メイン画像

研究業績

2025年

原著論文
  • 1. Fukushi,K., Tsujimoto, J., Hotta, H., Okamura, H., Inui, H., Simultaneous Quantification of Bromide, Iodide, Nitrite, and Nitrate in Salts Using Capillary Zone Electrophoresis, Salt and Seawater Science & Technology, 5, 57-65, 2025
  • 2. Fujita, K., Goto, J., Isono, E., Chujo, M., Chitose, N., Yoshida, M., Sonoda, C., Inui, H., Major latex-like proteins identified from Cucurbita pepo control the primary root elongation, Plant Growth Regulation, 2025
  • 3. Mokale Kognou, A.N., Ngono Ngane, R.A., Jiang, Z.-H., Xu, C.C., Qin, W., Inui, H., Harnessing the Power of Microbial Consortia for the Biodegradation of Per- and Polyfluoroalkyl Substances: Challenges and Opportunities, Chemosphere, 374, 144221, 2025
  • 4. 79. Sakurama, H., Haga, Y., Matsumura, C., Inui, H., Hagishita, T., Assessment of the natural attenuation of polychlorinated biphenyls in harbor sediments based on an analysis of congeners and environmental DNA: Anaerobic PCB-dechlorinating bacteria as key contributors, Environmental Monitoring and Contamination Research, in press, 2025

2024年

原著論文
  • 1. Fukushi,K., Tsujimoto, J., Hotta, H., Okamura, H., Inui, H., Quantifying Inorganic Phosphate in Salts Using Capillary Zone Electrophoresis with Transient Isotachophoresis, Salt and Seawater Science & Technology, 4, 15-19, 2024
  • 2. Mierzejewska-Sinner, E., Urbaniak, M., Inui, H., Thijs, S., Vangronsveld, J., Cucurbit plants for remediation of soils polluted with persistent and emerging organic pollutants: State of the art, future perspectives and challenges, Advances in Botanical Research, 109, 217-254, 2024
  • 3. Chitose,N.*, Fujita, K.*, Chujo, M., Inui, H., Can the agrochemical Oryzemate treatment control the uptake of pyrene by Cucurbita pepo through the regulation of major latex-like proteins?, Journal of Plant Physiology, 304, 154385, 2024 (*equal contribution)
著書
  • 1. Beškoski, V., Lješević, M., Jiménez, B., Muñoz-Arnanz, J., Colomer-Vidal, P., Inui, H., Nakano, T., Remediation of soils contaminated with PFAS: an update on available techniques, pilot studies, challenges and future directions, The Handbook of Environmental Chemistry, Jose Julio Ortega-Calvo and Frederic Coulon (eds.), Springer Nature, 1-36, 2024
  • 2. 乾秀之、第4章 PFASの分解、無害化と再資源化 第7節 細菌を利用したPFOS、PFOAの分解、PFASの規制動向と対応技術、株式会社技術情報協会、pp.369-375、2024
総説
  • 1. 太田広人、乾秀之、生物を知り制御する、日本農薬学会誌、49(1)、pp.121-122、2024
  • 2. 乾秀之、森本正則、化学合成農薬とは異なる作物保護技術、日本農薬学会誌、49(1)、pp.151-152、2024
招待講演
  • 1. ○Hideyuki Inui, Environmental remediation and safe crop production using the biological functions of bacteria and plants, Instituto de Química Orgánica General Consejo Superior de Investigaciones Científicas, Madrid, Spain, 2024(5)
  • 2. ○乾秀之、疎水性有機化合物の植物への取り込みメカニズム、第41回農薬環境科学、第47回農薬残留分析 合同研究会、徳島、2024(11)
  • 3. ○乾秀之、化学物質による作物汚染とその低減、6大学共催フォーラム第14回食の安全安心の航路を拓くfrom individual to global health、神戸、2024(11)

2023年

原著論文
  • 1. Fukushi,K., Hotta, H., Okamura, H., Inui, H., Simultaneous Determination of Iodide and Iodate in Salts Using Capillary Zone Electrophoresis with Transient Isotachophoresis, Salt and Seawater Science & Technology, 3, 37-44, 2023
  • 2. Yamazaki, E., Eun, H., Taniyasu, S., Sakamoto, T., Hanari, N., Inui, H., Wu, R., Lin, H., Lam, P., Falandysz, J., Yamashita, N., Residue distribution and daily exposure of per- and polyfluoroalkyl substances in Indica and Japonica rice, Environmental Science & Technology, 57, 4208-4218, 2023
  • 3. Fujita, K., Sonoda, C., Chujo, M., Inui, H., Major latex-like proteins show pH dependency on their binding to hydrophobic organic pollutants, Journal of Pesticide Science, 48(3), 71-77, 2023
  • 4. Ishida, Y.*, Goto, E.*, Haga, Y., Kubo, M., Itoh, T., Kasai, C., Tsuzuki, H., Nakamura, M., Shoji, O., Yamamoto, K., Matsumura, C., Nakano, T., Inui, H., Enhanced metabolism of 2,3',4,4',5-pentachlorobiphenyl (CB118) by bacterial cytochrome P450 monooxygenase mutants from Bacillus megaterium, Science of the Total Environment, 890, 164475, 2023, *Equal contribution
  • 5. Inui, H., Minic, Z., Hüttmann, N., Fujita, K., Stoykova1, P., Karadžić, I., Cucurbita pepo contains characteristic proteins without a signal peptide in the xylem sap, Journal of Plant Physiology, 287, 154038, 2023
総説
  • 1. 乾秀之、ウリ科植物はどのように疎水性化合物を地上部に蓄積するのか?、植調、57(6)、pp.2-6、2023
招待講演
  • 1. ○Hideyuki Inui, Application of biological functions of plants for monitoring and remediation of environmental pollutants, Lodz, Poland, 2023(9)
  • 2. ○Hideyuki Inui, Metabolic mechanisms of persistent environmental pollutants by mammalian cytochrome P450 monooxygenases, 2023 International Joint Meeting of the 23rd International Conference on Cytochrome P450 and the 38th Annual Meeting of the Japanese Society for the Study of Xenobiotics, Shizuoka, Japan, 2023(9)
  • 3. ○乾秀之、化学物質受容体を導入した組換え植物による環境汚染物質の検出、第28回生物化学的測定研究会学術シンポジウム、神戸、2023(11)
  • 4. ○乾秀之、PFAS (ピーファス)、永遠の化学物質の分解を目指して、兵庫アグリ・バイオ研究会・兵庫バイオ技術研究会合同交流会、神戸、2024(3)

