-
1
-
-
0042187420
-
Changes in polyamine and glutathione contents of a green alga, Chlorogonium elongatum (Dang) France exposed to mercury
-
COI: 1:CAS:528:DyaK38XktVansrY%3D
-
Agrawal SB, Agrawal M, Lee EH, Kramer GF, Pillai P (1992) Changes in polyamine and glutathione contents of a green alga, Chlorogonium elongatum (Dang) France exposed to mercury. Environ Exp Bot 32:145–151. doi:10.1016/0098-8472(92)90039-5
-
(1992)
Environ Exp Bot
, vol.32
, pp. 145-151
-
-
Agrawal, S.B.1
Agrawal, M.2
Lee, E.H.3
Kramer, G.F.4
Pillai, P.5
-
2
-
-
3242715114
-
Reactive oxygen species: metabolism, oxidative stress, and signal transduction
-
COI: 1:CAS:528:DC%2BD2cXlvFeisL0%3D, PID: 15377225
-
Apel K, Hirt H (2004) Reactive oxygen species: metabolism, oxidative stress, and signal transduction. Annu Rev Plant Biol 55:373–399. doi:10.1146/annurev.arplant.55.031903.141701
-
(2004)
Annu Rev Plant Biol
, vol.55
, pp. 373-399
-
-
Apel, K.1
Hirt, H.2
-
3
-
-
4544224632
-
Evidence for a direct link between glutathione biosynthesis and stress defense gene expression in Arabidopsis
-
COI: 1:CAS:528:DC%2BD2cXnvVartbg%3D, PID: 15308753
-
Ball L, Accotto G-P, Bechtold U, Creissen G, Funck D, Jimenez A, Kular B, Leyland N, Mejia-Carranza J, Reynolds H, Karpinski S, Mullineaux PM (2004) Evidence for a direct link between glutathione biosynthesis and stress defense gene expression in Arabidopsis. Plant Cell 16:2448–2462. doi:10.1105/tpc.104.022608
-
(2004)
Plant Cell
, vol.16
, pp. 2448-2462
-
-
Ball, L.1
Accotto, G.-P.2
Bechtold, U.3
Creissen, G.4
Funck, D.5
Jimenez, A.6
Kular, B.7
Leyland, N.8
Mejia-Carranza, J.9
Reynolds, H.10
Karpinski, S.11
Mullineaux, P.M.12
-
4
-
-
14844338402
-
Arabidopsis seedling growth response and recovery to ethylene. A kinetic analysis
-
COI: 1:CAS:528:DC%2BD2cXovVynu74%3D, PID: 15466220
-
Binder BM, O’malley RC, Wang W, Moore JM, Parks BM, Spalding EP, Bleecker AB (2004) Arabidopsis seedling growth response and recovery to ethylene. A kinetic analysis. Plant Physiol 136:2913–2920. doi:10.1104/pp.104.050369
-
(2004)
Plant Physiol
, vol.136
, pp. 2913-2920
-
-
Binder, B.M.1
O’malley, R.C.2
Wang, W.3
Moore, J.M.4
Parks, B.M.5
Spalding, E.P.6
Bleecker, A.B.7
-
5
-
-
0034489893
-
Activation tagging identifies a conserved MYB regulator of phenylpropanoid biosynthesis
-
COI: 1:CAS:528:DC%2BD3MXns1ShtQ%3D%3D, PID: 11148285
-
Borevitz JO, Xia Y, Blount J, Dixon RA, Lamb C (2000) Activation tagging identifies a conserved MYB regulator of phenylpropanoid biosynthesis. Plant Cell 12:2383–2393. doi:10.1105/tpc.12.12.2383
-
(2000)
