An Anti-hydrotactic Response and Solid Surface Recognition of Germ Tubes of the Rice Blast Fungus, Magnaporthe grisea
スポンサーリンク
概要
- 論文の詳細を見る
Magnaporthe grisea, the causal agent of rice blast disease, differentiates an appressorium to penetrate through the host cuticle with an infection peg elaborated from the appressorium. Similar reaction is observed on various synthetic substrata. By using a hardness-adjustable material, Hycel A-342, the correlation between appressorium formation and substratum hardness was evaluated. The results suggested that substratum hardness played an important role in triggering appressorium formation of M grisea. Furthermore, growth orientation of germ tubes was coerced by the hydrophobicity of the contact surfaces. When conidia germinated at the interface of two differently hydrophobic phases, the germ tubes grew preferentially towards the more hydrophobic phase. Mutagenesis studies suggested that loss of this anti-hydrotactic behavior impaired appressorium formation. Since water is a pre-requisite for germination, we propose that the anti-hydrotactic response initiates attempted penetration into the plants by germ tubes, then triggers appressorium formation by the surface hardness.
- 社団法人日本農芸化学会の論文
- 1997-07-23
著者
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Xiao Jin-zhong
Food Science and Technology Institute, Morinaga Milk Industry Co., Ltd.
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Xiao J‐z
Morinaga Milk Ind. Co. Ltd. Zama Jpn
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KAMAKURA Takashi
Microbial Toxicology Laboratory, The Institute of Physical and Chemical Research (RIKEN)
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XIAO Jin-zhong
Microbial Toxicology Laboratory, The Institute of Physical and Chemical Research (RIKEN)
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KOCHI Takamasa
Tokyo University of Agriculture and Technology
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YAMAGUCHI Isamu
Microbial Toxicology Laboratory, The Institute of Physical and Chemical Research (RIKEN)
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WATANABE Tadakazu
Microbial Toxicology Laboratory, The Institute of Physical and Chemical Research (RIKEN)
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SEKIDO Shigeko
Microbial Toxicology Laboratory, The Institute of Physical and Chemical Research (RIKEN)
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CHOI Woo-Bong
Microbial Toxicology Laboratory, The Institute of Physical and Chemical Research (RIKEN)
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Choi Woo-bong
Microbial Toxicology Laboratory The Institute Of Physical And Chemical Research (riken):(present Add
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Kamakura T
Graduate School Of Agriculture Tokyo University Of Agriculture And Technology
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Kamakura Takashi
Riken The Institute Of Physical And Chemical Research
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Kamakura Takashi
Microbial Toxicology Laboratory The Institute Of Physical And Chemical Research (riken)
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Sekido Shigeko
Microbial Toxicology Laboratory The Institute Of Physical And Chemical Research (riken)
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Sekido Shigeko
Microbial Toxicology Laboratory And Biodesign Research Group Riken(the Institute Of Physical And Che
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Watanabe Tadakazu
Microbial Toxicology Laboratory The Institute Of Physical And Chemical Research (riken)
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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 Isamu
Microbial Toxicology Laboratory Riken:(present Address)environmental Plant Research Group Plant Scie
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Togashi Kana
Graduate School Of Agriculture Tokyo University Of Agriculture And Technology
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YAMAGUCHI Isamu
Microbial Toxicology Laboratory and Biodesign Research Group, RIKEN(The Institute of Physical and Chemical Research)
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