• Title/Summary/Keyword: Butt-rot fungi

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Frequency and Wood Decaying Ability of Butt-rot Fungig Isolated form Larch (Larix leptolepis) (낙엽송근주심재부후병균(根株心材腐朽病菌)의 분포빈도(分布貧道)와 목재열화능력(木材劣化能力))

  • Kim, Hyun Joong;Cha, Ju Youngl;Yi, Chang Keun
    • Journal of Korean Society of Forest Science
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    • v.80 no.3
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    • pp.311-316
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    • 1991
  • Butt-rot fungi were isolated from decayed portion in butt rotted larch trees[Larix leptolepis(Sieb. et Zucc.) Gord.]. From a total of 216 affected trees in 38 forests of five provinces, Sparassis crispa(Wulf. ex Fr.) Fr. was isolated with the highest frequency, i.e.. 28% of the total trees. Laetiporus sulphureus(Fr.) Bond. et Sing, with 19%, and Phaeolus schweinitzii(Fr.) Pat. with 8%. However, none of these fungi was isolated from 45% of the trees. Wood decaying abilities and interaction of four basidiomycetous and three non-basidiomyo:etous fungi isolated from butt rotted trees were investigated. The weight loss of larch wood blocks, when exposed to the culture of a fungus for six months, was 19.6% for P. schweinitzii, 10% for S. crispa, 8.2% for L. sulphurous, 5.1% for Coriolus hirsutus, and less than 4.4% for three non-basidiomycetous fungi. In incubation with combinations of the fungi, the wood decay activity of S. crispa, L. sulphurous and C. hirsutus was increased by the non-basidiomycetous fungi of Geotrichum candidacy, G. sp. and Verticillium sp., but that of P. schweinitzii was not.

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Decay Damage of Japanese Larch(Larix leptolepis) Caused by Two Butt-Rot Fungi, Phaeolus schweinitzii and Sparassis crispa (해면버섯균(菌) 꽃송이버섯균(菌)에 의(依)한 낙엽송 생입목(生立木)의 심재부후피해(心材腐朽被害))

  • Kim, Hyun Joong;Kim, Jun Suob;Yi, Chang Keun
    • Journal of Korean Society of Forest Science
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    • v.79 no.2
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    • pp.138-143
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    • 1990
  • In mature stand of Japanese larch (Larix leptolepis(S. et Z.) Gordon) planted in 1925, heartrot damage was investigated by felling some infected trees with fruit bodies of two butt-rot fungi, Phaeolus schweinitzii and Sparassis crispa. Percentage of heartrot area on basal area of decay trees was 19.2-74.4, and the height reached by the decay was 1.2-5.5m. Percentage of decay volume was in the range of 2.2-13.4%, but the loss wood to the height reached by the decay amounted to 27.2% (range 13.1-37.1%) of whole volume, Decay damage caused by S. crispa was much greater than that caused by P. schweinitzii. Compressive strength ($52-77kg/cm^2$) and specific gravity (0.40-0.47) of rot wood was reduced to 77% and 39% respectively in maximum as compared to sound wood of healthy tree, and those of sound-looking wood close by heartrot to 42% and 26%. The current annual growth of trees with decay was fallen behind that of sound tree from eight to fourteen years after planting in D. B. H. and from twelve to twenty-one years after in volume.

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