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川合 真紀 カワイ マキ

所属部署名 理工学研究科 環境科学・社会基盤部門 電話番号
職名 社会連携・広報担当副学長  教授 ■FAX番号
住所 埼玉県さいたま市桜区下大久保255 ■メールアドレス
■ホームページURL http://park.saitama-u.ac.jp/~geneenvtech/index.html

プロフィール

兼担研究科・学部

工学部 環境共生学科
副学長

研究分野

植物生理
分子生物学

所属学会

所属学会
日本植物学会
日本植物生理学会
アメリカ植物学会
日本分子生物学会
日本植物細胞分子生物学会

学歴

出身大学院・研究科等
1995 , 東京大学 , 博士 , 理学系研究科 , 植物学専攻 , 修了
1992 , 筑波大学 , 修士 , 生物科学研究科 , 基礎生物学専攻 , 修了
出身学校・専攻等(大学院を除く)
1990 , 筑波大学 , 第二学群 , 生物学類 , 卒業
取得学位
博士 , 東京大学

受賞学術賞

2007 , Hans Seiye Award The 2nd Conference of Stress and 3rd Cell Stress Society International Congress on Stress Responses inBiology and Medicine , August 26, 2007, in Budapest, Hungary 学会発表に対して
2007 , 日本植物生理学会 奨励賞 「酸化ストレス応答としての植物細胞死の研究」
2002 , 日本植物細胞分子生物学会 奨励賞 「細胞死抑制因子のクロストークに関する研究」
1998 , International Conference in Plant Growth Substances,Rising Sun Award.

研究職歴等

研究職歴
2014 , 埼玉大学・理工学研究科・教授
2008 , 埼玉大学大学院理工学研究科•准教授
2005 - 2008 , 東京大学分子細胞生物学研究所・講師
2000 - 2005 , 東京大学分子細胞生物学研究所・助手
1999 - 2000 , 日本原子力研究所先端基礎研究センター・博士研究員
1995 - 1999 , 日本学術振興会特別研究員(PD)
1994 - 1995 , 日本学術振興会特別研究員(DC)

研究活動業績

研究業績(著書・発表論文等)

論文
Ceramides mediate positional signals in Arabidopsis thaliana protoderm differentiation
Development,148(2):194969 2021
Nagata K, Ishikawa T, Kawai-Yamada M, Takahashi T, Abe M

Altered metabolism of chloroplastic NAD kinase–overexpressing Arabidopsis in response to magnesium sulfate supplementation
Plant Signaling & Behavior,16(1):1844509 2021
Kawai-Yamada M, Miyagi A, Sato Y, Hosoi Y, Hashida S, Ishikawa T, Yamaguchi M

Redox regulation of NADP-malate dehydrogenase is vital for land plants under fluctuating light environment
Proc Natl Acad Sci USA,118(6):e2016903118 2021
Yokochi Y, Yoshida K, Hahn F, Miyagi A, Wakabayashi K, Kawai-Yamada M, Weber APM, Hisabori T

An Arabidopsis NAC domain transcription factor, ATAF2, promotes age-dependent and dark-induced leaf senescence
Physiologia Plantarum,170(2):299-308 2020
Nagahage ISP, Sakamoto S, Nagano M, Ishikawa T, Mitsuta N, Kawai-Yamada M, Yamaguchi M

Dehydroascorbate reductases and glutathione set a threshold for high light-induced ascorbate accumulation
Plant Physiology and Biochemistry,183(1):112-122 2020
Terai Y, Ueno H, Ogawa T, Sawa Y, Miyagi A, Kawai-Yamada M, Ishikawa T, Maruta T

Generation of Arabidopsis lines with a red fluorescent marker for endoplasmic reticulum using a tail-anchored protein cytochrome b5-B
Plant Signaling & Behavior,15:1790196 2020
Nagano M, Ueda H, Fukao Y, Kawai-Yamada M, Hara-Nishimura I

Metabolome analysis of rice leaves to obtain low-oxalate strain from ion beam mutagenized population
Metabolomics,16(9):94 2020
Miyagi A, Saimaru T, Harigai N, Oono Y, Hase Y, Kawai-Yamada M