2022年

原著論文
  • 1. Fukushi, K., Tsujimoto, J., Hotta, H., Okamura, H., Inui, H., Determining fluoride in salts using capillary zone electrophoresis with transient isotachophoresis, Salt and Seawater Science & Technology, 2, 10-16, 2022
  • 2. Stoykova, P., Ohkawa, H., Inui, H., Simple monitoring of endocrine-disrupting chemicals using transgenic Arabidopsis plants expressing medaka estrogen receptor, Chemosphere, 286, 131633, 2022
  • 3. Fujita, K., Asuke, S., Isono, E., Yoshihara, R., Uno, Y., Inui, H., MLP-PG1, a major latex-like protein identified in Cucurbita pepo, confers resistance through the induction of pathogenesis-related genes, Planta, 255, 10, 2022
  • 4. Yabu, M., Haga, Y., Itoh, T., Goto, E., Suzuki, M., Yamazaki, K., Mise, S., Yamamoto, K., Matsumura, C., Nakano, T., Sakaki, T., Inui, H., Hydroxylation and dechlorination of 3,3′,4,4′-tetrachlorobiphenyl (CB77) by rat and human CYP1A1s and critical roles of amino acids composing their substrate-binding cavity, Science of the Total Environment, 837, 155848, 2022
  • 5. Fujita, K., Chitose, N., Chujo, M., Komura, S., Sonoda, C., Yoshida, M., Inui, H., Genome-wide identification and characterization of major latex-like protein genes responsible for crop contamination in Cucurbita pepo, Molecular Biology Reports, 49, 7773-7782, 2022
  • 6. Fujita, K., Yoshihara, R., Hirota, M., Goto, J., Sonoda, C., Inui, H., A20/AN1 zinc-finger proteins positively regulate major latex-like proteins, transporting factors toward dioxin-like compounds in Cucurbita pepo, Chemosphere, 305, 135536, 2022
  • 7. Inui, H., Ito, T., Miwa, C., Haga, Y., Kubo, M., Itoh, T., Yamamoto, K., Miyaoka, M., Mori, T., Tsuzuki, H., Mise, S., Goto, E., Matsumura, C., Nakano, T., Differences in enantioselective hydroxylation of 2,2′,3,6-tetrachlorobiphenyl (CB45) and 2,2′,3,4′,6-pentachlorobiphenyl (CB91) by human and rat CYP2B subfamilies, Environmental Science & Technology, 56, 10204-10215, 2022
  • 8. Ito, T., Miwa, C., Haga, Y., Kubo, M., Itoh, T., Yamamoto, K., Mise, S., Goto, E., Tsuzuki, H., Matsumura, C., Nakano, T., Inui, H., Enantioselective Metabolism of Chiral Polychlorinated Biphenyl 2,2′,3,4,4′,5′,6-Heptachlorobiphenyl (CB183) by Human and Rat CYP2B Subfamilies, Chemosphere, 308, 136349, 2022
総説
  • 1. 乾秀之、第38回農薬環境科学研究会、植物による農薬の吸収・移行・代謝、日本農薬学会誌、47(1)、pp.13-16、2022
招待講演
  • 1. ○Hideyuki Inui, Application of biological functions of plants for monitoring and remediation of environmental pollutants, Lodz, Poland, 2022(9)
  • 2. ○Hideyuki Inui, Major latex-like proteins, responsible factors for accumulation of hydrophobic pollutants in Cucurbitaceae family, 環境ユニットセミナー、つくば、2022(10)

2021年

原著論文
  • 1. Fujita, K., Inui, H., Review: Biological functions of major latex-like proteins in plants, Plant Science, 306, 110856, 2021
  • 2. Fujita, K., Inui, H., How does the Cucurbitaceae family take up organic pollutants (POPs, PAHs, and PPCPs)?, Reviews in Environmental Science and Bio/Technology, 20(3), 751-779, 2021
  • 3. Stoykova, P., Inui, H., Transport enhancement of hydrophobic pollutants by the expression of zucchini major latex-like protein genes in tobacco plants, Journal of Plant Physiology, 263, 153564, 2021
総説
  • 1. 乾秀之、エレナ ムンカン、ペティア ストイコヴァ、ルミアナ ツェンコヴァ、アクアフォトミクスによる環境・作物汚染の非破壊適時診断法、化学工業、Vol.72、No.8、pp.566-570、2021
  • 2. 乾秀之、勝手野乃香、後藤純弥、岩渕彩、令和3年度論文賞対象論文の概要とその研究背景、日本農薬学会誌、Vol.46、No.2、pp.83-85、2021
  • 3. 乾秀之、ウリ科植物における疎水性化合物の蓄積メカニズムとその利用、農薬環境科学研究、第28号、pp.30-40、2021
招待講演
  • 1. ○乾秀之、ウリ科植物における疎水性化合物の蓄積メカニズムとその利用、第38回農薬環境科学研究会、神戸、2021(10)
  • 2. ○Hideyuki Inui, Plants, An Attractive Partner for Phytoremediation and Phytomonitoring of Environmental Pollutants, 21st European Meeting on Environmental Chemistry, Novi Sad, Serbia, 2021(12)

2020年

原著論文
  • 1. Iwabuchi, A., Katte, N., Suwa, M., Goto, J., Inui, H., Factors regulating the differential uptake of persistent organic pollutants in cucurbits and non-cucurbits, Journal of Plant Physiology, 245, 153094. 2020
  • 2. Inui, H., Katte, N., Goto, J., Iwabuchi, A., High temperatures promote the uptake of hydrophobic pollutants by Cucurbita pepo via altered gene expression levels of major latex-like proteins, Journal of Pesticide Science, 45(2), 75-80, 2020
  • 3. Yoshihara, R., Mitomi, Y., Okada, M., Shibata, H., Tanokami, M., Nakajima, Y., Inui, H., Oono, Y., Furudate, H., Tanaka, S., Effects of Arabidopsis Ku80 deletion on the integration of the left border of T-DNA into plant chromosomal DNA via Agrobacterium tumefaciens, Genes and Genetic Systems, 95, 1-10, 2020
  • 4. Medic, A., Ljesevic, M., Inui, H., Beškoski, V., Kojic, I., Stojanovic, K., Karadzic, I., Efficient biodegradation of petroleum n-alkanes and polycyclic aromatic hydrocarbons by polyextremophilic Pseudomonas aeruginosa san ai with multidegradative capacity, RSC Advances, 10, 14060-14070, 2020
  • 5. Fujita, K., Haga, Y., Yoshihara, R., Matsumura, C., Inui, H., Suppression of the genes responsible for transporting hydrophobic pollutants leads to the production of safer crops, Science of the Total Environment, 741, 140439, 2020
  • 6. Fujita, K., Kondoh, Y., Honda, K., Haga, Y., Osada, H., Matsumura, C., Inui, H., Pesticide treatment reduces hydrophobic pollutant contamination in Cucurbita pepo through competitive binding to major latex-like proteins, Environmental Pollution, 266, 115179, 2020
招待講演
  • 1. ○乾秀之、農薬を利用した環境汚染物質による作物汚染の低減法、2020年度日本農芸化学会分野融合連携シンポジウム、福岡、2020(3)

