• 제목/요약/키워드: Rhizoctonia blight (Large patch)

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골프장 잔디의 Rhizoctonia 마름병에 대한 생물학적 방제 (Biological Control on Rhizoctonia Blight of Turfgrasses in Golf Courses)

  • 정봉구;정종일
    • 한국식물병리학회지
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    • 제14권3호
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    • pp.260-267
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    • 1998
  • This study was undertaken to find a new formulation of soil amendment, and selection of antogonists and to effectively control brown and large patch of turfgrasses caused by Rhizoctoniz solani AG1-1 and AG 2-2. Fourteen inorgainc chemicals (1%, w/w) were added individually in vitro, and some chemicals showed suppressiveness to R. solani. Alum suppressed effectively mycelial growth of R. solani in the range of 17 to 77% as compared with control. The four chemicals such as Al2(SO4)3, alum, CaO, and NH4NO3 were finally selected. Out of three organic compounds, composted pine bark (CPB) showed prominent suppressive effect as compared with milled alfalfa and pine leaves. After inoculation of R. solani isolates AG-1 and AG2-2 on the turf seedlings, water soaked lesions and blight symptoms were developed on the whole seedlings. According to inhibition zone method, mycelial growth of the fungus were greatly suppressed by culture filterates of the antagonists, Gliocladium virens (Gl1-) and Pseudomonas sp. (P713). CPB soil amendment mixed with antagonists (1% w/w) controlled not only brown and large patch of turfgrasses, but also promote the good growth of the seedlings. In addition, the controlling effect was maintained more than 30 days. Especially, the controlling effect of two antagonists was similar to Cㅖㅠ soil amendment with the antagonists and also stimulated a favorable growth of the seedlings. Therefore, its is expected that continuous control of Rhizoctonia blight of turfgrasses can be obtained in field by subsequent applications of the antagonists.

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국내 골프장 한국잔디의 라이족토니아마름병 발생 (Occurrence of Rhizoctonia Blight of Zoysiagrasses in Golf Courses in Korea)

  • 심규열;김진원;김희규
    • 한국식물병리학회지
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    • 제10권1호
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    • pp.54-60
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    • 1994
  • Incidence of Rhizoctonia blight ranged from 22.2% to 100% in the golf courses at six geographical locations in Korea from 1989 to 1993. Rhizoctonia blight occurred more severly in southern area than in northern area. Fifty seven isolates of Rhizoctonia solani obtained from diseased parts of zoysiagrasses were grouped to AG2-2 by anastomosis test. Pathogenicity testes revealed that this pathogen was strongly pathogenic to Korean lawngrasses(Zoysia japonica, Z. matrella, Z. tenuifolia), but not pathogenic to creeping bentgrass(Agrostis palustris), bermuldagrass(Cynodon dactylon), Kentucky bluegrass(Poa pratensis), perennial ryegrass(Lolium prenne), and creeping red fescue(Festuca rubra subsp. rubra L.). The isolation frequency of R. solani AG2-2 fro sheaths of the infected plants was the highest by 91.67%, and that from stolons and roots was 11.13% and 5.63% respectively. The pathogen was not isolated from the leaves. Population density of R. solani in the lawn of large circular patch was highest on surface soils down to 1 cm deep with the value of 4.9$\times$104 (CFU/g soil), but below 1 cm population density decreased sharply down to 0.8~9.8$\times$103 (CFU/g soil). Horizontal distribution of propagules in turfgrass soil was higher in the margin than in center of patch, where the number of propagules was similar to these of healthy looking soils close to the margin of diseased patch. The meteorological factors influencing the outbreak of the disease were temperature, the number of rainy days and precipitation. Optimum temperature for disease development of Rhizoctonia blight in field was 20~22$^{\circ}C$, and that for hyphal growth of R. solani AG2-2 in vitro was 25~3$0^{\circ}C$. In Pusan area, Rhizoctonia blight first occurred in late April and rapidly developed in late June. The disease slightly decreased during July to August and developed again in late September in 1993. The monthly disease progress in Pusan area was similar to that in Kyeonggi province.