Phosphorus toxicity disrupts Rubisco activation and reactive oxygen species defense systems by phytic acid accumulation in leaves
Plant, Cell and Environment,43(9):2033-2053 2020
Takagi D, Miyagi A, Tazoe Y, Suganami M, Kawai-Yamada M, Ueda A, Suzuki Y, Noguchi N, Hirotsu N, Makino A

Plant-unique cis/trans isomerism of long-chain base unsaturation is selectively required for aluminum tolerance resulting from glucosylceramide-dependent plasma membrane fluidity
Plants (Basel), 9(1):19 2020
Sato M, Nagano M, Jin S, Miyagi A, Yamaguchi M, Kawai-Yamada M, Ishikawa T

Metabolic and biochemical responses of Potamogeton anguillanus Koidz. (Potamogetonaceae) to low oxygen conditions
Journal of Plant Physiology,232:171-179 2019
Parveen M, Miyagi A, Kawai-Yamada M, Rashid MH, Asaeda T

Oxalate contents in leaves of two rice cultivars grown at a free-air CO2 enrichment (FACE) site
Plant Production Science,22(3):407–411 2019
Miyagi A, Noguchi K, Tokida T, Usui Y, Nakamura H, Sakai H, Hasegawa T, Kawai-Yamada M

High-yielding rice Takanari has superior photosynthetic response to a commercial rice Koshihikari under fluctuating light
Journal of Experimental Botany,70: 5287–5297 2019
Adachi S, Tanaka Y, Miyagi A, Kashima M, Tezuka A, Toya Y, Kobayashi S, Ohkubo S, Shimizu H, Kawai-Yamada M, Sage RF, Nagano AJ, Yamori W

The mitochondrial alternative oxidase supports redox balance of the photosynthetic electron transport, primary metabolite balance and growth at high light
Int J Mol Sci,20(12):3067 2019
Jiang Z, Watanabe CKA, Miyagi A, Kawai-Yamada M, Terashima I, Noguchi K

Glycosylinositol phosphoceramide-specific phospholipase D activity catalyzes transphosphatidylation
The Journal of Biochemistry,166(5):441-448 2019
Hasi RY, Miyagi M, Morito K, Ishikawa T, Kawai-Yamada M, Imai H, Fukuta T, Kogure K, Kanemaru K, Hayashi J, Kawakami R, Tanaka T

Arabidopsis Bax inhibitor-1 interacts with enzymes related to very-long-chain fatty acid synthesis
J Plant Res,132(1):131-143 2019
Nagano M, Kakuta C, Fukao Y, Fujiwara M, Uchimiya H, Kawai-Yamada M

GLUCOSAMINE INOSITOLPHOSPHORYLCERAMIDE TRANSFERASE1 (GINT1) Is a GlcNAc-Containing Glycosylinositol Phosphorylceramide Glycosyltransferase
Plant Physiology,177(3):938-952 2018
Ishikawa T, Fang L, Rennie EA, Sechet J, Yan J, Jing B, Moore W, Cahoon EB, Scheller HV, Kawai-Yamada M, Mortimer JC

An NAC domain transcription factor ATAF2 acts as transcriptional activator or repressor dependent on promoter context
Plant Biotechnology : ,35(3):285-289 2018
Nagahage ISP, Sakamoto S, Nagano M, Ishikawa T, Kawai-Yamada M, Mitsuda N, Yamaguchi M

DSH5, a dihydrosphingosine C4 hydroxylase gene family member, shows spatially restricted expression in rice and is lethal when expressed ectopically
Genes and Genetic Systems,93(4):135-142 2018
Imamura T, Obata C, Yoneyama K, Ichikawa M, Ikura A, Mutsuro-Aoki H, Ishikawa T, Kawai-Yamada M, Sasaki T, Kusano H, Shimada H

Ferredoxin/thioredoxin system plays an important role in the chloroplastic NADP status of Arabidopsis
The Plant Journal,95(6):947-960 2018
Hashida S, Miyagi A, Nishiyama M, Yoshida K, Hisabori T, Kawai-Yamada M

