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1 Oikawa, A., Yamashita, T., Taira, H., Ejiri, S. and Kidou, S. i2007j
Jasmonate-induced 23kD protein, JIP-23, is involved in seed development of barley.
Plant Biothechnology , 24:217-224
2

Takashi Hikage, Yasushi Saitoh, Claire Tanaka-Saito, Hisakazu Hagami, Fumi Satou, Yoshitaka Shimotai, Yuki Nakano, Miho Takahashi, Yoshihito Takahata, Ken-ichi Tsutsumi i2007j
Structure and allele-specific expression variation of novel alpha/beta hydrolase fold proteins in gentian plants.
Molecular Genetics and Genomics , 278i1j: 95-104

3 Rahman A, Bannigan A, Sulaman W, Pechter P, Blancaflor EB, Baskin TI i2007j
Auxin, actin, and growth of the Arabidopsis thaliana primary root.
The Plant Journal ,i50j: 514-528
4 Mimida, N., Kidou, S. and Kotoda, N. i2007j
Constitutive expression of two apple (Malus x domestica Borkh.) homolog genes of LIKE HTEROCHROMATINE PROTEIN1 affects flowering time and whole-plant growth in transgenic Arabidopsis.
Molecular Genetics and Genomics ,273:295-305
5 Takahashi, K.., Ito, T., Onda, Y., Endo, T., Chiba, S., Ito, K. and Osada, H. i2007j
Modeling of the thermoregulation system in the skunk cabbage, Symplocarpus foetidus.
Phys. Rev. E C76C031918
6 Oikawa, A., Rahman, A., Yamashita, T., Taira, H. and Kidou, S. i2007j
Virus-induced gene silencing of P23k in barley leaf reveals morphological changes involved in secondary wall formation.
Journal of Experimental Botany ,58i10j:2617-2625
7 Onda, Y., Kato, Y., Abe, Y., Ito, T., Ito-Inaba, Y., Morohashi, M., Ito, Y., Ichikawa, M., Matsukawa, K., Otsuka, M., Koiwa, H. and Ito, K. i2007j
Pyruvate-sensitive AOX exists as a non-covalently associated dimer in the homeothermic spadix of the skunk cabbage, Symplocarpus renifolius.
FEBS Letters ,58:5852-5858
8 Biswas KK, Ooura C, Higuchi K, Miyazaki Y, Nguyen VV, Rahman A, Uchimiya H, Kiyosue T, Koshiba T, Tanaka A, Narumi I, and Oono Y i2007j
Genetic Characterization of Mutants Resistant to the Antiauxin p-chlorophenoxyisobutyric Acid (PCIB) Reveals that AAR3, a Gene Encoding DCN1-Like Protein, regulates responses to the synthetic auxin 2,4-dichlorophenoxyacetic acid in Arabidopsis roots.
Plant Physiology ,i145 j: 773-785

›‘à
1 ˆÉ“¡F“¿AˆÉ“¡‹eˆêi2007j
”­”MA•¨ƒUƒ[ƒ“ƒ\ƒE‚ÉŒ©o‚³‚ꂽ”ñüŒ`‘̉·§ŒäƒVƒXƒeƒ€
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2

S. Shigematsu, Y. Tominaga, M. Uemurai2007j
Functional analysis of an Arabidopsis cold-responsive plasma membrane protein in association with cold acclimation.
Cryobiology and Cryotechnology ,52i2j:175-180

3 Y. Kawamura, T. Yamazaki, M. Uemurai2007j
Freeze-induced mechanical stress and the enhanced freezing tolerance.
Cryobiology and Cryotechnology ,52i2j:169-173
4 Y. Kawamura, T. Yamazaki, A. Minami, M. Uemurai2007j
Mechanism of plant freezing tolerance and the role of plasma membrane proteins.
Protein, Nucleic Acid and Enzyme ,52i6j:517-523
5 M. Uemurai2007j
A Mystery of Living Organisms: Freezing Tolerant Plants
Journal of the Heat Transfer Society of Japan ,46i196j:58-63
6 ‰¶“c‹`•FAˆÉ“¡‹eˆêi2007j
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1 Uemura, M. i2007j
Plasma Membrane Involvement in Plant Cold Acclimation.
Gordon Research Conference on Temperature Stress in Plants, Ventura, USA.
(Invited talk)
2 Minami, A. and M. Uemura. i2007j
Detergent-resistant plasma membrane microdomains associated with plant cold acclimation.
3 Sasaki, Y., K. Takahashi and M. Uemura. i2007j
Growth-phase-regulated cold acclimation process in Arabidopsis suspension cultured cells.
Gordon Research Conference on Temperature Stress in Plants, Ventura, USA
4 Minami, A. and M. Uemura. i2007j
Alterations in the plasma membrane microdomains during cold acclimation in Arabidopsis.
