• Title/Summary/Keyword: Nematode-trapping fungi

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Contribution to the Checklist of Soil-inhabiting Fungi in Korea

  • Lee, Seon-Ju;Hong, Seung-Beom;Kim, Chang-Yung
    • Mycobiology
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    • v.31 no.1
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    • pp.9-18
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    • 2003
  • A total of 82 genera and 271 species of soil-inhabiting fungi including saprobic, nematode-trapping, and arbuscular mycorrhizal but plant pathogenic fungi published hitherto in South Korea are listed with the information on geographic location, habitat, vegetation when available, and relevant literatures.

Nematode-Trapping Fungi Showed Different Predacity among Nematode Species (선충 종류별 4종 포식성곰팡이의 포식력 차이)

  • Kang, Heonil;Choi, Insoo;Park, Namsook;Bae, Changhwan;Kim, Donggeun
    • Research in Plant Disease
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    • v.25 no.3
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    • pp.149-155
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    • 2019
  • Nematode-trapping fungi develop trap and consume nematodes are an important part of the subsoil ecosystem and they share a special predator-prey relationship. Four nematode-trapping species, there with adhesive network, Arthrobotrys oligospora, A. sinensis, A. thaumasia and one with constricting ring, Drechslerella brochopaga were collected from soils in Korea and tested their predacity against 12 different nematode species. They were three feeding groups, plant-parasitic (Meloidogyne incognita and Pratylenchus penetrans), fungivorous (Aphelenchus avenae), bacteriovorous (Betlerius sp. and Diplogasteritus sp. in diplogasterid, Panagrolaimus labiatus, P. multidentatus in panagrolaimid, Mesorhabditis irregularis, Pelodera strongyloides and Rhabditis sp., in rhabditid, and Acrobeloides sp. in cephalobid). Results showed that nematode-trapping fungi successfully captured most of nematodes in Petri dish in the group of plant-parasitic nematodes and rhabditids, moderately and variably in other nematodes in 15 days. But it didn't captured A. avenae and Acrobeloides sp. both belongs to c-p group 2. Numbers of Acrobeloides sp. and A. avenae even increased during the test period. The results of this study indicated that nematode-trapping fungi may have specificity among nematode species.

Biological Control of Root-Lesion Nematodes(Pratylenchus spp.) by Nematode-Trapping Fungi (선충 포식성 곰팡이를 이용한 뿌리썩이선충(Pratylenchus spp.)의 생물학적 방제)

  • 손흥대;김성렬;최광호;추호렬
    • Journal of Life Science
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    • v.10 no.4
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    • pp.403-407
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    • 2000
  • For the biological control of the root-lesion nematodes, Pratylenchus spp., which damage directly and indirectly to the leaf perilla, the nematical effect of three nematode-trapping fungi, Arthrobotrys oligospora, A. conoides and A. dactyloides was evaluated in the field. Three species of Arthrobotrys were isolated from the culture soil of leaf perilla in 1998 and were observed the capture of the root-lesion nematodes, Pratylenchus spp. by adhesive hyphal networks or constricting rings on agar. At 40 days after treatment, the plant-parasitic nematodes and root-lesion nematode populations were approximately increased 3.5 fold in untreated control plot, while the nematode population in fungi treatment plots was similar to initial population. In the A. dactyloides plot, however, the population of plant-parasitic nematodes and Pratylenchus spp. was approximately reduced 65% and 53%, respectively. Thus, the fungus A. dachyloides should provide as biological agent for the control of Pratylenchus spp.

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Isolation of Nematode Destroying Fungi (Nematode에 기생(寄生)하는 진균(眞菌)의 분리(分離))

  • Yoo, Kwan-Hi;Choi, Young-Hi;Lee, Hyung-Hoan
    • The Korean Journal of Mycology
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    • v.9 no.4
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    • pp.193-197
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    • 1981
  • Nematode destroying-fungi from ginseng field were isolated and then identified on 2% wateragar and malt extract agar media. 1. Six strains of Arthrobotrys sp. and three strains of Harposporium sp. were isolated and identified. 2. Arthrobotrys sp. formed trapping apparatus when they were cultured with Nematode and appeared to be destroying fungi. 3. Harposporium sp. appeared to be endoparasitic fungi. 4. Both Arthrobotrys sp. and Harposporium sp. were grown well on nutrient agar and malt extract agar.

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Comparison of Predacity of Nematode Predatory Fungi against Meloidogyne incognita (국내 분리 포식성곰팡이들의 고구마뿌리혹선충에 대한 포식 능력 비교)

  • 이재국;김동근;이영기
    • Korean journal of applied entomology
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    • v.39 no.2
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    • pp.111-115
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    • 2000
  • Fifty-two nematode predatory fungi were isolated from 37 soil samples collected from eight provinces in Korea. Isolated fungi were tested their predacity against Rhabditis sp. and Meloidogyne incognita in petri dish, and against M. incognita in greenhouse pot experiments. Fifty isolates had trapping organ of adhesive networks and two isolates had adhesive column or adhesive knob. In petri dish experiments, 5 1 isolates against Rhubditis sp. and 26 isolates against M. incognita showed over 91 % of predacity; in greenhouse experiments, however, only three isolates showed over 81% of predacity. These results imply that the results from the laboratory experiments are not consistent with those from the greenhouse experiments. Therefore, to select a promising biocontrol predatory fungi for plant-parasitic nematodes, the screening experiment should be conducted in conditions close to nature.