2019年

原著論文
  • 1. Goto, J., Iwabuchi, A., Yoshihara, R., Kodama, N., Matsui, T., Hirota, M., Eun, H., Inui, H., Uptake Mechanisms of Polychlorinated Biphenyls in Cucurbita pepo via Xylem Sap Containing Major Latex-like Proteins, Environmental and Experimental Botany, 162, 399-405, 2019

2018年

原著論文
  • 1. Fukushi, K., Fujita, Y., Nonogaki, J., Tsujimoto, J-i., Hattori,, T., Inui, H., Beškoski, V. P., Hotta, H., Hayashi, M., Nakano, T., Capillary zone electrophoresis determination of fluoride in seawater using transient isotachophoresis, Analytical and Bioanalytical Chemistry, 410, 1825-1831, 2018
  • 2. Beškoski, P.V., Yamamoto, A., Nakano, T., Yamamoto, K., Matsumura, C., Motegi, M., Beškoski, L., and Inui, H., Defluorination of perfluoroalkyl acids is followed by production of monofluorinated fatty acids, Science of the Total Environment, 636, 355-359, 2018
  • 3. Goto, E., Haga, Y., Kubo, M., Itoh, T., Kasai, C., Shoji, O., Yamamoto, K., Matsumura, C., Nakano, T., Inui, H., Metabolic enhancement of 2,3’,4,4’,5-pentachlorobiphenyl (CB118) using cytochrome P450 monooxygenase isolated from soil bacterium under the presence of perfluorocarboxylic acids (PFCAs) and the structural basis of its metabolism, Chemosphere, 210, 376-383, 2018
総説
  • 1. 乾秀之、西脇寿、生物の薬剤応答・抵抗性戦略から解き明かす農薬開発とシミュレーション技術の活用、日本農薬学会誌、43(1)、pp.34-35、2018
招待講演
  • 1. ○乾秀之、植物の農薬取り込みメカニズムを利用した農薬の新規利用法、第16回農薬バイオサイエンス研究会、京都、2018(11)
  • 2. ○Hideyuki Inui, Uptake mechanism of persistent organic pollutants by plants and its application to phytoremediation and crop safety, Environmental Protection - Prevention, Monitoring and Remediation - Worldwide and Our Experiences, Belgrade, Serbia, 2018(11)
  • 3. ○乾秀之、微生物由来P450モノオキシゲナーゼによるPCBの代謝に影響を及ぼす有機フッ素化合物、公立鳥取環境大学セミナー、2018(3)

2017年

原著論文
  • 1. Beškoski, P.V., Yamamoto, K., Yamamoto, A., Okamura, H., Hayashi, M., Nakano, T., Matsumura, C., Fukushi, K., Wada, S., and Inui, H., Distribution of perfluoroalkyl compounds in Osaka Bay and coastal waters of Western Japan, Chemosphere, 170, 260-265, 2017
  • 2. Navrátilová, V., Paloncýová, M., Berka, K., Mise, S., Haga, Y., Matsumura, C., Sakaki, T., Inui, H., Otyepka, M., Molecular insights into the role of a distal F240A mutation that alters CYP1A1 activity towards persistent organic pollutants, Biochimica et Biophysica Acta General Subjects, 1861, 2852-2860, 2017
総説
  • 1. 乾秀之、尾添嘉久、新アプローチによる生物制御剤ターゲットの探索、日本農薬学会誌、42(1)、pp.63-64、2017
  • 2. 乾秀之、Cytochrome P450 Biodiversity & Biotechnology 2016に参加して、シンポジア、日本農薬学会誌、42(1), pp.252-254、2017
  • 3. 乾秀之、高木陽子、中野武、第9回国際PCBワークショップの概要とPCBイムノセンサの発表、生物化学的測定研究会年報、21、pp.209-214、2017
  • 4. 乾秀之、ズッキーニの憂鬱、バイオミディア、生物工学会誌、公益社団法人日本生物工学会、95、pp.270、2017
  • 5. 乾秀之、ウリ科植物から学ぶ汚染物質による作物汚染の防止と浄化、環境報告書2017、神戸大学、pp.16、2017
招待講演
  • 1. ○乾秀之、動物が持つ化学物質応答メカニズムを利用した汚染物質のファイトモニタリング、第五回バイオシグナル研究会、神戸、2017(10)
  • 2. ○乾秀之、ウリ科植物の秘めたる力 〜汚染物質の吸収と輸送〜、公益財団法人兵庫工業会 兵庫バイオテクノロジー研究会 第98回定例会、神戸、2017(2)
  • 3. ○乾秀之、微生物由来P450モノオキシゲナーゼによるPCBの代謝に影響を及ぼす有機フッ素化合物、第13回PCB講演会、大阪、2017(1)

2016年

原著論文
  • 1. Mise, S., Haga, Y., Itoh, T., Kato, A., Fukuda, I., Goto, E., Yamamoto, K., Yabu, M., Matsumura, C., Nakano, T., Sakaki, T., and Inui, H., Structural determinants for the position of 2,3’,4,4’,5-pentachlorobiphenyl (CB118) hydroxylation by mammalian cytochrome P450 monooxygenases, Toxicological Sciences, 52(2), 340-348, 2016, Selected for the cover page
総説
  • 1. 乾秀之、International Conference of Asian Environmental Chemistry 2014(アジア環境化学国際会議2014)に参加して、第64回(平成26年度)国際会議出席費補助金受領者出席報告、公益財団法人農芸化学研究奨励会、pp.19-20、2016
招待講演
  • 1. ○Hideyuki Inui, Yuki Haga, Toshimasa Itoh, Erika Goto, Keiko Yamamoto, Chisato Matsumura, Takeshi Nakano, Toshiyuki Sakaki, Structural determinants of species differences on metabolism of dioxin-like polychlorinated biphenyls by mammalian cytochrome P450 monooxygenases, The 9th International PCB Workshop, Kobe, 2016(10)

