• Title/Summary/Keyword: 점무늬낙엽병

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Leaf Spot of Broad Bean (Vicia faba) Caused by Alternaria tenuissima (Alternaria tenuissima에 의한 잠두 점무늬병)

  • Kwon, Jin-Hyeuk;Park, Chang-Seuk
    • Research in Plant Disease
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    • v.8 no.2
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    • pp.117-119
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    • 2002
  • Leaf spot disease was found on broad bean (vicia faba) in several farmer's fields located in Changseon-myon, Namhae-gun, Gyeongnam province, Korea. The typical symptoms of the disease were appeared on leaves, stems and pods. The infection rates of the disease in the surveyed area were ranged from 8.4 to 46.8%. Colonies formed on PDA were developed aerial hyphae with grayish white, which later turned olive-green to black. Conidia were dark brown in color, long ellipsoid to elongated ovoid, obclavate and 23.7~61.3$\times$7.2~16.8 ${\mu}{\textrm}{m}$ in size. Septa were 4~10 transvers, 1~2 longitudinal or oblique. Conidiophores were solitary or fascicles and 18~113$\times$3~6 ${\mu}{\textrm}{m}$ in size. The optimum temperature for growth of the fungus was about 3$0^{\circ}C$. This is the first report on the leaf spot of broad bean caused by Alternaria tenuissima in Korea.

'Saenara', a New Chuseok Season Apple Cultivar (추석용(秋夕用) 고품질 사과 '새나라' 육성(育成))

  • Shin, Yong-Uk;Hwang, Jeong-Hwan;Song, Kwan-Jeong;Lee, Don-Kyun
    • Horticultural Science & Technology
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    • v.19 no.3
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    • pp.348-351
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    • 2001
  • 'Saenara' released by National Horticultural Research Institute in 1997 is a mid-season apple cultivar with attractive red skin, high quality and high productivity. This cultivar originated from the cross between 'Spur EarliBlaze' and 'Spur Golden Delicious' at Suwon in 1981. It was first selected in 1992 and named 'Wonkyo Ga-08'. The regional adaptability test was carried out for 5 years from 1993 to 1997 at 7 different sites. 'Saenara' is medium in tree vigor and has a spreading tree form. It bears abundant flower buds on many spurs. It blossoms a day earlier than 'Spur Golden Delicious', 3 days later than 'Spur EarliBlaze'. Harvesting time of 'Saenara' is September 10, 140 days after full bloom at Suwon. Fruit shape is conical and skin color is bright red. Fruit weighs about 300 g and has $14.6^{\circ}Brix$ soluble solids content. It is susceptible to alternaria leaf spot (Alternaria mali Roberts).

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Leaf Spot of Kalanchoe (Kalanchoe blossfeldiana) Caused by Stemphylium lycopersici (Stemphylium lycopersici에 의한 칼란코에 점무늬병)

  • Kwon, Jin-Hyeuk;Jeong, Byoung-Ryong;Yun, Jae-Gill;Lee, Sang-Woo
    • Research in Plant Disease
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    • v.13 no.2
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    • pp.122-125
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    • 2007
  • Leaf spot disease of Kalanchoe (Kalanchoe blossfeldiana) occurred at the farmer's vinly house in Gangseo-gu, Busan Metropolitan City, Korea, 2006. The diseased plants with typical symptom were collected and the casual agent were isolated. Its mycological characteristics and pathogenicity were examined. The results were as follows. The typical symptoms of the disease appeared as small brownish or dark brown spot on both sides of the leaves. The spots tended to develop from lower leaves. The spots gradually enlarged into conspicuous necrotic lesions 1-5 mm in diameter. Colonies of the causal fungus formed on potato dextrose agar were velvety, gray or grayish brown in color, Conidia were cylindrical or obclavate to oblong in shape, brown in color, $24{\sim}65\;{\times}\;12{\sim}23\;{\mu}m$ in size and had 1-4 transverse septa, The optimum temperature for growth of the fungus was about $25-30^{\circ}C$. Conidiophores were brown in color, $32{\sim}135\;{\times}\;4{\sim}8\;{\mu}m$ in size and had 1-7 transverse septa. The fungus was identified as Stemphylium lycopersici (Enjoji) Yamamoto based on its symptom and mycological characteristics. This is the first report of leaf spot of Kalanchoe caused by S. lycopersici in Korea.

