• Title/Summary/Keyword: Rhizoctonia solani AG 2-2

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Pathogenicity of Rhizoctonia Isolates from Southern Horticultural Area in Korea (남부지방에 발생하는 Rhizoctonia solani의 병원성)

  • Roh Myung Ju;Kim Hee Kyu
    • Korean Journal Plant Pathology
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    • v.3 no.3
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    • pp.217-222
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    • 1987
  • Pathogenicity of nine Rhizoctonia solani isolates of different anastomosis groups (AG) on seed and hypocotyls of red pepper, cucumber, Chinese cabbage and radish varied considerably from nonvirulent to highly virulent. Rhizoctonia solani AG 1 was highly virulent on the above four plant species. AG 2 type 1 was highly virulent on radish and Chinese cabbage, moderately virulent on red pepper, and AG 2 type 2 was avirulent or weakly virulent except red pepper. R. solani AG 5 was moderately virulent on hosts tested. In general, virulence of the R. solani isolates to a given host varied among anastomosis groups, but not within anastomosis groups. Anastomosis groups lacked host specificity. The pathogenicity was stronger in steam-sterilized soil than in non-sterilized field soil, if the inoculated plants were closely related with orginal host from which the pathogen was isolated. On the other hand, pathogen was more virulent in non-sterilized field soil than in steam-sterilized soil, if the inoculated ones were not closely related. Generally, contrary to other soil-brone plant pathogenic fungi, Rhizoctonia isolates tended to be more virulent in non-sterilized field soil than in the same soil which had been steamed. A potential danger of building up propagules of R. solani in southern horticultural area are discussed in terms of cropping system.

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Protoplast Formation and Fusion between Anastomosis Groups of Rhizoctonia solani (Rhizoctonia solani 융합균(融合菌) 간(間)의 원형질체형성(原形質體形成) 및 융합(融合))

  • Chung, Hoo-Sup;Kim, Dal-Soo;Ahn, Hee-Suk
    • The Korean Journal of Mycology
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    • v.20 no.1
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    • pp.44-50
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    • 1992
  • The protoplast formation of Rhizoctonia solani in the fast growing anastomosis groups (AGs) 1 and 4, the intermediate AG-2 and AG-5, and the slow AG-3 yielded the most, moderate and the least in that order, respectively. Sclerotia formation varied with AGs. A high yield of protoplasts from AGs was obtained with a combined lytic enzyme system containing cellulase 'Onozuka' R-10, macerozyme R-10 and ${\beta}-glucuronidase$. When 3g (fresh weight) of 30 hr old mycelia was incubated for 3 hr at $32^{\circ}C$ with the enzyme mixture in 0.6 M mannitol, maximum protoplasts were obtained in the five AGs. A protoplast fusion between sclerotia forming AG-1 inactivated with heat and non-forming AG-5 was induced by polyethylene glycol and ${Ca}^{2+}$. Seven fusants obtained were based on characteristics of colony and sclerotium formation on culture plates. The fusants were confirmed by isozyme patterns of esterase and killing reaction between AG-1 and a fusant F1501.

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Growth Factors of Hyphal Anastomosis Groups of Rhizoctonia solani Kuhn I. Effects of Temperature, pH, Carbon and Nitrogen Sources (Rhizoctonia solani의 균사융합군별 생장요인 I. 온도, PH, 탄소원 및 질소원의 영향)

  • Kim Hyung Moo
    • Korean Journal Plant Pathology
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    • v.1 no.1
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    • pp.72-78
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    • 1985
  • The effects of temperature. pH, carbon and nitrogen sources on the growth of Rhizoctonia solani were studied by using five hyphal anastomosis groups(four cultural types, 7 isolates) of the fungus. The ranges of optimum temperature were $20^{\circ}C$ in the AG 2-1, AG 2-2 and AG 4, and $25^{\circ}C$ in the AG 1-IA, AG 1-IB, AG 3, AG 5. The optimum pH for the mycelial growth was 6-7 in the fungus. Glucose in the AG 1-lA, AG 1-IB, AG 2-2, AG 3 and AG 5, sucrose in the AG 2-1 and fructose in the AG 4 were the most effective for the mycelial growth, but glycerine, cellulose and lactose were not effectively utilized as nutrients. $Ca(NO_3)_2$ in the AG 1-IA, AG 1-IB and AG 4, asparagine in the AG 2-1, $KNO_3$ in the AG 2-2 and $NaNO_3$ in the AG 5 were the best nitrogen sources for the mycelial growth, but $NH_4NO_3$ was not easily utilized by the fungus. Nitrate and organic nitrogens for the fungal growth were utilized better than ammonium nitrogen.