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미생물제에 의한 잔디의 토양전염병 방제 효과 (Effect of a Microbial Product on the Control of Soilborne Diseases of Turfgrasses)

  • 박규진;김영호;박은경;김동성
    • 식물병과 농업
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    • 제1권1호
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    • pp.19-29
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    • 1995
  • A microbial product composed of three antagonistic fungal isolates (Aspergillus sp., Penicillium sp. and Trichoderma sp.) and three bacterial isolates (Arthrobacter sp., Bacillus sp., and Pseudomonas sp.) was tested for the control of Pythium blight caused by Pythium sp., brown patch by Rhizoctonia solani (anastomosis group(AG) 1-1) and large patch by R. solani (AG 2-2) of turfgrasses. Cultures of the antagonistic fungi and bacteria varied in the effectiveness in reducing disease severity of Pytium blight and brown patch on bentgrass. The antagonistic fungal and bacterial isolates were mixed and cultured at 20-$25^{\circ}C$ for 3 days in a growth medium, and the diluted solution of the microbial culture was applied under the field conditions after inoculation of the above turfgrass pathogens. The treated turfgrass was incubated at 28$^{\circ}C$ in a growth chamber. In this experiment, Pythium blight was almost completely controlled and brown patch was slightly decreased by the microbial product, while no control was observed in large patch of zoysiagrass. In zoysiagrass treated with the microbial culture, thatch accumulation was notably reduced.

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잔디 갈색퍼짐병(Large patch)의 생물학적 방제를 위한 길항 미생물의 선발과 효력 검정 (Efficacy of Antagonistic Bacteria for Biological Control of Rhizoctonia Blight (Large patch) on Zoysiagrass)

  • 정우철;신택수;김봉수;임재성;이재호;김진원
    • 식물병연구
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    • 제14권1호
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    • pp.43-50
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    • 2008
  • Rhizoctonia solani AG2-2에 의해 발생되는 잔디 갈색퍼짐병(large patch)은 한국잔디로 식재된 골프장 페어웨이에서 문제가 되는 대표적 병해이다. 본 연구에서는 잔디 갈색퍼짐병의 생물학적 방제법에 이용할 수 있는 길항 미생물을 R. solani AG2-2에 대한 항균활성과 균사생장 억제율 등을 기준으로 1차 선발하였고, 선발된 길항미생물에 대해 폿트 수준의 생물검정실험을 실시하였다. 두 실험을 통해 선발된 길항미생물 중에서 상대적 길항효과 지수(RPI) 값을 기준으로 잔디 갈색퍼짐병에 대해 가장 우수한 것으로 최종 선발된 길항미생물 CJ-9는 동정한 결과 Bacillus subtilis로 밝혀져, B. subtilis CJ-9이라 명명하였다. B. subtilis CJ-9는 합성농약에 대한 내성 실험을 통해 현장에 적용시 화학 농약과의 혼용이 가능함을 밝혔다. 골프장에서 야외 포장시험을 실시한 결과, 실험 기간동안 합성농약에 의한 관행처리구에서 잔디 갈색퍼짐병이 2차례 발병된 것과 비교하여 B. subtilis CJ-9를 처리한 시험구에서는 전혀 발생하지 않아 방제 효과가 인정되었다. 선택배지를 이용한 병원균 밀도 조사를 통하여 B. subtilis CJ-9 처리가 잔디 갈색퍼짐병을 일으키는 병원균의 밀도를 감소시키는 것을 확인하였다. 따라서 B. subtilis CJ-9이 잔디 갈색퍼짐병 방제를 위해 합성농약을 대체할 수 있는 친환경적인 방제방법이 될 수 있음을 입증하였다.

골프장의 난지형 잔디에 발생하는 Large patch의 발병 특성 (Characteristics of large patch occurrence at warm-season turfgrass in golf course)

  • 우현녕;김기림;김혜진;정덕영
    • 농업과학연구
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    • 제38권2호
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    • pp.243-248
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    • 2011
  • This investigation was conducted to develop an integrated disease management system against large patch disease occurred in a golf course. Large patch, brown patch, and Rhizoctonia blight sometimes are used interchangeably by turfgrass managers and researchers, Large patch disease of zoysiagrass is caused by a soilborne fungus called Rhizoctonia solani. Although this fungus is very similar to the one that causes brown patch disease of cool-season turfgrasses in mid-summer. Large patch development is favored by high thatch and soil moisture. Avoid overwatering the turfgrass, especially in the fall or early spring. Poorly-drained areas are very susceptible to injury from large patch and should be reconstructed (draining tiles, etc) to avoid soil saturation. However, control of yellow patch with fungicides is normally not recommended because the disease has only cosmetic effects and symptoms are usually very short-lived. Therefore, we reviewed the symptom of large patch to look for control method by soil management method.