Plant Cell
, vol.12
, pp. 2383-2393
-
-
Borevitz, J.O.1
Xia, Y.2
Blount, J.3
Dixon, R.A.4
Lamb, C.5
-
6
-
-
84872611562
-
Silencing of glutathione biosynthetic pathway inhibits somatic embryogenesis in wheat
-
COI: 1:CAS:528:DC%2BC3sXhtFyisLw%3D
-
Bossio E, Diaz Paleo A, del Vas M, Baroli I, Acevedo A, Rios RD (2013) Silencing of glutathione biosynthetic pathway inhibits somatic embryogenesis in wheat. Plant Cell Tissue Org 112:239–248. doi:10.1007/s11240-012-0228-4
-
(2013)
Plant Cell Tissue Org
, vol.112
, pp. 239-248
-
-
Bossio, E.1
Diaz Paleo, A.2
del Vas, M.3
Baroli, I.4
Acevedo, A.5
Rios, R.D.6
-
7
-
-
0017184389
-
A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding
-
COI: 1:CAS:528:DyaE28XksVehtrY%3D, PID: 942051
-
Bradford MM (1976) A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal Biochem 72:248–254. doi:10.1016/0003-2697(76)90527-3
-
(1976)
Anal Biochem
, vol.72
, pp. 248-254
-
-
Bradford, M.M.1
-
8
-
-
38349144280
-
ESP and ESM1 mediate indol-3-acetonitrile production from indol-3-ylmethyl glucosinolate in Arabidopsis
-
COI: 1:CAS:528:DC%2BD1cXhtV2lsbw%3D, PID: 17920088
-
Burow M, Zhang Z-Y, Ober JA, Lambrix VM, Wittstock U, Gershenzon J, Kliebenstein DJ (2008) ESP and ESM1 mediate indol-3-acetonitrile production from indol-3-ylmethyl glucosinolate in Arabidopsis. Phytochemistry 69:663–671. doi:10.1016/j.phytochem.2007.08.027
-
(2008)
Phytochemistry
, vol.69
, pp. 663-671
-
-
Burow, M.1
Zhang, Z.-Y.2
Ober, J.A.3
Lambrix, V.M.4
Wittstock, U.5
Gershenzon, J.6
Kliebenstein, D.J.7
-
9
-
-
0023656629
-
High-performance liquid chromatography analysis of 1-aminocyclopropane-1-carboxylic acid using o-phthaldialdehyde precolumn derivatization
-
COI: 1:CAS:528:DyaL1cXhvVKgtQ%3D%3D, PID: 3434798
-
Bushey DF, Law DM, Davies PJ (1987) High-performance liquid chromatography analysis of 1-aminocyclopropane-1-carboxylic acid using o-phthaldialdehyde precolumn derivatization. Anal Biochem 167:31–36. doi:10.1016/0003-2697(87)90130-8
-
(1987)
Anal Biochem
, vol.167
, pp. 31-36
-
-
Bushey, D.F.1
Law, D.M.2
Davies, P.J.3
-
10
-
-
84878012018
-
Changes in leaf proteome profile of Arabidopsis thaliana in response to salicylic acid
-
COI: 1:CAS:528:DC%2BC3sXnvFSqsrs%3D, PID: 23660666
-
Datta R, Sinha R, Chattopadhyay S (2013) Changes in leaf proteome profile of Arabidopsis thaliana in response to salicylic acid. J Biosci 38:317–328. doi:10.1007/s12038-013-9308-9
-
(2013)
J Biosci
, vol.38
, pp. 317-328
-
-
Datta, R.1
Sinha, R.2
Chattopadhyay, S.3
-
11
-
-
57749094659
-
Novel mechanisms of ethylene-gibberellin crosstalk revealed by the gai eto2-1 double mutant