2015年

原著論文
  • 1. Inui, H., Hirota, M., Goto, J., Yoshihara, R., Kodama, N., Matsui, T., Yamazaki, K., and Eun, H., Zinc finger protein genes from Cucurbita pepo are promising tools for conferring non-Cucurbitaceae plants with ability to accumulate persistent organic pollutants, Chemosphere, 123, 48-54, 2015
  • 2. Ohkawa, H. and Inui, H., Metabolism of agrochemicals and related environmental chemicals based on cytochrome P450s in mammals and plants, Pest Management Science, 71, 824-828, 2015
  • 3. Yamazaki, K., Tsuruta, H. and Inui, H., Different uptake pathways between hydrophilic and hydrophobic compounds in lateral roots of Cucurbita pepo, Journal of Pesticide Science, 40(3), 99-105, 2015
総説
  • 1. 松田一彦、乾秀之、生命と農薬科学:ターゲットを知る、第11回シンポジウム農薬バイオサイエンス研究会、日本農薬学会誌、40(1)、pp.35、2015
招待講演
  • 1. ○Hideyuki Inui, Transport mechanisms of compounds in plants, Seminar at AgroBioInstitute, Sofia, Bulgaria, 2015(6)
  • 2. ○Hideyuki Inui, Phytoremediation of persistent organic pollutants: Lesson from zucchini and pumpkin, 7th Symposium: Chemistry and Environmental Protection - EnviroChem 2015, Palić, Serbia, 2015(6), Plenary Lecture
  • 3. ○Hideyuki Inui, Structural basis of species differences on metabolism and toxicity of polychlorinated biphenyls among mammals, Seminar at University of Belgrade, Belgrade, Serbia, 2015(6)
  • 4. ○乾秀之、植物によるPCBの吸収メカニズム、第2回PCB講演会、大阪、2015(5)

2014年

原著論文
  • 1. Gion, K.*, Inui, H.*, Takakuma, K.*, Yamada, T., Kambara, Y., Nakai, S., Fujiwara, H., Miyamura, T., Imaishi, H. and Ohkawa, H., Molecular mechanisms of herbicide-inducible gene expression of tobacco CYP71AH11 metabolizing the herbicide chlorotoluron, Pesticide Biochemistry and Physiology, 108, 49-57, 2014(*Equal contribution)
  • 2. Inui, H., Itoh, T., Yamamoto, K., Ikushiro, S.-I., and Sakaki, T., Mammalian cytochrome P450-dependent metabolism of polychlorinated dibenzo-p-dioxins and coplanar polychlorinated biphenyls, International Journal of Molecular Sciences, 15(8), 14044-14057, 2014
  • 3. Yoshihara, R., Matsuo, S., Iwata, T., and Inui, H., Effect of amending soil with organic acids on perylene uptake into Cucurbita pepo, Journal of Pesticide Science, 39(3), 162-164, 2014
招待講演
  • 1. ○Hideyuki Inui, Structural Basis of Species Differences in Metabolism of Polychlorinated Biphenyls, 23nd Symposium on Environmental Chemistry, Night meeting, Kyoto, 2014(5)
  • 2. ○Hideyuki Inui, Structural Basis of Species Differences between Rat and Human CYP1A1s in Metabolism of Polychlorinated Biphenyls, e-symposium, Osaka, 2014(2)

2013年

原著論文
  • 1. Inui, H., Sawada, M., Goto, J., Yamazaki, K., Kodama, N., Tsuruta, H., and Eun, H., A major latex-like protein is a key factor in crop contamination by persistent organic pollutants, Plant Physiology, 161(4), 2128-2135, 2013
招待講演
  • 1. ○Hideyuki Inui, Structural Basis of Species Differences between Rat and Human CYP1A1s in Metabolism of Polychlorinated Biphenyls, 22nd Symposium on Environmental Chemistry, Mini-symposium, Tokyo, 2013(7-8), 2013

2012年

原著論文
  • 1. Inui, H., Gion, K., Utani, Y., Wakai, T., Kodama, S., Eun, H., Kim, Y.-S. and Ohkawa, H., Assays of dioxins and dioxin-like compounds in actually contaminated soils using transgenic tobacco plants carrying a recombinant mouse aryl hydrocarbon receptor-mediated β-glucuronidase reporter gene expression system, Journal of Environmental Science and Health, Part B: Pesticides, Food Contaminants, and Agricultural Wastes, 47(1), 59-65, 2012
  • 2. Inui, H., Takeuchi, T., Uesugi, A., Doi, F., Takai, M., Nishi, K., Miyake, S. and Ohkawa, H., Enzyme-linked immunosorbent assay with monoclonal and single-chain variable fragment antibodies selective to coplanar polychlorinated biphenyls, Journal of Agricultural and Food Chemistry, 60, 1605-1612, 2012
  • 3. Gion, K., Inui, H., Sasaki, H., Utani, Y., Kodama, S. and Ohkawa, H., Assays of PCB congeners and organochlorine insecticides with the transgenic Arabidopsis and tobacco plants carrying recombinant guinea pig AhR and GUS reporter genes, Journal of Environmental Science and Health, Part B: Pesticides, Food Contaminants, and Agricultural Wastes, 47(7), 599-607, 2012
著書
  • 1. 乾秀之、1−7バレイショの形質転換プロトコール、形質転換プロトコール【植物編】、田部井豊編、(株)化学同人、pp.64-70、2012
総説
  • 1. Inui, H.(Corresponding author), Yamazaki, K., Matsuo, S., Yoshihara, R. and Eun, H., Selective uptake of polychlorinated biphenyls by Cucurbita pepo, Organohalogen Compounds, 74, 1213-1216 2012
  • 2. 乾秀之、どんな物質でも誘導剤にできる抗体可変領域を用いた新規遺伝子発現調節システム、生物化学的測定研究会年報、16、pp.63-69、2012
  • 3. 乾秀之、ウリ科植物が持つ脂溶性汚染物質野蓄積能力を環境浄化に応用する!、神戸大学最前線、vol.18、pp16-17、2012
招待講演
  • 1. ○乾秀之、ウリ科植物に学ぶ脂溶性汚染物質の環境浄化メカニズム、創造例会2012、はりま産学交流会、姫路、2012(11)

