• 제목/요약/키워드: Ceratocystis paradoxa

검색결과 2건 처리시간 0.019초

Screening of Trichoderma Isolates as a Biological Control Agent against Ceratocystis paradoxa Causing Pineapple Disease of Sugarcane

  • Rahman, M.A.;Begum, M.F.;Alam, M.F.
    • Mycobiology
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    • 제37권4호
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    • pp.277-285
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    • 2009
  • In this study, dual culture, poison agar, and direct methods were used to assess the ability of Trichoderma virens IMI-392430, T. pseudokoningii IMI-392431, T. harzianum IMI-392432, T. harzianum IMI-392433, and T. harzianum IMI-392434 to control Ceratocystis paradoxa, which causes the pineapple disease of sugarcane. The highest percentage inhibition of radial growth (PIRG) values were observed with T. harzianum IMI-392432 using two dual culture methods, 63.80% in Method I and 80.82% in Method II. The minimum colony overgrowth time was observed with T. harzianum IMI-392432 and the maximum was observed with T. pseudokoningii IMI-392431. Different concentrations of different day-old metabolites of Trichoderma isolates were tested against mycelial growth of C. paradoxa. The highest PIRG (84.685%) exhibited at 80% concentration of 30-day-old metabolites of T. harzianum IMI-392432 using the modified bilayer poison agar method. In the direct assay method the maximum mycelial growth weight (PIGW) was observed at the same concentration and the same day-old metabolites of T. harzianum IMI-392432. This study showed that Trichoderma isolates have a good antagonistic effect on C. paradoxa mycelial growth and T. harzianum IMI-392432 has the most potential to control the pineapple disease pathogen.

국내에서 분리된 미기록 진균 18종 보고 (A Report of Eighteen Unrecorded Fungal Species in Korea)

  • 안금란;최민아;김지은;서은지;김준영;김성환
    • 한국균학회지
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    • 제45권4호
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    • pp.292-303
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    • 2017
  • 2016년 버섯 재배사 내 실내공기, 식물병반(동백나무의 잎, 줄딸기, 은방울꽃, 생강나무), 버섯 배양배지 재료, 오염된 가구 등에서 진균을 분리 동정하였다. 동정된 진균 중 18종이 국내 미기록임을 확인하였다. 동정된 진균은 버섯 재배사 내 실내공기에서 6종, 식물병반에서 6종, 버섯 배양배지 재료에서 5종, 오염된 가구에서 1종이 각각 분리되었다 이들 동정된 균주에 대한 형태학적 특성과 ITS rDNA, 18S rDNA, 28S rDNA, calmodulin gene, translation elongation factor gene, ${\beta}-tubulin$ gene 등의 염기서열에 기반한 분자계통학적 관계에 대하여 기술하였다.