-
PID: 19704451
-
De Grauwe L, Dugardeyn J, Van Der Straeten D (2008) Novel mechanisms of ethylene-gibberellin crosstalk revealed by the gai eto2-1 double mutant. Plant Signal Behav 3:1113–1115. doi:10.4161/psb.3.12.7037
-
(2008)
Plant Signal Behav
, vol.3
, pp. 1113-1115
-
-
De Grauwe, L.1
Dugardeyn, J.2
Van Der Straeten, D.3
-
12
-
-
53349168429
-
The Arabidopsis thaliana transcription factor AtMYB102 functions in defense against the insect herbivore Pieris rapae
-
PID: 19517001
-
De Vos M, Denekamp M, Dicke M, Vuylsteke M, Van Loon L, Smeekens SC, Pieterse CMJ (2006) The Arabidopsis thaliana transcription factor AtMYB102 functions in defense against the insect herbivore Pieris rapae. Plant Signal Behav 1:305–311. doi:10.4161/psb.1.6.3512
-
(2006)
Plant Signal Behav
, vol.1
, pp. 305-311
-
-
De Vos, M.1
Denekamp, M.2
Dicke, M.3
Vuylsteke, M.4
Van Loon, L.5
Smeekens, S.C.6
Pieterse, C.M.J.7
-
14
-
-
34249817103
-
WRKY75 transcription factor is a modulator of phosphate acquisition and root development in Arabidopsis
-
COI: 1:CAS:528:DC%2BD2sXksFWjtbo%3D, PID: 17322336
-
Devaiah BN, Karthikeyan AS, Raghothama KG (2007) WRKY75 transcription factor is a modulator of phosphate acquisition and root development in Arabidopsis. Plant Physiol 143:1789–1801. doi:10.1104/pp.106.093971
-
(2007)
Plant Physiol
, vol.143
, pp. 1789-1801
-
-
Devaiah, B.N.1
Karthikeyan, A.S.2
Raghothama, K.G.3
-
15
-
-
0025718335
-
Induction of Arabídopsís defense genes by virulent and avirulent Pseudomonas syringae strains and by a cloned avirulence gene
-
COI: 1:CAS:528:DyaK3MXktVantLk%3D, PID: 1824335
-
Dong X, Mindrinos M, Davis KR, Ausubel FM (1991) Induction of Arabídopsís defense genes by virulent and avirulent Pseudomonas syringae strains and by a cloned avirulence gene. Plant Cell 3:61–72. doi:10.1105/tpc.3.1.61
-
(1991)
Plant Cell
, vol.3
, pp. 61-72
-
-
Dong, X.1
Mindrinos, M.2
Davis, K.R.3
Ausubel, F.M.4
-
16
-
-
0000105577
-
Glutathione and fungal elicitor regulation of a plant defense gene promoter in electroporated protoplasts
-
COI: 1:CAS:528:DyaL1cXls1Cru78%3D, PID: 16593981
-
Dron M, Clouse SD, Dixon RA, Lawton MA, Lamb CJ (1988) Glutathione and fungal elicitor regulation of a plant defense gene promoter in electroporated protoplasts. Proc Natl Acad Sci USA 85:6738–6742. doi:10.1073/pnas.85.18.6738
-
(1988)
Proc Natl Acad Sci USA
, vol.85
, pp. 6738-6742
-
-
Dron, M.1
Clouse, S.D.2
Dixon, R.A.3
Lawton, M.A.4
Lamb, C.J.5
-
17
-
-
77954299992
-
agriGO: a GO analysis toolkit for the agricultural community