Suppressing Arabidopsis GGLT1 affects growth by reducing the L-galactose content and borate cross-linking of rhamnogalacturonan II
The Plant Journal,96(5):1036-1050 2018
Sechet J, Htwe S, Urbanowicz B, Agyeman A, Feng W, Ishikawa T, Dinneny J, Colomes M, Satish KK, Kawai-Yamada M, O'Neill M, Mortimer J

Effects of inactivation of the cyAbrB2 transcription factor together with glycogen synthesis on cellular metabolism and free fatty acid production in the cyanobacterium Synechocystis sp. PCC 6803
Biotechnology and Bioengineering,115(12):2974-2985 2018
Kodama Y, Kawahara A, Miyagi A, Ishikawa T, Kawai-Yamada M, Kaneko Y, Takimura Y, Hihara Y

Evaluation of metabolic changes in oxalate-rich plant Rumex obtusifolius L. caused by ion beam irradiation
Plant Physiology and Biochemistry,122:40-45 2018
Miyagi, A., Kitano, S., Oono, Y., Hase, Y., Narumi, I., Yamaguchi, M., Uchimiya, H., Kawai-Yamada, M

Effects of elevated atmospheric CO2 on respiratory rates in mature leaves of two rice cultivars grown at a free-air CO2 enrichment site and analyses of the underlying mechanisms.
Plant, Cell & Physiology,59(3):637-649 2018
Ko Noguchi, Tomonori Tsunoda, Atsuko Miyagi, Maki Kawai-Yamada, Daisuke Sugiura, Shin-Ichi Miyazawa, Takeshi Tokida, Yasuhiro Usui, Hirofumi Nakamura, Hidemitsu Sakai, Toshihiro Hasegawa.

Synergistic effects of light quality, carbon dioxide and nutrients on metabolite compositions of head lettuce under artificial growth conditions mimicking a plant factory
Food Chemistry,218:561-568 2017
Atsuko Miyagi, Hirofumi Uchimiya, Maki Kawai-Yamada

CE-MS–based metabolomics reveals the metabolic profile of maitake mushroom (Grifola frondosa) strains with different cultivation characteristics
Bioscience, Biotechnology, and Biochemisry,81(12):2314-2322 2017
Mayumi Sato, Atsuko Miyagi, Shozo Yoneyama, Seiki Gisusi, Yoshihiko Tokuji, Maki Kawai-Yamada

Arabidopsis NAC domain proteins VND-INTERACTING1 and ANAC103 interact with multiple NAC domain proteins in a NAC domain-independent manner
Plant Biotechnology,32:119-123 2015
Yamaguchi, M., Nagahage, I.P.S., Ohtani, M., Ishikawa, T., Uchimiya, H., Kawai-Yamada, M., Demura, T.

Effects of water turbulence on variations in cell ultrastructure and metabolism of amino acids in the submersed macrophyte, Elodea nuttallii (Planch.)
Plant Biol (Stuttg),17(5):997-1004 2015
Atapaththu, K,S., Miyagi, A., Atsuzawa, K., Kaneko, Y., Kawai-Yamada, M., Asaeda, T.

Ethylene biosynthesis is promoted by very-long-chain fatty acids during lysigenous aerenchyma formation in rice roots.
Plant Physiology,169(1):180-193 2015
Yamauchi, T., Shiono, K., Nagano, M., Fukazawa, A., Ando, M., Takamure, I., Mori, H., Nishizawa, N.K., Kawai-Yamada, M., Tsutsumi, N., Kato, K. and Nakazono, M.

Overexpression of Bax inhibitor-1 links plasma membrane microdomain proteins to stress
Plant Physiology,169(2):1333-1343 2015
Ishikawa, T., Aki, T., Yanagisawa, S., Uchimiya, H., Kawai-Yamada, M.

KONJAC1 and 2 are Key Factors for Generation of GDP-Mannose and Affect L-Ascorbic Acid and Glucomannan Biosynthesis in Arabidopsis
Plant Cell Physiology,27(12):3397-3409 2015
Sawake, S., Tajima, N., Mortimer, J.C., Ishikawa, T., Yu, X., Yamanashi, Y., Yoshikawa, Y., Kawai-Yamada, M., Dupree, P., Tsumuraya, Y., Kotake, T.