The 18th International Conference of Arabidopsis Research, Beijing, USA
5 ’·”öŠwAã‘º¼¶Di2007j
—Α”Klebsormidium flaccidum ‚̒ቷ“鉻‚ÉŠÖ—^‚·‚éƒXƒNƒ[ƒXƒŠƒ“Ž_ƒtƒHƒXƒtƒ@ƒ^[ƒ[‚¨‚æ‚уOƒ‹ƒ^ƒ~ƒ“Ž_ƒfƒJƒ‹ƒ{ƒLƒVƒ‰[ƒ[ˆâ“`Žq‚Ì’P—£D
“ú–{A•¨¶—Šw‰ï2007”N“x”N‰ïA¼ŽRD
6 ‚“c’¼Ž÷A“íéŽž•FAŽÂŒ´Œ’ŽiAã‘º¼¶Di2007j
ƒZƒCƒˆƒEƒnƒRƒ„ƒiƒM‚É‚¨‚¯‚éŠT“úŽžŒvŠÖ˜AˆöŽq‚Ì”­Œ»‰ðÍA‹y‚сA•ªŽqŒn“Šw“I‰ðÍD
“ú–{A•¨¶—Šw‰ï2007”N“x”N‰ïA¼ŽRD
7 “ìˆÇ’߁Aã‘º¼¶Di2007j
’ቷ‚Å•Ï“®‚·‚éƒVƒƒCƒkƒiƒYƒiŠE–ÊŠˆ«Ü•s—n«×–E–Œƒ^ƒ“ƒpƒNŽ¿‚Ì”äŠr‰ðÍD
“ú–{A•¨¶—Šw‰ï2007”N“x”N‰ïA¼ŽRD
8 ŽRè½˜aA‰Í‘ºK’jA“ìˆÇ’߁Aã‘º¼¶Di2007j
’ቷ“鉻‚ōזE–Œ‚É’~Ï‚·‚é–Œƒ^ƒ“ƒpƒNŽ¿‚Ì‹@”\‰ðÍD
“ú–{A•¨¶—Šw‰ï2007”N“x”N‰ïA¼ŽRD
9 ‰Í‘ºK’jAŽRè½˜aAã‘º¼¶Di2007j
•X»¬’·‚É‚æ‚é‹@ŠB“IƒXƒgƒŒƒX‚Æ‚»‚̑ϐ«‹@\D
“ú–{A•¨¶—Šw‰ï2007”N“x”N‰ïA¼ŽRD
10 ˆÉ“Œ–õŽqCˆÉ“¡‹eˆê.i2007j
ƒUƒ[ƒ“ƒ\ƒE‚Ì”MŽY¶‚ÉŠÖ—^‚·‚é’E‹¤–ðƒ^ƒ“ƒpƒNŽ¿iSfUCPbj‚̐¶‰»Šw“I‰ðÍD
2007”N“xi•½¬19”N“xj“ú–{”_Œ|‰»Šw‰ï‘å‰ïD
11 ‹v•Ä_•½C¬¼WCŽá‹·‹ÅC’猫ˆêCÖ“¡–õŽji2007j
RNAi‹@\‚̒ቷŠ´Žó«D
‘æ30‰ñ“ú–{•ªŽq¶•¨Šw‰ï”N‰ïE‘æ80‰ñ“ú–{¶‰»Šw‰ï‘å‰ï@‡“¯‘å‰ïiŒû“ª”­•\‚ɍ̑ðji‰¡•lj
12 …’Jª–@C’猫ˆêCÖ“¡–õŽji2007j
ƒCƒlV‹KCDK inhibitor‚Ì”­Œ»‰ðÍD
‘æ30‰ñ“ú–{•ªŽq¶•¨Šw‰ï”N‰ïE‘æ80‰ñ“ú–{¶‰»Šw‰ï ‘å‰ï@‡“¯‘å‰ïi‰¡•lj
13 ‹yìˆ¤CA‘ºˆŸˆßŽqC–Ø“¡Vˆê˜Yi2007j
VIGS–@‚ð—p‚¢‚½”ž—Þ“ÁˆÙ“Iƒ^ƒ“ƒpƒNŽ¿P23k‚Ì‹@”\‰ðÍD
‘æ25‰ñ“ú–{A•¨×–E•ªŽq¶•¨Šw‰ïç—t‘å‰ïEƒVƒ“ƒ|ƒWƒEƒ€u‰‰—vŽ|WF137iç—tj
14 ‹yìˆ¤CA‘ºˆŸˆßŽqC–Ø“¡Vˆê˜Yi2007j
ƒIƒIƒ€ƒM‚Ì—t‚É‚¨‚¯‚éP23k‚ÌVIGS‚Í“ñŽŸ•ÇŒ`¬‚ÉŠÖ˜A‚µ‚½Œ`‘Ԉُí‚ðŽ¦‚·D
“ú–{ˆçŽíŠw‰ï‘æ112‰ñu‰‰‰ï@ˆçŽíŠwŒ¤‹†F314iŽRŒ`j
15 A‘ºˆŸˆßŽqC‹yìˆ¤C–Ø“¡Vˆê˜Yi2007j
ƒIƒIƒ€ƒMƒ^ƒ“ƒpƒNŽ¿P23k‚̍זE“à‹ÇÝD
“ú–{ˆçŽíŠw‰ï‘æ112‰ñu‰‰‰ï@ˆçŽíŠwŒ¤‹†F315iŽRŒ`j
16 –Ø“¡Vˆê˜YC‹yìˆ¤CA‘ºˆŸˆßŽqi2007j
ƒEƒCƒ‹ƒX—U“±ƒW[ƒ“ƒTƒCƒŒƒ“ƒVƒ“ƒOiVIGSj–@‚ð—˜—p‚µ‚½ƒIƒIƒ€ƒMƒ^ƒ“ƒpƒNŽ¿P23k‚Ì‹@”\‰ðÍD
“ú–{ˆçŽíŠw‰ï‘æ112‰ñu‰‰‰ï@ˆçŽíŠwŒ¤‹†F71iŽRŒ`j
17 Minami, A. and M. Uemura. i2007j
Alterations in the plasma membrane microdomains during cold acclimation in Arabidopsis.
The 18th International Conference of Arabidopsis Research. iBeijingCPRCj
18 Sakurai, J., M. Murai, A. Ahamed, M. Uemura and M. Maeshima. i2007j
Thirty-three rice aquaporin members: their expressions and water transport activities.
The 5th International Conference of Aquaporin. iNaraCJapanj
19 Minami, A., T. Yamazaki, S. Shigematsu, A. Furuto, Y. Kawamura and M. Uemura. i2007j
Cold acclimation and plasma membrane cryobehavior in plant cells.