Brown Ring Spot on Leaves of Kiwifruit Caused by Alternaria alternata (Alternaria alternata에 의한 참다래 갈색둥근무늬병)

  • Jeong, In-Ho;Kim, Gyung-Hee;Lim, Myoung-Taek;Hur, Jae-Seoun;Shin, Jong-Sup;Koh, Young-Jin
    • Research in Plant Disease
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    • v.14 no.1
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    • pp.68-70
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    • 2008
  • Brown leaf spots on leaves of kiwifruit(Actinidia deliciosa) were observed at farmers' orchards in Suncheon and Goheung, Jeonnam Province, Korea in June, 2006. They developed to form dark brown ring spots and severely infected leaves resulted in defoliation during the growing season of kiwifruit. Alternaria sp. was isolated from the diseased leaves repeatedly and was identified as Alternaria alternata on the basis of its mycological characteristics on potato dextrose agar and its pathogenicity was confirmed by wound inoculation on healthy leaves of kiwifruit. A. alternata formed gray to dark sooty gray colony and produced numerous conidia on potato dextrose agar. The conidia, commonly in long chains of 5 or more produced on conidiophores, have $3{\sim}5$ transverse and $1{\sim}2$ longitudinal septa and mostly ovoid or obclavate in shape and were pale brown golden brown in color. The condia were $16.5{\sim}42.1{\times}6.7{\sim}19.5\;{\mu}m$ in size and conidiophores were $8.6{\sim}112.7\;{\mu}m$ in length. This is the first report on the brown ring spot on leaves of kiwifruit caused by A. alternata in Korea.

Leaf Spot of safflower (Carthamus thinctorius) caused by Alternaria carthami and A. alternata (Alternaria carthami와 A. alternata에 의한 잇꽃 잎점무늬병)

  • Park, Kyeng-Seuk;Lee, Soon-Gu
    • Research in Plant Disease
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    • v.9 no.3
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    • pp.159-161
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    • 2003
  • Leaf spot diseases were found on safflower (Carthamus thinctorius) leaf in several fields located in Euisong-Gun, Gyengbuk province in Korea. The infected leaf rate of the diseases in surveyed area were different each years from 2001 to 2003 such as about 5%, 10%, and 30%, repectively. The typicla symptoms of diseases appeared first as small, light brown spots on leaves. And then spot turn dark brown and magnified. And yellow decoloration zone appeared surrounding dark brown spots. Mycological characteristics of Alternaria carthami, isolated from safflower mature leaf spot were dark gray colonies, conidiophores simple erect, septated, 40~80 ${\mu}m$ length; conidia solitary, straight, body size fo without beak length 40~100${\mu}m$, 10~15${\mu}m$ thick, Number of transverse septa 4~10 and longitudinal septa 4~7 ; beak with 2~4 septa, 30~65${\mu}m$ length. And A. alternata, isolated from old leaf were gray~dark gray colonies, conidiophores simple or branched, 20~110 ${\mu}m$ length; conidia long chaines, short conical or cylindrical beak, 2~6 transverse septa and several longitudinal septa, body size of without beak length 30~60 ${\mu}m$, 10~20 ${\mu}m$ thick ; beak length 5~35 ${\mu}m$. These are the first report on the leaf spot of safflower caused by Alternaria carthami, A alternata in Korea.

An Empirical Model for Forecasting Alternaria Leaf Spot in Apple (사과 점무늬낙엽병(斑點落葉病)예찰을 위한 한 경험적 모델)

  • Kim, Choong-Hoe;Cho, Won-Dae;Kim, Seung-Chul
    • Korean journal of applied entomology
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    • v.25 no.4 s.69
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    • pp.221-228
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    • 1986
  • An empirical model to predict initial disease occurrence and subsequent progress of Alternaria leaf spot was constructed based on the modified degree day temperature and frequency of rainfall in three years field experiments. Climatic factors were analized 10-day bases, beginning April 20 to the end of August, and were used as variables for model construction. Cumulative degree portion (CDP) that is over $10^{\circ}C$ in the daily average temperature was used as a parameter to determine the relationship between temperature and initial disease occurrence. Around one hundred and sixty of CDP was needed to initiate disease incidence. This value was considered as temperature threshhold. After reaching 160 CDP, time of initial occurrence was determined by frequency of rainfall. At least four times of rainfall were necessary to be accumulated for initial occurrence of the disease after passing temperature threshhold. Disease progress after initial incidence generally followed the pattern of frequency of rainfall accumulated in those periods. Apparent infection rate (r) in the general differential equation dx/dt=xr(1-x) for individual epidemics when x is disease proportion and t is time, was a linear function of accumulation rate of rainfall frequency (Rc) and was able to be directly estimated based on the equation r=1.06Rc-0.11($R^2=0.993$). Disease severity (x) after t time could be predicted using exponential equation $[x/(1-x)]=[x_0/(1-x)]e^{(b_0+b_1R_c)t}$ derived from the differential equation, when $x_0$ is initial disease, $b_0\;and\;b_1$ are constants. There was a significant linear relationship between disease progress and cumulative number of air-borne conidia of Alternaria mali. When the cumulative number of air-borne conidia was used as an independent variable to predict disease severity, accuracy of prediction was poor with $R^2=0.3328$.