2011年

原著論文
  • 1. Nagaba, Y., Tufail, M., Inui, H. and Takeda, M., Hormonal regulation and effects of four environmental pollutants on vitellogenin gene transcription in the giant water bug, Lethocerus deyrollei (Hemiptera: Belostomatidae), Journal of Insect Conservation, 15, 421-431, 2011
  • 2. Shimazu, S., Inui, H. and Ohkawa, H., Phytomonitoring and phytoremediation of agrochemicals and related compounds based on recombinant cytochrome P450s and aryl hydrocarbon receptors (AhRs), Journal of Agricultural and Food Chemistry, 59, 2870-2875, 2011
  • 3. Yamazaki, K., Suzuki, M., Itoh, T., Yamamoto, K., Kanemitsu, M., Matsumura, C., Nakano, T., Sakaki, T., Fukami, Y., Imaishi, H. and Inui, H., Structural basis of species differences between human and experimental animal CYP1A1s in metabolism of 3,3',4,4',5-pentachlorobiphenyl, Journal of Biochemistry, 149(4), 487-494, 2011
  • 4. Inui, H., Wakai, T., Gion, K., Yamazaki, K., Kim, Y.-S. and Eun, H., Congener specificity in the accumulation of dioxins and dioxin-like compounds in zucchini plants grown hydroponically, Bioscience, Biotechnology, and Biochemistry, 75(4), 705-710, 2011
  • 5. Matsuo, S., Yamazaki, K., Gion, K., Eun, H. and Inui, H., Structure-selective accumulation of polychlorinated biphenyls in Cucurbita pepo, Journal of Pesticide Science, 36(3), 363-369, 2011
著書
  • 1. 大川秀郎、乾秀之、嶋津小百合、植物機能のポテンシャルを活かした環境保全・浄化技術ー地球を救う超環境適合・自然調和型システムー、第2章ファイトレメディエーション:植物による土壌浄化技術、6 残留農薬のファイトレメディエーションとポリ塩化ビフェニル(PCB)などのファイトモニタリング、池道彦、平田收正編、(株)シーエムシー出版、pp.92-99、2011
招待講演
  • 1. ○乾秀之、どんな物質でも誘導剤にできる抗体可変領域を用いた新規遺伝子発現調節システム、生物化学的測定研究会 第16回学術シンポジウム、京都、2011(11)

2010年

原著論文
  • 1. Inui, H.*, Ogura, Y.* and Kiyosue, T., Overexpression of Arabidopsis thaliana LOV KELCH REPEAT PROTEIN 2 promotes tuberization in potato (Solanum tuberosum cv. May Queen), FEBS Letters, 584(11), 2393-2396, 2010, (*Equal contribution)
  • 2. Shimazu, S., Kawabata, Y., Inayoshi, A., Inui, H., Ashida, H. and Ohkawa, H., Recombinant human AhR-mediated GUS reporter gene assays for PCB congeners in transgenic tobacco plants in comparison with recombinant mouse and guinea pig AhRs, Journal of Environmental Science and Health, Part B: Pesticides, Food Contaminants, and Agricultural Wastes, 45(8), 764-772, 2010
  • 3. Shimazu, S., Ohta, M., Inui, H., Nanasato, Y., Ashida, H. and Ohkawa, H., Effects of biosurfactants on assays of PCB congeners in transgenic arabidopsis plants carrying a recombinant guinea pig AhR-mediated GUS reporter gene expression system, Journal of Environmental Science and Health, Part B Pesticides, Food Contaminants, and Agricultural Wastes, 45(8), 773-779, 2010
著書
  • 1. Yamazaki, K. and Inui, H., Phytoremediation with genetically modified plants, Trends in Bioremediation and Phytoremediation, Ed. by Grazyne Plaza, Research Signpost, Kerala, India, pp.339-354, 2010
総説
  • 1. 乾秀之、SEKISUI 自然に学ぶものづくり 第75回ウリ科植物に学ぶ土壌浄化法、Newton、9月号、P4、2010
招待講演
  • 1. ○乾秀之、残留性有機汚染物質の植物による吸収及び蓄積機構の解明、第11回IETセミナー、東京、2010(10)
  • 2. ○Hideyuki Inui, Phytomonitoring of environmental contaminants with transgenic plants carrying recombinant mammalian receptors, Lab Seminar at Nam-Hai Chua Lab of the Rockefeller University, 2010(10)
  • 3. ○乾秀之、抗体可変領域を用いた新規遺伝子発現調節システムの創製と応用、第1回フォローアップ勉強会、大阪、2010(9)
  • 4. ○乾秀之、イムノアフィニティーカラムを利用した水環境中有害化学物質の高感度分析、第13回日本水環境学会シンポジウム、京都、2010(9)
  • 5. ○乾秀之、どんな物質でも誘導剤にできる抗体可変領域を用いた遺伝子発現調節システム、第24回バイオテクノロジー産業化のための技術シーズ公開会、大阪、2010(8)、ポスター発表