-
COI: 1:CAS:528:DC%2BC3cXotVSqtL0%3D, PID: 20435677
-
Du Z, Zhou X, Ling Y, Zhang Z, Su Z (2010) agriGO: a GO analysis toolkit for the agricultural community. Nucleic Acids Res 38:W64–W70. doi:10.1093/nar/gkq310
-
(2010)
Nucleic Acids Res
, vol.38
, pp. 64-70
-
-
Du, Z.1
Zhou, X.2
Ling, Y.3
Zhang, Z.4
Su, Z.5
-
18
-
-
77957341467
-
MYB transcription factors in Arabidopsis
-
COI: 1:CAS:528:DC%2BC3cXht1Ogtb3I, PID: 20674465
-
Dubos C, Stracke R, Grotewold E, Weisshaar B, Martin C, Lepiniec L (2010) MYB transcription factors in Arabidopsis. Trends Plant Sci 15:573–581. doi:10.1016/j.tplants.2010.06.005
-
(2010)
Trends Plant Sci
, vol.15
, pp. 573-581
-
-
Dubos, C.1
Stracke, R.2
Grotewold, E.3
Weisshaar, B.4
Martin, C.5
Lepiniec, L.6
-
19
-
-
84860908748
-
Role of glutathione in plant signaling under biotic stress
-
COI: 1:CAS:528:DC%2BC38XhtF2isLrI, PID: 22353869
-
Dubreuil-Maurizi C, Poinssot B (2012) Role of glutathione in plant signaling under biotic stress. Plant Signal Behav 7:210–212. doi:10.4161/psb.18831
-
(2012)
Plant Signal Behav
, vol.7
, pp. 210-212
-
-
Dubreuil-Maurizi, C.1
Poinssot, B.2
-
20
-
-
25844468618
-
Redox homeostasis and antioxidant signaling: a metabolic interface between stress perception and physiological responses
-
COI: 1:CAS:528:DC%2BD2MXnt1yjt7o%3D, PID: 15987996
-
Foyer CH, Noctor G (2005) Redox homeostasis and antioxidant signaling: a metabolic interface between stress perception and physiological responses. Plant Cell 17:1866–1875. doi:10.1105/tpc.105.033589
-
(2005)
Plant Cell
, vol.17
, pp. 1866-1875
-
-
Foyer, C.H.1
Noctor, G.2
-
21
-
-
84883191078
-
Glutathione and plant response to the biotic environment
-
COI: 1:CAS:528:DC%2BC3sXhvFyksb7F, PID: 23912161
-
Frendo P, Baldacci-Cresp F, Benyamina SM, Puppo A (2013) Glutathione and plant response to the biotic environment. Free Radic Biol Med 65:724–730. doi:10.1016/j.freeradbiomed.2013.07.035
-
(2013)
Free Radic Biol Med
, vol.65
, pp. 724-730
-
-
Frendo, P.1
Baldacci-Cresp, F.2
Benyamina, S.M.3
Puppo, A.4
-
22
-
-
79955619428
-
Glutathione signaling acts through NPR1-dependent SA-mediated pathway to mitigate biotic stress
-
COI: 1:CAS:528:DC%2BC38XitlOhtL4%3D, PID: 21499030
-
Ghanta S, Bhattacharyya D, Chattopadhyay S (2011a) Glutathione signaling acts through NPR1-dependent SA-mediated pathway to mitigate biotic stress. Plant Signal Behav 6:607–609. doi:10.4161/psb.6.4.15402
-
(2011)
Plant Signal Behav
, vol.6
, pp. 607-609
-
-
Ghanta, S.1
Bhattacharyya, D.2
Chattopadhyay, S.3
-
23
-
-
79954423943
-