Metabolic alterations in leaves of oxalate-rich plant Rumex obtusifolius L. irradiated by gamma rays
Metabolomics,11:134-142 2015
Kitano, S., Miyagi, A., Oono, Y., Hase, Y., Narumi, I., Yamaguchi, M., Uchimiya, H., Kawai-Yamada, M.

Culture temperature affects gene expression and metabolic pathways in the 2-methylisoborneol-producing cyanobacterium Pseudanabaena galeata
Journal of Plant Physiology,171:292-300 2014
Kakimoto, M., Ishikawa, T., Miyagi, A., Saito, K., Miyazaki, M., Asaeda, T., Yamaguchi, M., Uchimiya, H., Kawai-Yamada, M.

Plastidic protein Cdf1 is essential in Arabidopsis embryogenesis
Planta,239:39-46 2014
Kawai-Yamada, M., Nagano, M., Kakimoto, M., Uchimiya, H.

Effects of NAD kinase 2 overexpression on primary metabolite profiles in rice leaves under elevated carbon dioxide
lant Biol ,16:819-824 2014
Onda, Y., Miyagi, A., Takahara, K., Uchimiya, H., Kawai-Yamada, M.

Development of an LC–MS/MS Method for the Analysis of Free Sphingoid Bases Using 4-Fluoro-7-Nitrobenzofurazan (NBD-F)
Lipids,49:295-304 2014
Ishikawa, T., Imai, H., Kawai-Yamada, M.

Arabidopsis Bax inhibitor-1 promotes sphingolipid synthesis during cold stress by interacting with ceramide-modifying enzymes
Planta,240(1):77-89 2014
Nagano, M., Ishikawa, T., Ogawa, Y., Iwabuchi, M., Nakasone, A., Shimamoto, K., Uchimiya, H., Kawai-Yamada, M.

Does the upstream region possessing MULE-like sequence in rice upregulate PsbS1 gene expression?
PLoS One,26(9):e102742 2014
Nuruzzaman, M,, Kanno, T., Amada, R., Habu, Y., Kasajima, I., Ishikawa, T., Kawai-Yamada, M., Uchimiya, H.

Impact of aluminium stress on oxalate and other metabolites in Rumex obtusifolius
Weed Research, 53 (1): 30-41 2013
Miyagi, A., Uchimiya, M., Kawai-Yamada, M., Uchimiya, H.

An antagonist treatment in combination with tracer experiments revealed isocitrate pathway dominant to oxalate biosynthesis in Rumex obtusifolius L.
Metabolomics,9(3):590-598 2013
Miyagi, A., Uchimiya, M., Kawai-Yamada, M., Uchimiya, H.

Arabidopsis sphingolipid fatty acid 2-hydroxylases (AtFAH1 and AtFAH2) are functionally differentiated in fatty acid 2-hydroxylation and stress responses.
Plant Physiology,159:1138-1148 2012
Nagano, M., Takahara, K., Fujimoto, M., Tsutsumi, N., Uchimiya, H., Kawai-Yamada, M.

Bax Inhibitor-1: A highly conserved endoplasmic reticulum-resident cell death suppressor.
Cell Death and Differentiation,18:1271-1278 2011
Ishikawa, T., Watanabe, M., Nagano, N., Kawai-Yamada, M., Lam, E.,

Metabolome analysis of response to oxidative stress in rice suspension cells overexpressing cell death suppressor Bax inhibitor-1.
Plant Cell Physiology,51:9-20 2010
Ishikawa, T., Takahara, K., Hirabayashi, T., Matsumura, H., Fujisawa, S., Terauchi, R., Uchimiya, H., Kawai-Yamada, M.

Metabolome and photochemical analysis of rice plants over-expressing Arabidopsis NAD kinase gene
Plant Physiology,152:1863-1873 2010
Takahara, K., Kasajima, I., Hashida, S., Takahashi, H., Onodera, H., Toki, S.i,Yanagisawa, S, Kawai-Yamada, M., Uchimiya, H.