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Shoot Rot of Spikenard Caused by Rhizoctonia solani AG-2-1

  • Moon, Youn-Gi;Seo, Hyun-Taek;Park, Ki-Jin;Kim, Wan-Gyu
    • Research in Plant Disease
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    • v.28 no.1
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    • pp.51-53
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    • 2022
  • In January 2021, unusual outbreak of shoot rot symptoms was observed in young spikenard (Aralia cordata) plants growing in vinyl greenhouses located in Chuncheon and Yanggu, Gangwon Province, Korea. The symptoms initially appeared on young shoots of the plants at or above the soil surface level. Later, the infected shoots wholly rotted and blighted. The incidence of diseased plants in the vinyl greenhouses investigated ranged from 5% to 30%. Eight isolates of Rhizoctonia sp. were obtained from shoot lesions of the diseased plants. All the isolates were identified as Rhizoctonia solani AG-2-1 based on the morphological characteristics and anastomosis test. Three isolates of R. solani AG-2-1 were tested for pathogenicity on young shoots of spikenard plants using artificial inoculation. All the tested isolates induced shoot rot symptoms on the inoculated plants. The symptoms were similar to those observed in spikenard plants from the vinyl greenhouses investigated. This is the first report of R. solani AG-2-1 causing shoot rot in spikenard.

Molecular Systematics of Rhizoctonia solani Isolates from Various Crops with RFLP and PCR-RFLP (각종 작물로부터 분리한 Rhizoctonia solani 균주의 RFLP 및 PCR-RFLP를 이용한 분자계통한 특성 구명)

  • 최혜선;신환성;김희종;김경수;우수진
    • Korean Journal of Microbiology
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    • v.35 no.3
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    • pp.173-179
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    • 1999
  • As a result of PCR-RFLP, the isolates used in this study were classified into five groups. Isolates 1 and 3 were included in AG-5 with 97% genetic similarity. Isolates 12 and 13 were included in AG-1 wilh 100% genetic similarily. Isolates 10 and AG-2-2 showed 97% similarity Isolates 7, 8, 11. 13, and 15 were included in AG-1. When isolates of 4, 5, 7 and 8 were restricted with Hae I. there was a single 700 bp fragment matched with AG-1. A 517 bp restriction fragment of isolate 9 was matched with AG-2-1. Based on the result of southem hybridization of genomic DNAs, all isolates restricted with Msp I showed more variable restriction differences than those restricted with Hae Ill. Isolates AG-2-1 and 9 showed 200 bp restriction fragment, and isolates 3 and AG-1 showed 1 kb restriction fragments.

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

  • 심규열;김진원;김희규
    • Korean Journal Plant Pathology
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    • v.10 no.1
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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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Antibiotic Properties of Helicosporium sp. KCTC 0635BP to Rhizoctonia solani AG2-2 IV (Rhizoctonia solani AG2-2 IV에 대한 Helicosporium sp. KCTC 0635BP의 항균활성)

  • Lee, Sang Myeong;Kim, Dong Soo;Lee, Kwang-Soo;Lee, Chong-Kyu;Lee, Dong Woon
    • Weed & Turfgrass Science
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    • v.2 no.2
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    • pp.202-206
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    • 2013
  • Biocontrol potential of an isolate of Helicosporium spp. against Rhizoctonia solani, Fusarium oxysporium and Phytophthora drechsleri was evaluated in vitro and in vivo. A selected biocontrol agent designated as Helicosporium 0635BP strongly inhibited growth and lysed mycelium of Rhizoctonia solani and Fusarium oxysporium on PDA. Autoclaved culture filtrate of the agent also completely inhibited growth of the turfgrass large patch pathogen, R. solani AG2-2 IV at the concentration of 50 ml $L^{-1}$. The pathogen was killed when dipped under the 20% filtrate for four hours or 50% for one hr. In a field trial, plots applied with the crude or times diluted culture filtrate showed 100% control efficacy of the turfgrass large patch as a chemical applied for a comparison. Results indicated that Helicosporium 0635BP is a promising biocontrol agent on control of the turfgrass large patch disease and its culture filtrate contained unknown heat suitable antifungal substance (s). Further studies on mass production, purification and identification of the unknown compound (s) are in progress for practical use.