2009年

原著論文
  • 1. Kodama, S., Okada, K., Akimoto, K., Inui, H., and Ohkawa, H., Novel recombinant aryl hydrocarbon receptors for bioassay of aryl hydrocarbon receptor ligands in transgenic tobacco plants, Plant Biotechnology Journal, 7, 119-128, 2009
  • 2. Inui, H., Takehara, A., Doi, F., Nishi, K., Takai, M., Miyake, S. and Ohkawa, H., A scFv antibody–based immunoaffinity chromatography column for clean-up of bisphenol A–contaminated water samples, Journal of Agricultural and Food Chemistry, 57(2), 353-358, 2009
  • 3. Nishi, K., Goda, Y., Fujimoto, S., Inui, H., and Ohkawa, H., Molecular analysis of specificity of anti-nonylphenol polyethoxylate single-chain antibody fragments by grafting and designed point mutations, Molecular Immunology, 46(15), 3125-3130, 2009
  • 4. Inui, H., Sasaki, H., Chua, N.-H. and Ohkawa, H., Bioassay of estrogenic compounds in transgenic Arabidopsis plants carrying a recombinant human estrogen receptor gene and a GFP reporter gene, Transgenic Research, 18, 899-909, 2009
  • 5. Gion, K., Sakurai, Y., Watari, A. and Inui, H., A designed recombinant transcription factor with antibody variable regions, Analytical Chemistry, 81(24), 10162-10166, 2009
著書
  • 1. 乾秀之、大川秀郎、5.植物のP450酵素系、5.1植物の二次代謝産物の生合成に関与するP450分子種、「P450の分子生物学」、大村恒雄、石村巽、藤井義明編、(株)講談社サイエンティフィク、pp.217-224、2009
総説
  • 1. 嶋津小百合、乾秀之、三宅司郎、山科清、大川秀郎、免疫化学測定の実際と課題-ISO技術検討課題提案の背景と例示-、生物化学的測定研究会年報、13、pp.61-72、2009
  • 2. 乾秀之、祗園景子、櫻井由季、渡昭人、山崎清志、どんな物質でも誘導剤にできる抗体可変領域を用いた遺伝子発現調節システム、ケミカルエンジニヤリング、(株)化学工業社、54(10)、pp.35-40、2009
  • 3. Inui, H., Gion, K., Eun, H. and Ohkawa, H., A high-throughput bioassay for dioxins and dioxin-like compounds using transgenic Arabidopsis plants expressing a recombinant aryl hydrocarbon receptor gene, Proceedings of the 16th International Conference on Cytochrome P450, Eds. by Shoun, H. and Ohkawa, H., Medimond S.r.l, Bologna, Italy, pp.103-106, 2009
  • 4. Ohkawa, H., Shimazu, S. and Inui, H., How are recombinant P450s and AhRs useful for phytomonitoring and phytoremediation of environmental chemicals?, Proceedings of the 16th International Conference on Cytochrome P450, Eds. by Shoun, H. and Ohkawa, H., Medimond S.r.l, Bologna, Italy, pp.133-137, 2009
招待講演
  • 1. ○乾秀之、どんな物質でも誘導剤にできる抗体可変領域を用いた遺伝子発現調節システム、第4回(大阪・兵庫・和歌山地区)非公開型科学技術情報交換会、大阪、2009(12)

2008年

原著論文
  • 1. Inui, H., Wakai, T., Gion, K., Kim, Y.-S., and Eun, H., Different uptake for dioxin-like compounds by zucchini subspecies, Chemosphere, 73, 1602-1607, 2008
招待講演
  • 1. ○乾秀之、動物特有の環境遺伝子を導入した遺伝子組換え植物の環境汚染モニタリングへの利用—ダイオキシン受容体を例に—、遺伝子若手シンポジウム 環境遺伝子への挑戦 環境に応答する生体分子の利用を目指して、神戸、2008(12)
  • 2. ○乾秀之、祗園景子、どんな物質でも誘導剤にできる遺伝子発現調節システム、甲南大学・神戸大学 新技術説明会、東京、2008(10)
  • 3. ○祗園景子、大川秀郎、乾秀之、アリルハイドロカーボン受容体を導入した形質転換植物によるダイオキシン類のバイオアッセイ、第17回環境化学討論会、神戸、2008(6)
  • 4. ○乾秀之、植物と動物の特性を活かした環境汚染物質のバイオアッセイと浄化、兵庫県立健康環境科学研究センター学術交流会、神戸、2008(3)

2007年

原著論文
  • 1. Inui, H., Maeda, A., and Ohkawa, H., Molecular characterization of specifically active recombinant fused enzymes consisting of CYP3A4, NADPH-cytochrome P450 oxidoreductase, and cytochrome b5, Biochemistry, 46(35), 10213-10221, 2007
  • 2. Kodama, S., Okada, K., Inui, H., and Ohkawa, H., Aryl hydrocarbon receptor (AhR)-mediated reporter gene expression systems in transgenic tobacco plants, Planta, 227(1), 37-45, 2007
著書
  • 1. Inui, H., Gion, K., Utani, Y. and Ohkawa, H., Bioassay for persistent organic pollutants in transgenic plants with Ah receptor and GUS reporter genes, Pesticide Chemistry, Eds. by Ohkawa, H., Miyagawa, H., and Lee, P. W., Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim, Germany, pp. 431-438, 2007
総説
  • 1. 乾秀之、11th IUPAC International Congress of Pesticide Chemistry、Biochemical Assays for POPs、日本農薬学会誌、32(Supplement)、pp.S163-S164、2007
  • 2. 乾秀之、11th IUPAC International Congress of Pesticide Chemistry、Biomonitoring of POPs in Transgenic Flowering Plants、日本農薬学会誌、32(Supplement)、pp.S160-S161、2007
  • 3. 乾秀之、11th IUPAC International Congress of Pesticide Chemistry、Biopesticides and Transgenic Crops、日本農薬学会誌、32(Supplement)、pp.S18-S21、2007
招待講演
  • 1. ○乾秀之、驚異の植物、ズッキーニ!、産学パートナーズシップ事業、姫路、2007(5)

2006年

招待講演
  • 1. ○Hideyuki Inui, Keiko Gion, Yasushi Utani and Hideo Ohkawa, Bioassay of persistent organic pollutants in transgenic plants with Ah receptor and GUS reporter genes, 11th IUPAC International Congress of Pesticide Chemistry, Kobe, Japan, 2006(8)
  • 2. ○Hideyuki Inui, Monitoring of estrogenic compounds in Transgenic plants carrying estrogen receptor and reporter genes, 11th IUPAC International Congress of Pesticide Chemistry, Kobe, Japan, 2006(8)
  • 3. ○Hideyuki Inui, Phytoremediation of pollutants, 11th IUPAC International Congress of Pesticide Chemistry, Kobe, Japan, 2006(8)
  • 4. Hideo Ohkawa, ○Hideyuki Inui and Yoshikazu Tanaka, Bioassays for persistent organic pollutants (POPs) in transgenic plants carrying AhR and GUS reporter genes, 8th International Symposium on Cytochrome P450 Biodiversity and Biotechnology, Swansea, UK, 2006(7)
  • 5. ○乾秀之、植物と動物の特性を生かした環境汚染物質のバイオアッセイと浄化、CASTクラブ第20回例会講演会、播磨、2006(6)
  • 6. Hideo Ohkawa, ○Hideyuki Inui and Yoshikazu Tanaka, Monitoring of nano-level concentrations of persistent organic pollutants(POPs) in transgenic plants, 231th ACS National Meeting, Atlanta, U.S.A., 2006(3)