A gene encoding SMALL CIDIC PROTEIN 2 potentially mediates the response to synthetic auxin, 2,4-dichlorophenozyacetic acid, in Arabidopsis thaliana.
J. Plant Phys.,166:1307-1313 2009
Nakasone,A., Kawai-Yamada, M., Kiyosue, T., Narumi, I., Uchimiya, H. and Oono, Y.

Estimation of the relativesizes of rate constants for chlorophyll de-excitation processes through comparison of inverse fluorescence intensities.
Plant Cell Phys.,50:1600-1616 2009
Kasajima, I., Takahara, K., Kawai-Yamada, M., and Uchimiya, H.

Loss of calmodulin binding to Bax Inhibitor-1 affects Pseudomonas-mediated hypersensitive response-associated cell death in Arabidopsis thaliana.
J. Biol. Chem.,84:27998-28003 2009
Kawai-Yamada, M., Hori, A., Ogawa, T., Ihara-Ohori, Y., Tamura, K., Nagano, M., Ishikawa, T. and Uchimiya, H.

Pleiotropic modulation of carbon and nitrogen metabolism in Arabidopsis plants overexpressing NAD kinase 2 gene
Plant Phys.,151(1):100-113 2009
Takahashi, T., Takahara, K., Hashida, S., Hirabayashi, T., Fujimori, T., Kawai-Yamada, M., Yamaya, T., Yanagisawa, S. and Uchimiya, H/

CO2 regulator SLAC1 and its homologues are essential for anion homeostasis in plant cells
Nature,452:483-486 2008
Negi, J., Matsuda, O., Nagasawa, T., Oba, Y., Takahashi, H., Kawai-Yamada, M., Uchimiya, H., Hashimoto, M. and Iba, K.

The cell death factor, cell wall elicitor of rice blast fungus (Magnaporthe grisea) causes metaboli calterations including GABA shunt in rice cultured cells
Plant Signaling Behavior,3:1-9 2008
Takahashi, H., Matsumura, H., Kawai-Yamada, M., and Uchimiya, H.

Arabidopsis thaliana nicotinate/nicotinamide mononucleotide adenyltransferase (AtNMNAT) is required for pollen tube growth
Plant J.,49:694-703 2007

Cell death suppressor, Arabidopsis BI-1, is associated with calmodulin-binding and ion homeostasis.
Plant Phys,143:650-660 2007
Yuri Ihara-Ohori, Minoru Nagano, Shoshi Muto, Hirofumi Uchimiya and Maki Kawai-Yamada

Mutual regulation of Arabidopsis thaliana ethylene-responsive element binding protein and a plant floral homeotic gene, APETALA2
Annals of Botany,99:239-244 2007

The Bax Inhibitor-1 needs a functional electron transport chain for cell death suppression
FEBS Lett.,581:4672-4632 2007
Reiko Oshima*, Keiko Yoshinaga*, Yuri Ihara-Ohori, Ryouichi Fukuda, Akinori Ohta, Hirofumi Uchimiya and Maki Kawai-Yamada

Abolition of tapetum suicide program ruins microsporogenesis
Plant Cell Phys.,47:784-787 2006

Chloroplast NAD kinase is essential for energy transduction through xanthophyll cycle in photosynthesis
Plant and Cell Physiology,47:1678-1682 2006

Evaluation of metabolic alteration in transgenic rice overexpressing dihydroflavonol-4-reductase
Annals of Botany,98:819-825 2006

Mitochondrial fission regulator, DRP3B does not regulate cell death in plant.
Annals of Botany,97:1145-1149 2006

A novel Arabidopsis gene causes Bax-like lethality in Saccharomyces cerevisiae
J. Biol. Chem.,280:39468-39473 2005

Enhanced difydroflavonol-4-reductase activity and NAD homeostasis leading to cell death tolerance in transgenic rice
Proc. Natl. Acad. Sci. USA.,102:7020-7025 2005

Functional analysis of Arabidopsis thaliana ethylene-responsive element binding protein, AtEBP, conferring resistance to Bax- and abiotic stress-induced plant cell death
Plant Phys.,138:1436-1445 2005