44th Meeting of the Society for Cryobiology. iselected as an oral presentation in a symposiumjiLake LouiseCCanadaj
20 Uemura, M. i2007j
Plasma membrane dynamics at low temperatures.
8th International Plant Cold Hardiness Seminar. iInvited talkjiSaskatoonCCanadaj
21 Sasaki, Y. and M. Uemura. i2007j
Characterization of growth phase-specific responses of Arabidopsis thaliana suspension cultured cells to cold: relationship between cell cycle and cold response.
8th International Plant Cold Hardiness Seminar.
iselected as an oral presentationjiSaskatoonCCanadaj
22 Takata, N. and M. Uemura.i2007j
Characterization of circadian clock genes in poplar under ambient and low temperatures.
8th International Plant Cold Hardiness Seminar.
iselected as an oral presentationjiSaskatoonCCanadaj
23 Nagao, M. and M. Uemura.i2007j
Characterization of glutamate decarboxylase gene from green alga Klebsormidium flaccidum associated with cold acclimation.
8th International Plant Cold Hardiness Seminar. iSaskatoonCCanadaj
24 Minami, A., M. Fujiwara, Y. Fukao, Y. Kawamura and M. Uemura.i2007j
2D-DIGE protein profiling analysis of detergent-resistant plasma membrane fractions associated with cold acclimation in Arabidopsis.
8th International Plant Cold Hardiness Seminar. iselected as an oral presentationjiSaskatoon, Canadaj
25 Yamazaki, T., Y. Kawamura, A. Minami and M. Uemura. i2007j
Involvement of an Arabidopsis synaptotagmin-like protein AtSytA in calcium-dependent freezing tolerance.
8th International Plant Cold Hardiness Seminar. iSaskatoonCCanadaj
26 Minami, A., M. Fujiwara, Y. Fukao, Y. Kawamura and M. Uemura. i2007j
Analysis of cold-responsive proteins localized in the plasma membrane microdomains in Arabidopsis.
Iwate Plant Science Symposium 2007: The Impact of Omics. iInvited talkjiMoriokaCJapanj
27 ¬oÍ“ñCƒWƒ‡ƒ“EƒV[C•ŸŽmË‘ãC…–ì‰l仍C¯–ì_Ž‘C•“cƒˆêCã‘º¼¶Di2007j
ŽûŠnŒã—Ώnƒgƒ}ƒg‚̍RŽ_‰»y‘fŠˆ«‚¨‚æ‚Ñ•iŽ¿‚̕ω»D
“ú–{H•i•Û‘ ‰ÈŠw‰ï‘æ56‰ñ‘å‰ïDiå‘äj
28 M.S.H.Khan, T. Wagatsuma, K. Tawaraya, M. Uemura, T. Murayama, M. Kambayashi, M. Chuba, Y. Shiono, H. Sekimoto, S. Ishikawa. i2007j
Specific construction of lipid molecules for the root-tip plasma membrane of aluminum- tolerant rice cultivar - Comparative studies on resistance response to high Al.