2005年

原著論文
  • 1. Kawahigashi, H., Hirose, S., Inui, H., Ohkawa, H. and Ohkawa, Y., Enhanced herbicide cross-tolerance in transgenic rice plants co-expressing human CYP1A1, CYP2B6, and CYP2C19, Plant Science, 168, 773-781, 2005
  • 2. Hirose, S., Kawahigashi, H., Ozawa, K., Shiota, N., Inui, H., Ohkawa, H. and Ohkawa, Y., Transgenic rice containing human CYP2B6 detoxifies various classes of herbicides, Journal of Agricultural and Food Chemistry, 53(9), 3461-3467, 2005
  • 3. Hirose, S., Kawahigashi, H., Inoue, T., Inui, H., Ohkawa, H. and Ohkawa, Y., Enhanced expression of CYP2C9 and tolerance to sulfonylurea herbicides in transgenic rice plants, Plant Biotechnology, 22(2), 89-96, 2005
  • 4. Inui, H. and Ohkawa, H., Herbicide resistance in transgenic plants with mammalian P450 monooxygenase genes, Pest Management Science, 61, 286-291, 2005
  • 5. Inui, H., Yamada, R., Yamada, T., Ohkawa, Y. and Ohkawa, H., A selectable marker using cytochrome P450 monooxygenases for Arabidopsis transformation, Plant Biotechnology, 22, 281-286, 2005
著書
  • 1. 大川秀郎、乾秀之、大川安信、8章バイオテクノロジー、8.2環境負荷化学物質の浄化植物の開発、「環境保全型農業事典」、丸善株式会社、pp.681-686、2005
  • 2. Inui, H., Sasaki, H., Kodama, S., Chua, N.-H. and Ohkawa, H., Monitoring of endocrine disruptors in transgenic plants carrying aryl hydrocarbon receptor and estrogen receptor genes, ACS Symposium Series 892, New Discoveries in Agrochemicals, Eds. by Clark, J. M. and Ohkawa, H., American Chemical Society, Washington D.C., U.S.A., pp.40-47, 2005
総説
  • 1. 川畑順子、乾秀之、大川秀郎、植物バイオテクノロジーの新たなる挑戦、「環境モニタリング・浄化植物」、BIOINDUSTRY、シーエムシー出版、22(8)、25-32、2005
  • 2. 乾秀之、教育・情報公開・環境と農薬科学、「21世紀農薬科学への提言」、日本農薬学会誌、30(3)、307-308、2005
招待講演
  • 1. ○乾秀之、哺乳動物受容体遺伝子系を導入した形質転換植物を利用した環境負荷化学物質のモニタリング法の開発、岡山大学・学内COEキックオフシンポジウム、「資源生物を用いた地球環境のモニター系の構築と環境保全への応用」、岡山、2005(10)
  • 2. ○Hideyuki Inui, Monitoring of estrogenic chemicals in transgenic plants carrying ER and GFP genes, Workshop “Frontiers in Environmental Sciences, Kyoto, Japan, 2005(10)

2004年

招待講演
  • 1. ○Hideyuki Inui, Hideaki Sasaki, Susumu Kodama, Nam-Hai Chua and Hideo Ohkawa, Monitoring of dioxins and endocrine disruptors in transgenic plants carrying aryl hydrocarbon receptor and estrogen receptor genes, 7th International Symposium on Cytochrome P450 Biodiversity and Biotechnology, Awaji-Yumebutai, Japan, 2004(8)
  • 2. ○乾秀之、エストロジェン受容体遺伝子系を付与・発現した環境負荷化学物質モニタリング用植物の開発、日本農芸化学会学会創立80周年記念シンポジウム、「明日の農芸化学を担う若い力」、大阪、2004(7)
  • 3. ○Hideyuki Inui and Hideo Ohkawa, Herbicide resistance in transgenic plants with mammalian P450 monooxygenases, 227th ACS National Meeting, Anaheim, U.S.A., 2004(3-4)

2003年

総説
  • 1. 石原亨、乾秀之、3rd Pan-Pacific Conference on Pesticide Science、Topic-A: New Discoveries:, Topic A-1: Biopesticides & Transgenic Crops、日本農薬学会誌、28、502-504、2003
  • 2. 児玉進、乾秀之、大川秀郎、チトクロームP450の分子機能を難分解性有機汚染物質のモニタリングや負荷軽減へ応用する、化学と生物、41、7、464-470、2003
招待講演
  • 1. ○Hideyuki Inui, Hideaki Sasaki, Susumu Kodama Nam-Hai Chua and Hideo Ohkawa, Monitoring of endocrine disruptors in transgenic plants carrying aryl hydrocarbon receptor and estrogen receptor genes, 3rd Pan-Pacific Conference on Pesticide Science, Hawaii, U.S.A., 2003(6)

2002年

原著論文
  • 1. Yamada, T., Ohashi, Y., Ohshima, M., Inui, H., Shiota, N., Ohkawa, Y. and Ohkawa, H., Inducible cross-tolerance to herbicides in transgenic potato plants with the rat CYP1A1 gene, Theoretical and Applied Genetics, 104, 308-314, 2002
  • 2. Yamada, T., Ishige, T., Shiota, N., Inui, H., Ohkawa, H. and Ohkawa, Y., Enhancement of metabolizing herbicides in young tubers of transgenic potato plants with the rat CYP1A1 gene, Theoretical and Applied Genetics, 105, 515-520, 2002
著書
  • 1. 大川秀郎、乾秀之、今石浩正、第5節農薬等負荷軽減作物、「植物代謝工学ハンドブック」、(株)エヌ・ティー・エス、pp.492-503、2002

