• Title/Summary/Keyword: Drechslerella brochopaga

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Morphological and Phylogenetic Characteristics of a Nematophagous Fungus, Drechslerella brochopaga Kan-23 (국내 미기록종 선충포식성 곰팡이 Drechslerella brochopaga Kan-23의 형태 및 계통분류)

  • Cho, Chun-Hwi;Kang, Doo-Sun;Kim, Yoon-Ji;Whang, Kyung-Sook
    • Korean Journal of Microbiology
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    • v.44 no.1
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    • pp.63-68
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    • 2008
  • Strain Kan-23 was extracted from nematophagous fungi, which were isolated from the soil sample of oriental melon field. The strain exhibited the slow-growing characteristic forming conidia after prolonged incubation for 30 days. Morphological features of strain Kan-23 were observed under scanning electron microscope (SEM). It possesses erect conidiophores which contain $2{\sim}3$ side branches, with each branch producing $5{\sim}10$ conidia. The size of conidiophores were between $160{\sim}450\;{\mu}m$. Conidia were ellipsoidal with three septa[septum] in each conidium. Strain Kan-23 captured nematodes by means of giant constricting rings, which were observed in the glucose peptone agar medium. ITS region of rDNA sequence was analyzed. On the basis of the high sequence similarity of ITS region (99%), the Kan-23 strain was closely related to Drechslerella brochopaga (U51950). This is the first report on Drechslerella brochopaga as a nematophagous fungus in Korea.

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.