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Characteristics of Pinewood Nematode Trapping by Nematophagous Arthrobotrys spp. (선충포획성 Arthrobotrys속균에 의한 소나무재선충 포획 특성)

  • Lee, Gak-Jung;Koo, Chang-Duck;Sung, Joo-Han
    • The Korean Journal of Mycology
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    • v.36 no.2
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    • pp.153-162
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    • 2008
  • Pinewood nematode (PWN) trapping by nematophagous fungi, Arthrobotrys conoides, A. dactyloides and A. oligospora and the fungal growth were characterized. The three Arthrobotrys species each was inoculated into the PWN cultured on Botrytis cinera fungal colony on potato dextrose agar (PDA). The effects of temperature, pH, PWN inoculation density and nutrients on the growth of the three Arthrobotrys spp were measured. A. conoides grew fast, 13.9 mm/day while A. dactyloides grew slow, 3 mm/day. PDA medium was the best for the fungal growth at $25^{\circ}C$ and pH 4.5. The Arthrobotrys spp growth was stimulated by 500 nematodes inoculation but not by 1000 inoculation. A. dactyloides did not grow below pH 4.5 and at high PWN density. A. conoides and A oligospora formed trapping organs with thick constricting hyphal network only when PWN present, while A. dactyloides formed the organ with circular hyphae constitutively. A. conoides formed trapping organs faster than A. oligospora did. The nematode trapping hyphae of the fungi penetrated into PNW inside to form many tiny infection bulbs and to digest the nematode. However, A. dactyloides formed a few trapping organs but no trapping was observed. Infection rate of PWN was 95% by A. conoides, 80% by A. oligospora and 92% by the combination inoculation of A. conoides and A. oligospora. In contrast A. dactyloides increased PWN density without infecton. There was no interaction effect in any combination inoculation of the three Arthrobotrys spp. A. conoides enhanced PWN infection rate by rapid hyphal growth and early trapping, while A. oligospora did it by increasing hyphal density. In conclusion A. conoides is the most effective in both hyphal growth and infection, and thus these characteristics can be utilized as a biological control of PWN.

Purification and Cloning of an Extracellular Serine Protease from the Nematode-Trapping Fungus Monacrosporium cystosporium

  • Yang, Jin-Kui;Ye, Feng-Ping;Mi, Qi-Li;Tang, Song-Qing;Li, Juan;Zhang, Ke-Qin
    • Journal of Microbiology and Biotechnology
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    • v.18 no.5
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    • pp.852-858
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    • 2008
  • An extracellular protease (Mc1) was isolated from the nematode-trapping fungus Monacrosporium cystosporium by gel filtration, anion-exchange, and hydrophobic interaction chromatographies. This protease had a molecular mass of approximately 38 kDa and displayed an optimal activity at pH 7-9 and $56^{\circ}C$ (over 30 min). Its proteolytic activity was highly sensitive to the serine protease inhibitor PMSF (phenylmethylsulfonylfluoride, 0.1 mM), indicating that it belonged to the serine-type peptidase group. The Michaelis constant ($K_m$) and $V_max$ for substrate N-Suc-Ala-Ala-Pro-Phe-pNA were $1.67{\times}10^{-4}\;M$ and 0.6071 $OD_{410}$ per 30 s, respectively. This protease could degrade a broad range of substrates including casein, gelatin, BSA (bovine serum albumin), and nematode cuticle. Moreover, the enzyme could immobilize the free-living nematode Panagrellus redivivus and the pine wood nematode Bursaphelenchus xylophilus, suggesting that it might playa role in infection against nematodes. The encoding gene of Mc1 was composed of one intron and two exons, coding for a polypeptide of 405 amino acid residues. The deduced amino acid sequence of Mcl showed 61.4-91.9% identity to serine proteases from other nematode-trapping fungi. Our results identified that Mcl possessed biochemical properties including optimal reaction condition and substrate preference that are different from previously identified serine proteases.

An Unrecorded Species of Nematode-trapping Fungus, Dactylella pseudoclavata in Korea

  • Kim, Dong-Geun;Lee, Joong-Hwan;Kim, Hyun-Ok
    • The Plant Pathology Journal
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    • v.23 no.3
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    • pp.210-211
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    • 2007
  • Dactylella pseudoclavata that captures nematodes in adhesive networks was isolated from nematode-infested strawberry plants from Andong, Korea. It produces obclavate, 0-1 septate conidia, $30-40{\mu}m$ long and $8-11{\mu}m$ wide, with round distal ends and bases shaped like bottle-necks. The conidiophores were simple, occasionally branched, $150-300{\mu}m$ long, producing 1-4 conidia at the apex. Chlamydospores were abundant, intercalary or catenulate, yellowish to brown, globate or subglobate, wart on the surface, $30-35{\times}25-30{\mu}m$ in size. This is the first report of Dactylella pseudoclavata in Korea.

Key to the Korean Nematode-Trapping Fungi with Additional Descriptions of Arthrobotrys flagrans and A. superba (한국 선충 포식성곰팡이 분류검색표 및 Arthrobotrys flagrans 와 A. superba의 재기재)

  • Seo, Jongmin;Kang, Heonil;Kwon, Giyoon;Park, Namsook;Bae, Changhwan;Choi, Insoo
    • The Korean Journal of Mycology
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    • v.47 no.4
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    • pp.291-301
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    • 2019
  • Nematophagous fungi can capture, kill, and digest nematodes using a specific capturing organ. Of the nematophagous fungi, while Arthrobotrys flagrans and A. superba have been described previously, certain characteristics have not been described. For a detailed description of the two nematophagous fungi, the fungi were isolated from soil samples and produced in a pure culture. Morphological characteristics, such as predatory ability (according to the nematode species), shape, and size of predatory organ, conidia, and chlamydospore were investigated and they were used for identification of the fungal isolates along with molecular phylogenetic analysis. Furthermore, this study provides the classification key for 21 nematophagous species.