Nicotiana tabacum overexpressing γ-ECS exhibits biotic stress tolerance likely through NPR1-dependent salicylic acid-mediated pathway
-
COI: 1:CAS:528:DC%2BC3MXksFehurs%3D, PID: 21234598
-
Ghanta S, Bhattacharyya D, Sinha R, Banerjee A, Chattopadhyay S (2011b) Nicotiana tabacum overexpressing γ-ECS exhibits biotic stress tolerance likely through NPR1-dependent salicylic acid-mediated pathway. Planta 233:895–910. doi:10.1007/s00425-011-1349-4
-
(2011)
Planta
, vol.233
, pp. 895-910
-
-
Ghanta, S.1
Bhattacharyya, D.2
Sinha, R.3
Banerjee, A.4
Chattopadhyay, S.5
-
24
-
-
84901227862
-
Multistep involvement of glutathione with salicylic acid and ethylene to combat environmental stress
-
PID: 24913051
-
Ghanta S, Datta R, Bhattacharyya D, Sinha R, Kumar D, Hazra S, Mazumder AB, Chattopadhyay S (2014) Multistep involvement of glutathione with salicylic acid and ethylene to combat environmental stress. J Plant Physiol. doi:10.1016/j.jplph.2014.03.002
-
(2014)
J Plant Physiol
-
-
Ghanta, S.1
Datta, R.2
Bhattacharyya, D.3
Sinha, R.4
Kumar, D.5
Hazra, S.6
Mazumder, A.B.7
Chattopadhyay, S.8
-
25
-
-
0034932252
-
Genes controlling expression of defense responses in Arabidopsis—2001 status
-
COI: 1:CAS:528:DC%2BD3MXksVykt7c%3D, PID: 11418339
-
Glazebrook J (2001) Genes controlling expression of defense responses in Arabidopsis—2001 status. Curr Opin Plant Biol 4:301–308. doi:10.1016/S1369-5266(00)00177-1
-
(2001)
Curr Opin Plant Biol
, vol.4
, pp. 301-308
-
-
Glazebrook, J.1
-
26
-
-
4344578436
-
Regulation of calcium signalling and gene expression by glutathione
-
COI: 1:CAS:528:DC%2BD2cXntFaisrw%3D, PID: 15286141
-
Gomez LD, Noctor G, Knight MR, Foyer CH (2004) Regulation of calcium signalling and gene expression by glutathione. J Exp Bot 55:1851–1859. doi:10.1093/jxb/erh202
-
(2004)
J Exp Bot
, vol.55
, pp. 1851-1859
-
-
Gomez, L.D.1
Noctor, G.2
Knight, M.R.3
Foyer, C.H.4
-
27
-
-
0041363685
-
Oxidative stress and acclimation mechanisms in plants
-
Grene R (2002) Oxidative stress and acclimation mechanisms in plants. Arab Book Am Soc Plant Biol. doi:10.1199/tab.0036.1
-
(2002)
Arab Book Am Soc Plant Biol
-
-
Grene, R.1
-
28
-
-
32544436982
-
Glucosinolate metabolism and its control
-
COI: 1:CAS:528:DC%2BD28XhsFOjurg%3D, PID: 16406306
-
Grubb CD, Abel S (2006) Glucosinolate metabolism and its control. Trends Plant Sci 11:89–100. doi:10.1016/j.tplants.2005.12.006
-
(2006)
Trends Plant Sci
, vol.11
, pp. 89-100
-
-
Grubb, C.D.1
Abel, S.2
-
29
-
-
63549123700
-
Mitogen-activated protein kinase cascades and ethylene: signaling, biosynthesis, or both?
