Effects of Iprodione and Fludioxonil on Glycerol Synthesis and Hyphal Development in Candida albicans(Microbiology & Fermentation Technology)
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概要
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We investigated the effects of iprodione and fludioxonil on the pathogenic yeast Candida albicans. Growth of the wild-type IFO1385 strain of C. albicans was inhibited by both fungicides, while Saccharomyces cerevisiae was basically unaffected by them even at a concentration of 25μg/ml. Both fungicides stimulated glycerol synthesis in C. albicans but not in S. cerevisiae. The antioxidant α-tocopherol acetate and the cytochrome P-450 inhibitor piperonyl butoxide antagonized the fungitoxicity of iprodione and fludioxonil in C. albicans. It is known that mutations within the histidine kinase NIK1/OS-1 gene confer resistance to iprodione and fludioxonil in Neurospora crassa, while the fungicide-insensitive S. cerevisiae has only one histidine kinase SLN1 gene in its genome. In contrast, C. albicans has three histidine kinase genes, namely CaSLN1, CaNIK1/COS1, and CaHK1, the null mutants of which were found to impair the hyphal formation. Iprodione and fludioxonil were found to suppress filamentation when the IFO1385 strain was incubated on a solid medium containing fetal bovine serum. These observations suggest that iprodione and fludioxonil interfere with the CaNIK1/COS1 signal transduction pathway, resulting in glycerol synthesis stimulation and the inhibition of hyphal formation.
- 社団法人日本農芸化学会の論文
- 2002-10-23
著者
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岡部 尚文
日本ロシュ研究所
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FUJIMURA Makoto
Faculty of Life Sciences, Toyo University
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ICHIISHI Akihiko
Faculty of Life Sciences, Toyo University
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Fujimura Makoto
Fac. Of Life Sciences Toyo Univ.
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Fujimura M
Faculty Of Engineering Nagasaki University
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Fujimura M
Univ. Toyo Oura‐gun Jpn
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Yamaguchi I
Department Of Applied Biological Chemistry The University Of Tokyo
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Fujimura M
Fac. Of Life Sciences Toyo Univ.
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Fujimura Makoto
The Faculty Of Engineering Nagasaki University
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YAMAGUCHI ISAMU
Plant Science Center, RIKEN
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OSHIMA Michiyo
Faculty of Life Sciences, Toyo University
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MOTOYAMA Takayuki
Plant Science Center, RIKEN
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OCHIAI Noriyuki
Faculty of Life Science, University of Toyo
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YAMADA-OKABE Hisafumi
Department of Oncology, Nippon Roche Research Center
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Fujimura Makoto
Faculty Of Life Sciences Toyo University
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Okabe H
Hanno Research Center Taiho Pharmaceutical Co. Ltd.
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岡部 尚文
日本ロシュ(株)研究所抗癌剤研究部
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Yamada‐okabe H
Department Of Oncology Nippon Roche Research Center
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Yamada Okabe
Pharmaceutical Research Department Chugai Pharmaceutical
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Yamada Okabe
Pharmaceutical Research Department Iii Kamakura Research Laboratories
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Yamada-okabe Hisafumi
Department Of Mycology Nippon Roche Research Center
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Yamada-okabe Hisafumi
Dept. Of Mycology Nippon Roche Reserch Center
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Yamaguchi I
Microbial Toxicology Laboratory Riken:(present Address)environmental Plant Research Group Plant Scie
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Yamaguchi Isamu
Laboratory For Remediation Research Plant Science Center Riken
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Yamaguchi I
Riken The Institute Of Physical And Chemical Research
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Yamaguchi Isamu
Plant Science Center Riken
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Ichiishi Akihiko
Faculty Of Life Sciences Toyo University
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Ichiishi Akihiko
Fac. Of Life Sciences Toyo Univ.
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Yamaguchi I
Riken (the Institute Of Physical And Chemical Research) Plant Science Center
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岡部 尚文
中外製薬(株)創薬企画推進部
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Oshima Michiyo
Faculty Of Life Science University Of Toyo
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Motoyama T
College Of Engineering Kanto Gakuin University
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Ochiai Noriyuki
Plant And Microbial Metabolic Engineering Research Unit Discovery Research Institute (dri) Riken
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FUJIMURA Makoto
Faculty of Life Science, University of Toyo
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