“ú–{“yë”ì—¿Šw‰ï2007”N“Œ‹ž‘å‰ïDi“Œ‹žj
29 H“¡—mWAã‘º¼¶A‰Í‡¬’¼i2007j
…kƒIƒIƒ€ƒMª‚©‚ç’P—£‚µ‚½×–E–Œ¬–E‚̃Jƒhƒ~ƒEƒ€‹zŽûD
“ú–{“yë”ì—¿Šw‰ï2007”N“Œ‹ž‘å‰ïDi“Œ‹žj
30 ¬oÍ“ñC…–ì‰l仍C•ŸŽmË‘ãCJohn ShiCã‘º¼¶Di2007j
—Ώnƒgƒ}ƒg‚̍RŽ_‰»y‘fŠˆ«‚¨‚æ‚Ñ•iŽ¿‚̕ω»D
”_‹ÆHŠwŠÖ˜AŠw‰ï2007”N‡“¯—á‰ïDi“Œ‹žj
31 Matsukawa, K. and Ito, K. i2007j
Alternative oxidase from thermogenic skunk cabbage iSymplocarpus foetidusj confers cyanide-resistant respiration to human cells.
3rd Cell Stress Society International Congress on Stress Responses in Biology and Medicine and 2nd World Conference on StressiBudapest, Hungaryj
32 Onda, Y. and Ito, K. i2007j
The co-expression of the mitochondrial SfAOX and SfUCPb genes underlies the mechanism of homeothermic regulation in thermogenic florets of the skunk cabbage, Symplocarpus foetidus.
8th International Plant Cold Hardiness Seminar i8IPCHSj iSaskatoon, Canadaj
33 Onda, Y., Kato, Y., Abe, Y., Ito, T., Ito-Inaba, Y, Morohashi, M., Ito, Y., Ichikawa, M., Matsukawa, K., Koiwa, H. and Ito, K. i2007j
The co-expression of the mitochondrial SfAOX1 and SfUCPb genes underlies the mechanism of homeothermic regulation in thermogenic florets of the skunk cabbage, Symplocarpus foetidus.
International Congress on Plant Mitochondrial Biology iNara, Japanj
34 Ito-Inaba, Y., Ichikawa, M. and Ito, K. i2007j
Characterization of the plant uncoupling protein, SfUCPA, highly expressed in spadix mitochodnria of the thermogenic skunk cabbage.
International Congress on Plant Mitochondrial BiologyiNara, Japanj
35 Takahashi, K., Ito, T., Endo, T., Chiba, S., Ito, K. and Osada, H. i2007j
Modeling of the thermoregulation system in the skunk cabbage, Symplocarpus foetidus.
The 27th Dynamics Days EuropeiLoughborough, UKj
36 ‘¾“cNŽj, ‚‹´@Œ«, ˆÉ“¡³Ž÷, “¡àV‰Ã‹K, ç—t–ÎŽ÷,@ˆÉ“¡F“¿, ˆÉ“¡‹eˆê, ’·“c@—mi2007j
ƒUƒ[ƒ“ƒ\ƒE‚̑̉·U“®‚̉ðÍ‚ÉŠÖ‚·‚錤‹†D
•½¬19”N“x “d‹CŠÖŒWŠw‰ï“Œ–kŽx•”˜A‡‘å‰ïiO‘Oj
37 ˆÉ“¡³Ž÷, ‘¾“cNŽj, ‚‹´@Œ«, “¡àV‰Ã‹K, ç—t–ÎŽ÷, ˆÉ“¡F“¿CˆÉ“¡‹eˆêC’·“c@—mi2007j
ƒUƒ[ƒ“ƒ\ƒEŒ^ƒAƒ‹ƒSƒŠƒYƒ€‚Ì•]‰¿‚ÉŠÖ‚·‚錤‹†D
•½¬19”N“x “d‹CŠÖŒWŠw‰ï“Œ–kŽx•”˜A‡‘å‰ïiO‘Oj
38 Matsukawa, K. and Ito, K.i2007j
Alternative oxidase from skunk cabbage (Symplocarpus renifolius) confers cyanide-resistant respiration to human cell mitochondria.
The 7th Annual Conference of the Japanese Society of Mitochondrial Research and Medicine, Kagoshima, Japanj

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1 ’ç@Œ«ˆê(2007)
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“Á‹–oŠè, oŠè”ԍ† F “ÁŠè 2007-070250
2 ˆÉ“¡@‹eˆê(2006)
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“Á‹–oŠè, oŠè”ԍ† F “ÁŠè2007-070752
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