-
COI: 1:CAS:528:DC%2BD1MXlsFCitLo%3D, PID: 19109412
-
Hahn A, Harter K (2009) Mitogen-activated protein kinase cascades and ethylene: signaling, biosynthesis, or both? Plant Physiol 149:1207–1210. doi:10.1104/pp.108.132241
-
(2009)
Plant Physiol
, vol.149
, pp. 1207-1210
-
-
Hahn, A.1
Harter, K.2
-
31
-
-
84876809176
-
Regulation of basal and oxidative stress-triggered jasmonic acid-related gene expression by glutathione
-
COI: 1:CAS:528:DC%2BC3sXms1ems74%3D
-
Han Y, Mhamdi A, Chaouch S, Noctor G (2013b) Regulation of basal and oxidative stress-triggered jasmonic acid-related gene expression by glutathione. Plant, Cell Environ 36:1135–1146. doi:10.1111/pce.12048
-
(2013)
Plant, Cell Environ
, vol.36
, pp. 1135-1146
-
-
Han, Y.1
Mhamdi, A.2
Chaouch, S.3
Noctor, G.4
-
32
-
-
34547526914
-
Omics-based identification of Arabidopsis Myb transcription factors regulating aliphatic glucosinolate biosynthesis
-
COI: 1:CAS:528:DC%2BD2sXks1Sks7g%3D, PID: 17420480
-
Hirai MY, Sugiyama K, Sawada Y, Tohge T, Obayashi T, Suzuki A, Araki R, Sakurai N, Suzuki H, Aoki K, Goda H, Nishizawa OI, Shibata D, Saito K (2007) Omics-based identification of Arabidopsis Myb transcription factors regulating aliphatic glucosinolate biosynthesis. Proc Natl Acad Sci USA 104:6478–6483. doi:10.1073/pnas.0611629104
-
(2007)
Proc Natl Acad Sci USA
, vol.104
, pp. 6478-6483
-
-
Hirai, M.Y.1
Sugiyama, K.2
Sawada, Y.3
Tohge, T.4
Obayashi, T.5
Suzuki, A.6
Araki, R.7
Sakurai, N.8
Suzuki, H.9
Aoki, K.10
Goda, H.11
Nishizawa, O.I.12
Shibata, D.13
Saito, K.14
-
33
-
-
84878691073
-
Glutathione and tryptophan metabolism are required for Arabidopsis immunity during the hypersensitive response to hemibiotrophs
-
COI: 1:CAS:528:DC%2BC3sXhtFGlt7rM, PID: 23696664
-
Hiruma K, Fukunaga S, Bednarek P, Pislewska-Bednarek M, Watanabe S, Narusaka Y, Shirasu K, Takano Y (2013) Glutathione and tryptophan metabolism are required for Arabidopsis immunity during the hypersensitive response to hemibiotrophs. Proc Natl Acad Sci USA 110:9589–9594. doi:10.1073/pnas.1305745110
-
(2013)
Proc Natl Acad Sci USA
, vol.110
, pp. 9589-9594
-
-
Hiruma, K.1
Fukunaga, S.2
Bednarek, P.3
Pislewska-Bednarek, M.4
Watanabe, S.5
Narusaka, Y.6
Shirasu, K.7
Takano, Y.8
-
34
-
-
84876893367
-
Salt stress encourages proline accumulation by regulating proline biosynthesis and degradation in Jerusalem Artichoke plantlets
-
COI: 1:CAS:528:DC%2BC3sXntlCrsrw%3D, PID: 23637970
-
Huang Z, Zhao L, Chen D, Liang M, Liu Z, Shao H, Long X (2013) Salt stress encourages proline accumulation by regulating proline biosynthesis and degradation in Jerusalem Artichoke plantlets. PLoS One 8:e62085. doi:10.1371/journal.pone.0062085
-
(2013)
PLoS One
, vol.8
-
-
Huang, Z.1
Zhao, L.2
Chen, D.3
Liang, M.4
Liu, Z.5
Shao, H.6
Long, X.7
-
35
-
-
33745589774
-
An endogenous peptide signal in Arabidopsis activates components of the innate immune response
-
COI: 1:CAS:528:DC%2BD28XmvVaisr4%3D, PID: 16785434