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Analysis of Pesticide Applications on Apple Orchards in Geochang, Korea (거창지역 사과원 농약사용 실태분석)

  • Jang, Il;Kim, Hyang-Mi;Lee, Soon-Won;Choi, Kyung-Hee;Suh, Sang Jae
    • The Korean Journal of Pesticide Science
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    • v.19 no.2
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    • pp.93-100
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    • 2015
  • This study surveyed the selling, buying, usage, selection and spraying frequency of pesticides on apple orchards in Geochang, Gyeongsangnam-do province from 2012 to 2013 and found that the fungicides, insecticides and acaricides were sprayed $13.9{\pm}3.5$, $12.6{\pm}3.2$, and $2.6{\pm}1.3$ times per year, respectively. Fungicides were applied mainly to control for Diplocarpon mali, Colletotrichum gloeosporoides and Alternaria mali, whereas insecticides were sprayed mostly to control Grapholita molesta, Carposina sasakii insects. Dealers sold pesticides without monitoring of the pests in the apple orchards, and also sometimes sold pesticides which are non-registered for apple. Most of the farmers were highly relied on dealers' recommendations to choosing the brand product. Relating on Integrated Pest Management (IPM) on apple orchards in Geochang, residual active ingredient of frequently sprayed fungicides, insecticides, and acaricides were analyzed. Most applications of the fungicides, insecticides and acaricides were well corresponded with FAO's recommendations. For production of safe food and use of pesticides, it is requested to develope control calender and consideration of training program for farmers. The regional characteristics and environmental situation of the farm also should be considered.

Sooty Leaf Blight of Dendrobium sp. Caused by Pseudocercospora dendrobii (Pseudocercospora dendrobii에 의한 덴드로비움 검은잎마름병)

  • Kwon, Jin-Hyeuk;Park, Chang-Seuk
    • The Korean Journal of Mycology
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    • v.30 no.2
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    • pp.173-175
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    • 2002
  • Sooty leaf blight was found on Dendrobium sp. in several farmers' fields located in Namji-eup, Changnyeong-gun, Gyeongnam province, Korea in 2001. Symptoms of the disease appeared on leaves. Sooty leaf spots were started with amphigenous, subeircular to irregular spots, with light grayish brown to black color with definite margin lines on the upper surface of leaves. Infected leaves became defoliated and whole plants eventually were died. The infection rates of the disease in the surveyed area reached up to 64.8%, in the early September. Conidiophores of the causal fungus were dark grayish brown in color, densely fasciculate, straight, curved to sinuous, branched, $5{\sim}10$ septate and $63{\sim}164{\times}3.2{\sim}4.9{\mu}m$ in size. Conidia were pale to olivaceous in color, obclavatecylindric, straight to slightly curved in shape, $1{\sim}5$ septate and $46{\sim}98{\times}3.2{\sim}3.9{\mu}m$ in size. The optimum temperature for mycelial growth of the fungus was $25^{\circ}C$. The fungus was identified as Pseudocercospora dendrobii on the basis of its mycological characteristics. This is the first report on sooty leaf light of Dendrobium sp. caused by Pseudocercospora dendrobii in Korea.

A Mid-Maturing Apple Cultivar "Hongso", High Density Cultivation Type having a Good Taste (밀식재배형 식미우수 중생종 사과 "홍소(紅笑)")

  • Kim, Mok Jong;Kwon, Soon Il;Paek, Pong Nyeol;Nam, Jong Chul;Kang, Sang Jo;Shin, Yong Uk;Hwang, Jung Hwan;Kang, In Kyu;Choi, Cheol
    • Korean Journal of Breeding Science
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    • v.41 no.4
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    • pp.556-559
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    • 2009
  • "Hongso" was originated from a cross between "Yoko" and "Hongro" in NIHHS, RDA, in 1989. "Hongso" was preliminarily selected in 2002 for its high fruit quality. After regional adaptability test at five sites from 2003 to 2006 as "Wonkyo Ga-30" it was finally selected in 2006. Optimum harvest time is early September which is similar to that of "Hongro". Fruit shape is globose conical and skin color is light red. Mean fruit weight is 295g and soluble solids content is 14.1oBrix. Fruits acidity is 0.34%, which is higher than that of "Hongro"(0.23%). It has a good taste for harmony of sugar and acidity. Storability is 3 weeks in room temperature. It is apt to russet on fruit skin. It is susceptible to Bitter rot. "Hongso" has a good cross compatibility with major cultivars such as "Fuji", "Hongro" and "Tsugaru". Tree habit is semi-spreading and tree vigor is weak. "Hongso" is high-density cultivation type cultivar, because it has a precocity, spur-type.