High throughput metabolome and proteome analysis of transgenic rice plants (Oryza sativa L.)
Plant Biotech.,22:47-50 2005

Maize plants mutated in NAD(P)H-dependent HC-toxin redutase gene (Hm1) is vulnerable to H2O2stress
Plant Biotech.,22:69-70 2005

Mammalian Bax initiates plant cell death through organelle destruction
Plant Cell Reports,24:408-417 2005

Mitochondrial behavior in the early stages of ROS stress leading to cell death in Arabidopsis thaliana
Annals of Botany,96:337-342 2005

Oxidative stress and plant cell death suppressors
Plant Biotechnoloigy,22:419-422 2005

Bax-induced cell death of Arabidopsis is meditated through reactive oxygen-dependent and -independent processes
Plant Mol. Biol.,56:17-27 2004

Dissection of Arabidopsis Bax inhibitor-1 suppressing Bax, hydrogen peroxide and salicylic acid-induced cell death
Plant Cell.,16:21-32 2004

Isolation and charcterization of Arabidopsis thaliana ISU1 gene
Bio.Biophys.Acta.,1680:171-175 2004

Overexpression of Bax-inhibitor suppresses the fungal elicitor-induced cell death in rice (Oryza sativa L.) cells
Plant J.,33:425-434 2003

Glufosinate-tolerant tobacco plants directed by the promoter of adenylate kinase gene of rice
Annals of Botany,89:1-4 2002

Induction of mammalian cell death by a plant Bax inhibitor
FEBS Lett.,512:308-312 2002

Transgenic rice plants conferring increased tolerance to rice blast and multiple environmental stresses
Mol.Breed.,9:25-31 2002

Mammalian Bax-induced plant cell death can be downregulated by over-expression of Arabidopsis Bax Inhibitor-1(AtBl-1)
Proc. Natl. Acad. Sci. USA.,98:12295-12300 2001

The Arabidopsis thaliana ethylene-responsive element binding protein (AtEBP) can function as a dominant suppressor of Bax-induced cell death of yeast
FEBS Lett.,508:375-378 2001

Colroptile senescence in rice
Annals of Botany,86:405-414 2000

Ion beam as a noble tool to induce apoptosis-like cell death in roots of maize(Zea mays L.)
Plant Biotech.,17:305-308 2000

Nucleoside diphosphate kinase required for coleoptile elongation in rice
Plant Phys.,122:447-452 2000

Transverse vein differentiation associated with gas space formation-fate of the middle cell layer in leaf sheath development of rice
Annals of Botany,85:19-27 2000

Cortical cell death,cell proliferation,macromolecular movements and rTip1 expression pattern in roots of rice(Oryza sativa L.) under NaCl stress
Planta,207 1999

Evolutionally conserved plant homologue of the Bax Inhibitor-1(Bl-1)gene capable of suppressing Bax-induced cell death in yeast
FEBS Lett.,464:143-147 1999

Morphological analysis of apoptosis-like cell death induced by ion beam irradiation in plant cells
JAERI report 1999:54-55 1999

Cellular dissection of the degradation pattern of cortical cell death during aerenchyma formation of rice roots
Planta,204:277-286 1998

Genetic engineering for abiotic stress tolerance in plant
Plant Biotech.,15:1-10 1998

Induction of apoptosis in plant cells by ion beam irradiation
JAERI report 1998:57 1998

Isolation of cotton CAP gene : a homologue of the adenylyl cyclase-associated protein that highly expressed during fiber elongation
Plant Cell Phys.,39:1380-1383 1998

Stimulation of adenylate kinase in rice seedlings under submergence stress
J.Plant Phys.,152:533-539 1998

Biochemical properties of rice adenylate kinase and subcellular location in plant cells
Plant Mol. Biol.,27:943-951 1995

Sodium chloride stimulates adenylate kinase level in seedlings of salt sensitive rice varieties
J.Plant Phys.,152:277-280 1995

Tissus specific localization of adenylate kinase in rice(Oryza sativa L.) plants
J.Plant Phys.,146:239-243 1995

Molecular characterization of cDNAencoing for adenylate kinase of rice(Oryza sative L.)
Plant J.,2:845-854 1992

学会発表
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