-
Huffaker A, Pearce G, Ryan CA (2006) An endogenous peptide signal in Arabidopsis activates components of the innate immune response. Proc Natl Acad Sci USA 103:10098–10103. doi:10.1073/pnas.0603727103
-
(2006)
Proc Natl Acad Sci USA
, vol.103
, pp. 10098-10103
-
-
Huffaker, A.1
Pearce, G.2
Ryan, C.A.3
-
36
-
-
12344280017
-
Summaries of Affymetrix GeneChip probe level data
-
PID: 12582260
-
Irizarry RA, Bolstad BM, Collin F, Cope LM, Hobbs B, Speed TP (2003) Summaries of Affymetrix GeneChip probe level data. Nucleic Acids Res 31:e15. doi:10.1093/nar/gng015
-
(2003)
Nucleic Acids Res
, vol.31
, pp. 15
-
-
Irizarry, R.A.1
Bolstad, B.M.2
Collin, F.3
Cope, L.M.4
Hobbs, B.5
Speed, T.P.6
-
37
-
-
34447110006
-
Sample extraction techniques for enhanced proteomic analysis of plant tissues
-
COI: 1:CAS:528:DC%2BD28XhtFOitLbE, PID: 17406306
-
Isaacson T, Damasceno CMB, Saravanan RS, He Y, Catalá C, Saladié M, Rose JKC (2006) Sample extraction techniques for enhanced proteomic analysis of plant tissues. Nat Protoc 1:769–774. doi:10.1038/nprot.2006.102
-
(2006)
Nat Protoc
, vol.1
, pp. 769-774
-
-
Isaacson, T.1
Damasceno, C.M.B.2
Saravanan, R.S.3
He, Y.4
Catalá, C.5
Saladié, M.6
Rose, J.K.C.7
-
38
-
-
36848998855
-
Comparative proteomic analysis of NaCl stress responsive proteins in Arabidopsis roots
-
COI: 1:CAS:528:DC%2BD2sXhsVWhurjP, PID: 17916636
-
Jiang Y, Yang B, Harris NS, Deyholos MK (2007) Comparative proteomic analysis of NaCl stress responsive proteins in Arabidopsis roots. J Exp Bot 58:3591–3607. doi:10.1093/jxb/erm207
-
(2007)
J Exp Bot
, vol.58
, pp. 3591-3607
-
-
Jiang, Y.1
Yang, B.2
Harris, N.S.3
Deyholos, M.K.4
-
39
-
-
0036909761
-
Transcriptome changes for Arabidopsis in response to salt, osmotic, and cold stress
-
COI: 1:CAS:528:DC%2BD3sXktlym, PID: 12481097
-
Kreps JA, Wu Y, Chang H-S, Zhu T, Wang X, Harper JF (2002) Transcriptome changes for Arabidopsis in response to salt, osmotic, and cold stress. Plant Physiol 130:2129–2141. doi:10.1104/pp.008532
-
(2002)
Plant Physiol
, vol.130
, pp. 2129-2141
-
-
Kreps, J.A.1
Wu, Y.2
Chang, H.-S.3
Zhu, T.4
Wang, X.5
Harper, J.F.6
-
40
-
-
0031417273
-
2− uptake, and oxidative stress response in intact canola roots
-
COI: 1:CAS:528:DyaK2sXjtlamsbg%3D, PID: 12223697
-
2− uptake, and oxidative stress response in intact canola roots. Plant Physiol 114:177–183. doi:10.1104/pp.114.1.177
-
(1997)
Plant Physiol
, vol.114
, pp. 177-183
-
-
Lappartient, A.G.1
Touraine, B.2
-
41
-
-
65249088948
-
Ethylene modulates the role of NONEXPRESSOR OF PATHOGENESIS-RELATED GENES1 in cross talk between salicylate and jasmonate signaling
-
COI: 1:CAS:528:DC%2BD1MXks1Wgurc%3D, PID: 19176718
-
Leon-Reyes A, Spoel SH, Lange ESD, Abe H, Kobayashi M, Tsuda S, Millenaar FF, Welschen RAM, Ritsema T, Pieterse CMJ (2009) Ethylene modulates the role of NONEXPRESSOR OF PATHOGENESIS-RELATED GENES1 in cross talk between salicylate and jasmonate signaling. Plant Physiol 149:1797–1809. doi:10.1104/pp.108.133926