골프장 잔디에 병을 일으키는 Rhizocatonia의 동정 및 병원성 (Identification and Pathogenicity of Rhizoctonia spp. isolated from Turfgrasses in Golf Courses in Korea)

  • 심구열;이희구
    • 아시안잔디학회지
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    • 제9권3호
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    • pp.235-252
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    • 1995
  • Turfgrass Rhizoctonia blight is a severe disease in golf courses in Korea. Attempts were made in 1989 to 1994 to identify the Rhizoctonia species associated with turfgrass blights and also to examine their epidemiology. A total of 120 Rhizoctonia isolates collected were identified as R. solani AG1, R. solani AG2-2, R. cerealis(AG-D) and R. oryzas from brown patch, large patch, yellow patch and white patch, re-spectively. R. solani AG1 was mostly associated with brown patch of cool-season grasses. and most frequently isolated in June through July and also in September. R. solani AG2-2 was isolated exclusively from zoysiagrasses from April to November, most frequently in June through July and October through November. R. cerealis was isolated frequently from both creeping hentgrass in March through April and in November, and zoysiagrass in April and July. Thermophilic R. oryzae was isolated only from creeping bentgrass in August, although with very low frequency. R. solani AG2-2 was strongly pathogenic specifically to Korean lawngrasses(Zoysia japonica, Z.matrella, Z. tenuifolia), but non-pathogenic to creeping bentgrass(Agrostis palustris), bermudagrass (Cynodon dactylon), Kentucky bluegrass(Poa pratensis), perennial ryegrass(Lolium prenne), and creeping red fescue(Festuca rubra subsp. ruhra L.). R. cerealis was strongly pathogenic to zoysiagrass and bentgrass only, but was isolate-specific i.e., from non-pathogenic to pathogenic, for other turfgrasses. The mycelial growth was optimum at relatively high temperature ranges of 25~30$^{\circ}C$ for R.solani AG1, AG2-2 and R. oryzae, while the mycelial growth of R. cerealis was initiated at $^{\circ}C$ and almost ceased at or above $^{\circ}C$.

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Zoysiagrass에 Waitea circinata에 의한 Waitea Ring Patch 발생 (First Report of Waitea Ring Patch caused by Waitea circinata on Zoysiagrass)

  • 김경덕;홍성철;장공만;한무호;피재호;박대섭
    • Weed & Turfgrass Science
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    • 제3권4호
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    • pp.378-381
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    • 2014
  • Zoysiagrass는 대표적인 난지형 잔디로 Curvularia leaf spot, Large patch, Rhizoctonia blight, Spring dead spot, 그리고 Dollar spot 등의 다양한 병에 직면해 있으며 최근에는 많은 병원균들의 복합 감염에 의한 잔디병 양상을 보이고 있다. 최근에 패취형태의 병반을 가진 zoysiagrass 엽조직으로 부터 Rhizoctonia 속과 유사한 곰팡이를 분리하였다. 리보소옴 DNA의 염기서열을 분석하여 Waitea circinata 균주들과 98% 이상의 상동성을 보였고, Koch's 법칙에 따라 zoysiagrass에서 병원성을 확인하여 이 병의 주 원인균은 Waitea circinata로 판명되었다. 따라서 본 병은 zoysiagrass에서 Waitea circinata에 의해 최초로 국내에서 발생한 병으로 사료되며, 기본 병명과 동일하게 Waitea ring patch로 사용하기를 제안하고자 한다.

국내 잔디 재배지 주요 병해 발생 및 병원균 밀도 조사 (A Detail Investigation of Major Diseases Occurrence and Pathogen Population on Turfgrass Cultivation in Nationwide)

  • 민규영;이정한;곽연식
    • Weed & Turfgrass Science
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    • 제3권2호
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    • pp.121-129
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    • 2014
  • 본 연구에서는 2013년 잔디 재배지에서 발생하는 병해와 Rhizoctonia spp. 밀도를 조사하였다. 진주포장에서 갈색퍼짐병(Large patch)이 35% 발생하였고, 9월에 녹병이 발생하였다. 갈색마름병은 남해지역에서 9월과 10월을 거쳐 발생하였으며 7월 초 피시움잎마름병이 대발생 하였고, 동전마름병(Dollar spot)의 경우 전체 면적에 3%에 달하는 면적이 심각하게 피해를 입은 포장도 있는 것으로 조사되었다. 진주 대평에서 페어리링과 갈색퍼짐병이 발생하였다. 전북고창에서는 페어리링과 테이크올패치가 나타났으며 충북청주에서는 다수의 포장에서 갈색마름병이 관찰되었다. 경기평택에서는 갈색마름병, 도열병, 썸머패취, 커브라리아엽고병, 커브라리아엽고병과 녹조의 복합피해가 나타났다. 전염원 밀도는 장성, 진주, 산청과 남해지역 모두 시간이 지날수록 증가하는 것으로 나타났다. 병 발생과 병원균을 조사한 결과 골프코스에서 나타나는 병해와 유사한 것으로 나타났다.

