

A Comparative Analysis of land Cover Changes Among Different Source Regions of Dust Emission in East Asia: Gobi Desert and Manchuria (동아시아의 황사발원지들에 대한 토지피복 비교 연구: 고비사막과 만주)

  • Pi, Kyoung-Jin;Han, Kyung-Soo;Park, Soo-Jae
    • Korean Journal of Remote Sensing
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    • v.25 no.2
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    • pp.175-184
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    • 2009
  • This study attempts to analyze the difference among the variations of ecological distribution in Gobi desert and Manchuria through satellite based land cover classification. This was motivated by two well-known facts: 1) Gobi desert, which is an old source region, had been gradually expanded eastward; 2) Manchuria, which is located in east of Gobi desert, was observed as a new source region of yellow dust. An unsupervised classification called ISODATA clustering method was employed to detect the land cover change and to characterize the status of desertification and its expanding trends using NDVI (Normalized Difference Vegetation Index) derived from VEGETATION sensor onboard the SPOT satellite for 1999 and 2007. We analyzed NDVI annual variation pattern for every classes and divide into 5 level according to their vegetation's density level based on NDVI. As results, Gobi desert is showed positive variation: a decrease $78,066km^2$ in central Gobi desert and out skirts of Gobi desert (level-0) but Manchuria area is worse than previous time: an increase $25,744km^2$.

Identication of Bean Yellow Mosaic Virus from Trifolium repens (흰 토끼풀에서 분리한 강낭콩황반모자이크 바이러스의 동정)

  • Ryu Gab Hee;Lee Soon Hyung;La Yong Joon
    • Korean Journal Plant Pathology
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    • v.2 no.1
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    • pp.48-52
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    • 1986
  • The virus isolated from white clover, Trifolium repens showing mosaic symptom was identified as bean yellow mosaic virus (BYMV) based on the host range, physical properties, aphid transmission, serology and morphology of the virus particles. Chenopodium amaranticolor and C. quinoa produced local lesions on the inoculated leaves and chlorotic spot on the upper leaves. Broad bean and cowpea produced local lesions on the inoculated leaves and mosaic with vein necrotic symptoms on the upper leaves. French bean showed vein necrosis on the inoculated leaves, yellow mosaic on the upper leaves and bud blight. The average size of virus particles was 740nm in length. The virus was also transmitted by Myzus persicae. The thermal inactivation point of the virus isolate was $60\;to\;65^{\circ}C$, the dilution end point $10^{-3}\;-\;10^{-4}$ and the longevity in vitro was 3 days Serological tests with the virus purified from Trifolium repens were positive to BYMV antiserum.

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Leaf Injury Induced by Temperature Drop Shock in Gesneriaceae and Acanthaceae Plants (Gesneriaceae와 Acnathaceae과 식물에서 급격한 엽온저하에 의해 발생하는 엽상해)

  • Yun, Jae Gill;Yang, Soo Jung;Hayashi, Takahiro;Yazawa, Susumu
    • Horticultural Science & Technology
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    • v.19 no.2
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    • pp.153-158
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    • 2001
  • Leaf spots in Saintpaulia leaves are caused by temperature drop shock (TDS). This TDS-mediated leaf injury has not been reported in other plants besides Saintpaulia. To investigate how many and what kinds of plants are susceptible to temperature drop shock, Gesneriaceae and Acanthaceae plants were treated with TDS (from $30^{\circ}C$ to $15^{\circ}C$ or $5^{\circ}C$). Yellow or brown spots were found in 26 species or cultivars of 10 genuses of Gesneriaceae plants and in 8 species or cultivars of 7 genuses of Acanthaceae plants. Morphologically and anatomically no similarity was observed among the plants susceptible to TDS. Some plants have very thin and hard leaves, whereas other plants have thick and soft leaves. In spite of this non-similarity, the injury was restricted only to palisade cells as those of Saintpaulia leaves. Also the rapid and irreversible reduction of chlorophyll fluorescence was observed soon after TDS treatment in those plants. These results indicate that leaf injury induced by TDS is a more widespread leaf injury than has previously been thought.

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