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

  • 정봉구;정종일
    • Korean Journal Plant Pathology
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    • v.14 no.3
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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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Occurrence of Brown Patch on Kentucky Bluegrass Caused by Rhizoctonia solani AG-1 IB (Rhizoctonia solani AG-1 IB에 의한 Kentucky Bluegrass 갈색잎마름병 발생)

  • Chang, Taehyun;Lee, Yong Se
    • Weed & Turfgrass Science
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    • v.2 no.1
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    • pp.88-94
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    • 2013
  • Brown patch caused by Rhizoctonia solani AG-1 IB occurred on Kentucky bluegrass during late May through early October 2010 at golf course in Gyeongbuk Province, Korea. Disease symptoms on the turfgrass for spring season were leaf blights dying from the leaf tip, which appeared patches of brown color in the field. However, it appeared patches of dark brown color or gray brown color in fall. The fungus (B-7 isolate) of brown patch was isolated from the diseased leaf tissue and cultured on potato-dextrose agar (PDA) for identification. The young hyphae had acute angular branching and few septa and mature hyphal branches showed about 90-degree angles and development of monilioid cells, which were morphologically identical to Rhizoctonia solani AG-1 IB reported previously. DNA sequences of ribosomal RNA gene (internal transcribed spacer) of the fungus were homologous with similarity of 99% to those of Rhizoctonia solani AG-1 IB isolates in GenBank database, confirming the identity of the causal agent of the disease. Pathogenicity of the fungus was also confirmed on the creeping bentgrass and Kentucky bluegrass by Koch's postulates. This is the first report of brown patch on Kentucky bluegrass caused by Rhizoctonia solani AG-1 IB in Korea.

Studies on Cultural Characteristics and Pathogenicity of Rhizoctonia spp. and Effect of Fungicides (Rhizoctonia균의 배양특성 및 잔디에 대한 병원성과 살균제의 효과)

  • 이두형;유왕근;한경숙
    • Asian Journal of Turfgrass Science
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    • v.6 no.2
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    • pp.89-98
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    • 1992
  • Cultural characteristics and pathogenicity on the isolates of Rhizoctonia oryzae, R. oryzae-sativae and anastomosis group of R. solani and evaluation of selected fungicides on brown patch disease of creeping bentgrass and large patch disease of zoysia grass were studied comparatively. From effect of temperature on the rate of mycelia growth, the result indicated that the temperature groups were separated into four types : isolates of R. oryzae and R. oryzae-sativae had an optimum temperature of $30~35^{\circ}C$. Anastomosis groups of R. solani were separated into three temperature types as followings : high temperature type had an optimum temperature from 25 to $30^{\circ}C$, moderate type had grown from 20 to $25^{\circ}C$ for optimum and low temperature type had an optimum temperature of $20^{\circ}C$ but at $35^{\circ}C$ did not grow. Inoculation tests showed that AG-1( I A), AG-1( I B), bentgrass isolate of R. solani and R. oryzae were strongly pathogenic on creeping bentgrass, followed by AG-2-1, AG-4, AG-5 and AG-2-2 isolates of R. solani moderately to weakly. Zoysia grass isolate of R. solani and R. oryzae were strongly pathogenic on zoysia grass but AG-1( I B) and AG-5 isolates of R. solani showed moderately pathogenic. Capro(iprodione oxine-copper) and mytan(myclobutanil) were extremely effective against brown patch disease of creeping bentgrass and large patch disease of zoysia grass followed by thiopan (thiopanate-methyl) and pencycuron for brown patch disease and tolos(tolclofos-methyl) and thiopan for large patch disease.

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