2001年

原著論文
  • 1. Inui, H., Shiota, N., Motoi, Y., Ido, Y., Inoue, T., Kodama, T., Ohkawa, Y. and Ohkawa, H., Metabolism of herbicides and other chemicals in human cytochrome P450 species and in transgenic potato plants co-expressing human CYP1A1, CYP2B6 and CYP2C19, Journal of Pesticide Science, 26, 28-40, 2001
  • 2. Inui, H., Shiota, N., Ido, Y., Inoue, T., Hirose, S., Kawahigashi, H., Ohkawa, Y. and Ohkawa, H., Herbicide metabolism and tolerance in the transgenic rice plants expressing human CYP2C9 and CYP2C19, Pesticide Biochemistry and Physiology, 71(3), 156-169, 2001
著書
  • 1. Ohkawa, H., Inui, H., Imajuku, Y., Imaishi, H. and Ohkawa, Y., Herbicide resistant transgenic plants expressing cytochrome P450 monooxygenases metabolizing xenobiotics, ACS Symposium Series 774, Agrochemical Discovery: Insect, Weed, and Fungal Control, Ed. by Baker, D. R. and Umetsu, N. K., American Chemical Society, Washington D.C., U.S.A., pp.116-126, 2001
  • 2. 乾秀之、大川秀郎、遺伝子組換え作物、本山直樹編、「農薬学事典」、(株)朝倉書店、pp.212-242、2001
  • 3. 乾秀之、今石浩正、大川秀郎、タンパク質の発現、植物での発現、日本生化学会編、「基礎生化学実験法 第3巻タンパク質II機能・動態解析法」、東京化学同人、pp.116-125、2001
  • 4. 乾秀之、辻井久恵、大川秀郎、代謝酵素:P450、日本雑草学会編、雑草科学実験法、pp.338-341、2001
総説
  • 1. 乾秀之、薬物代謝酵素導入植物の作出とその残留農薬低減効果、日本農薬学会誌、26、318-326、2001

2000年

原著論文
  • 1. Inui, H., Kodama, T., Ohkawa, Y. and Ohkawa, H., Herbicide metabolism and cross-tolerance in transgenic potato plants co-expressing human CYP1A1, CYP2B6, and CYP2C19, Pesticide Biochemistry and Physiology, 66(2), 116-129, 2000
  • 2. Shiota, N., Kodama, S., Inui, H. and Ohkawa, H., Expression of human cytochromes P450 1A1 and P450 1A2 as fused enzymes with yeast NADPH-cytochrome P450 oxidoreductase in transgenic tobacco plants, Bioscience, Biotechnology, and Biochemistry, 64(10), 2025-2033, 2000
著書
  • 1. 大川秀郎、乾秀之、大川安信、ファイトレメディエーションを目指した薬物代謝型P450発現植物の作出、日本土壌肥料学会編、「植物と微生物による環境修復」、pp.27-48、(株)博友社、2000
総説
  • 1. Watanabe, N. K., Takeda, Y., Inui, H., Kasai, K. and Ohkawa, H., Survey of xenobiotic-metabolizing cytochrome P450 homologues in higher plant species, Memoirs of the Research Institute of Biology-Oriented Science and Technology Kinki University, 5, 9-18, 2000
招待講演
  • 1. ○乾秀之、ヒトP450分子種を発現したトランスジェニック植物における除草剤代謝・耐性、第16回「植物保護とバイオテクノロジー」シンポジウム、東京、2000(3)

1999年

原著論文
  • 1. Inui, H., Ueyama, Y., Shiota, N., Ohkawa, Y. and Ohkawa, H., Herbicide metabolism and cross-tolerance in transgenic potato plants expressing human CYP1A1, Pesticide Biochemistry and Physiology, 64(1), 33-46, 1999
著書
  • 1. Ohkawa, H., Imaishi, H., Shiota, N., Yamada, T. and Inui, H., Cytochrome P450s and other Xenobiotic Metabolizing Enzymes in Plants, Pesticide Chemistry and Bioscience: The Food-Environment Challenge, Ed. by Brooks, G. T. and Roberts, T. R., The Royal Society of Chemistry, Cambridge, U.K., pp.259-264, 1999
招待講演
  • 1. ○Hideyuki Inui, Noriaki Shiota, Yukiko Motoi, Yoshiko Ido, Yukiko Ueyama, Tomomi Inoue, Susumu Kodama, Takuya Kodama, Etsuko Hayashi, Ryu Yamada, Yasunobu Ohkawa, and Hideo Ohkawa, Herbicide metabolism in human cytochrome P450 species, and herbicide tolerance of transgenic plants expressing human P450 species, Cytochrome P450 and plant genetic engineering, BRAIN Seminar, Kobe, Japan, 1999(11)
  • 2. ○乾秀之、残留農薬の遺伝子組換え植物による分解、「生命・生活・環境に侵入する技術と人間的コントロールの回復」—科学的原理と倫理の葛藤—、平成11年度神戸大学農学部公開講座、神戸、1999(7)
  • 3. ○乾秀之、大川安信、大川秀郎、ファイトレメディエーションを目的とした薬物代謝型P450分子種を発現したトランスジェニック植物の作出、平成10年度「中小企業産学官技術交流会」、神戸、1999(2)

1998年

原著論文
  • 1. Ohkawa, H., Shiota, N., Imaishi, H., Yamada, T., Inui, H. and Ohkawa, Y., Cytochrome P450 monooxygenases metabolizing herbicides, Biotechnology & Biotechnological Equipment, 12, 17-22, 1998
  • 2. Ohkawa, H., Imaishi, H., Shiota, N., Yamada, T., Inui, H. and Ohkawa, Y., Molecular mechanisms of herbicide resistance with special emphasis on cytochrome P450 monooxygenases, Plant Biotechnology, 15(4), 173-176, 1998
  • 3. Inui, H., Shiota, N., Ishige, T., Ohkawa, Y. and Ohkawa, H., Herbicide metabolism and resistance of transgenic potato plants expressing rat cytochrome P4501A1, Breeding Science, 48(2), 135-143, 1998
総説
  • 1. Ohkawa, H., Imaishi, H., Shiota, N., Inui, H. and Ohkawa, Y., Molecular mechanisms of herbicide resistance, Reviews in Toxicology, 2, 245-252, 1998

1997年

原著論文
  • 1. Shiota, N., Inui, H. and Ohkawa, H., Metabolism of the herbicide chlortoluron in transgenic tobacco plants expressing the fused enzyme between Rat cytochrome P4501A1 and yeast NADPH-Cytochrome P450 oxidoreductase, Pesticide Biochemistry and Physiology, 54(3), 190-198, 1996
著書
  • 1. Ohkawa, H., Shiota, N., Inui, H., Sugiura, M., Yabusaki, Y., Ohkawa, Y. and Ishige, T., Herbicide-resistant tobacco and potato plants expressing mammalian P450 monooxygenases, Regulation of Enzymatic Systems Detoxifying Xenobiotics in Plants, Ed by Hatzios, K. K., Kluwer Academic Publishers, Dordrecht, The Netherlands, pp.307-312, 1997

1996年

原著論文
  • 1. Ohkawa, H., Shiota, N., Inui, H. and Sugiura, M., Gene engineering for herbicide-resistant tobacco plants expressing mammalian P450 monooxygenases, Biotechnology & Biotechnological Equipment, 10, 120-122, 1996
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