잔디 토양전염성병원진균에 대한 길항미생물의 분리 및 길항효과 (Isolation of Antibiotic-producing Microorganisms Antagonistic to Soilborne Pathogenic Fungi of Bentgrass and Their Antifungal Activity)

  • 이용세;전하준;이창호;송치현
    • 한국유기농업학회지
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    • 제6권1호
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    • pp.133-149
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    • 1997
  • Recently, the importance of management and cultivation of grasses has been increased in Korea. Among these cultural practices, the appropriate control of diseases is considered more important than other cultivation techniques such as fertilization and irrigation. The damages of brown patch and large patch caused by Rhizoctonia spp. and Pythium blight caused by Pythium spp. are serious in the major cultivation area of turfgrass in Korea. Since these diseases are difficult to control by agrochemicals, the damages are very serious if these are occured. The periodic spray of agrochemicals, to protect and control these diseases could make some problems of toxicity and environmental pollution as well as rising of non-target diseases. Therefore, the biological methods to control diseases have been required to decrease problems resulted from overuse of agrochemicals, to conserve natural ecosystem, and to control effectively diseases of grasses in the long period. The number of studies about biological control using antagonistic microorganisms have been increased for last half century. However, the application of biological control method has been very limited. In this study, thirteen isolates of R. cerealis, 8 isolates of R. solani and 3 isolates of Phthyn spp. have been isolated from diseased turfgrass in golf course and grass-culture area that have patch and wilting symptoms of zoysia grass and creeping bentgrass. Isolation frequency of R. cerealis and R. solani was high in especially zoysiagrass, while Pythym spp. was isolated from bent grass at low frequency but showed high pathogenicity. Totally, 205 isolates of soil microorganisms were isolated in this study as primary antagonistic microorganism by Herr's triple agar layer plate and dual culture method using rhizosphere of grasses, soil of crop field as the source of antagonistic microorganisms. Among the 205 isolates, 23 isolates were actinomycetes and 182 isolates were bacteria. All of the actinomycetes were isolated by Herr's method. Antagonistic effect of primary isolated microorganisms was tested for in vitro mycelial growth inhibition against pathogenic fungi isolated from grasses and for inhibition of disease occurrence in 24 well tissue culture plate and pot experiment. Then, four isolated of bacteria which are BG23, BG74, BG136 and BG171 were selected as antagonistic microorganisms against soil-born pathogenic fungi of bentgrass.

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Development of biological agent seeded on fine sand for control of brown patch and Pythium blight disease on golf course grasses.

  • Hur, Jae-Seoun;Lim, Kwang-Mi;Oh, Soon-Ok;Yum, Kyu-Jin;Koh, Young-Jin
    • 한국식물병리학회:학술대회논문집
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    • 한국식물병리학회 2003년도 정기총회 및 추계학술발표회
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    • pp.88.1-88
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    • 2003
  • Antogonistic bacteria against Rhizoctonia solani and Pythium spp., causing serious damage to golf course grasses, were isolated from the top soil of several golf courses in Korea. The isolate of Limk0102 was selected as the biological agent by characterization of antifungal activity, large scale preparation, fungicides tolerance and ecological fitness to the targe environment. The isolate was identified as Bacillus subtilis by biochemical and physiological characterization, and 165 rDNA sequence analysis. The bacterial agent was formulated as a granule type by seeding it on fine sand. The formulated agent showed high recovery rate (more than 10$\^$8/ cells/g sand) even after 6 month-storage at room temperature with similar antifungal activity with that of original cells. In vitro, the biological agent successfully exhibited antagonistic performance on bentgrass inoculated with R. solani or Pythium spp. isolated from the diseased grasses on golf courses. Field evaluation on disease control activity and ecological fitness of the agent is now under going on several golf courses.

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