KATAYAMA Noboru | Center for Ecological Research, Kyoto University
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概要
関連著者
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KATAYAMA Noboru
Center for Ecological Research, Kyoto University
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Katayama Noboru
Center For Ecological Res. Kyoto Univ.
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片山 昇
京都大学生態学研究センター
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Katayama N
Kobe Univ. Kobe Jpn
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Katayama Noboru
Department Of Applied Biological Sciences Faculty Of Agriculture Saga University
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Katayama Noboru
Center For Ecological Research Kyoto University
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Katayama Noboru
Department Of Biology Faculty Of Science Kobe University
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Katayama Noboru
Graduate School Of Science And Technology Kobe University
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OHGUSHI Takayuki
Center for Ecological Research, Kyoto University
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Ohgushi Takayuki
Center For Ecological Research Kyoto University
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NISHIDA Takaaki
Center for Ecological Research, Kyoto University
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Nishida Takaaki
Center For Ecological Research Kyoto University
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Suzuki Nobuhiko
Department of Applied Biological Sciences, Faculty of Agriculture, Saga University
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IZUMI Naoyuki
Department of Electronic Engineering, Graduate School of Engineering, Tohoku University
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Suzuki Nobuhiko
Department Of Applied Biological Sciences Faculty Of Agriculture Saga University
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Izumi Naoyuki
Department Of Forest Science Faculty Of Agriculture Kyoto Prefectural University
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Izumi Naoyuki
Department Of Electronic Engineering Graduate School Of Engineering Tohoku University
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Hojo Masaru
Department of Forest Science and Resources, College of Bioresource Sciences, Nihon University
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Hojo Masaru
Department Of Applied Biology Faculty Of Textile Science Kyoto Institute Of Technology
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HEMBRY David
Center for Ecological Research, Kyoto University
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Hembry David
Center For Ecological Research Kyoto University
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Zhang Zhi
Center For Ecological Research Kyoto University
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OHNISHI Yoshihiro
Department of Dermatology, National Defense Medical College
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Teranishi Shin
Center For Ecological Research Kyoto University
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Ohnishi Yoshihiro
Department Of Dermatology National Defense Medical College
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Ohnishi Yoshihiro
Department Of Applied Biological Sciences Faculty Of Agriculture Saga University
著作論文
- Herbivory damage does not indirectly influence the composition or excretion of aphid honeydew
- Belowground microbial symbiont enhances plant susceptibility to a spider mite through change in soybean leaf quality
- Extrafloral nectaries indirectly protect small aphid colonies via ant-mediated interactions
- Arbuscular mycorrhizal fungi species-specifically affect induced plant responses to a spider mite
- Seasonally different modes of seed dispersal in the prostrate annual, Chamaesyce maculata (L.) Small (Euphorbiaceae), with multiple overlapping generations
- Short-term response of arbuscular mycorrhizal association to spider mite herbivory