-
(2009)
Plant Physiol
, vol.149
, pp. 1797-1809
-
-
Leon-Reyes, A.1
Spoel, S.H.2
Lange, E.S.D.3
Abe, H.4
Kobayashi, M.5
Tsuda, S.6
Millenaar, F.F.7
Welschen, R.A.M.8
Ritsema, T.9
Pieterse, C.M.J.10
-
42
-
-
75749157789
-
Ethylene signaling renders the jasmonate response of Arabidopsis insensitive to future suppression by salicylic acid
-
COI: 1:CAS:528:DC%2BC3cXovVWktg%3D%3D, PID: 20064062
-
Leon-Reyes A, Du Y, Koornneef A, Proietti S, Körbes AP, Memelink J, Pieterse CMJ, Ritsema T (2010) Ethylene signaling renders the jasmonate response of Arabidopsis insensitive to future suppression by salicylic acid. Mol Plant Microbe Interact 23:187–197. doi:10.1094/MPMI-23-2-0187
-
(2010)
Mol Plant Microbe Interact
, vol.23
, pp. 187-197
-
-
Leon-Reyes, A.1
Du, Y.2
Koornneef, A.3
Proietti, S.4
Körbes, A.P.5
Memelink, J.6
Pieterse, C.M.J.7
Ritsema, T.8
-
43
-
-
0028171293
-
2 from the oxidative burst orchestrates the plant hypersensitive disease resistance response
-
COI: 1:CAS:528:DyaK2MXit1Glu7Y%3D, PID: 7954825
-
2 from the oxidative burst orchestrates the plant hypersensitive disease resistance response. Cell 79:583–593. doi:10.1016/0092-8674(94)90544-4
-
(1994)
Cell
, vol.79
, pp. 583-593
-
-
Levine, A.1
Tenhaken, R.2
Dixon, R.3
Lamb, C.4
-
44
-
-
84891028000
-
Restricting glutamylcysteine synthetase activity to the cytosol or glutathione biosynthesis to the plastid is sufficient for normal plant development and stress tolerance
-
Lim B, Pasternak M, Meyer AJ, Cobbett CS (2013) Restricting glutamylcysteine synthetase activity to the cytosol or glutathione biosynthesis to the plastid is sufficient for normal plant development and stress tolerance. Plant Biol (Stuttg). doi:10.1111/plb.12033
-
(2013)
Plant Biol (Stuttg)
-
-
Lim, B.1
Pasternak, M.2
Meyer, A.J.3
Cobbett, C.S.4
-
45
-
-
55249117329
-
Role of Arabidopsis RAP2.4 in regulating light- and ethylene-mediated developmental processes and drought stress tolerance
-
COI: 1:CAS:528:DC%2BD1cXksVGlurc%3D, PID: 20031913
-
Lin RC, Park HJ, Wang HY (2008) Role of Arabidopsis RAP2.4 in regulating light- and ethylene-mediated developmental processes and drought stress tolerance. Mol Plant 1:42–57. doi:10.1093/mp/ssm004
-
(2008)
Mol Plant
, vol.1
, pp. 42-57
-
-
Lin, R.C.1
Park, H.J.2
Wang, H.Y.3
-
46
-
-
60249087048
-
MYB108 acts together with MYB24 to regulate jasmonate-mediated stamen maturation in Arabidopsis
-
COI: 1:CAS:528:DC%2BD1MXjt1Wqu7o%3D, PID: 19091873
-
Mandaokar A, Browse J (2009) MYB108 acts together with MYB24 to regulate jasmonate-mediated stamen maturation in Arabidopsis. Plant Physiol 149:851–862. doi:10.1104/pp.108.132597
-
(2009)
Plant Physiol
, vol.149
, pp. 851-862
-
-
Mandaokar, A.1
Browse, J.2
-
47
-
-
0031947649
-
Glutathione homeostasis in plants: implications for environmental sensing and plant development
-
COI: 1:CAS:528:DyaK1cXivV2ntL0%3D
-
May MJ, Vernoux T, Leaver C, Montagu MV, Inzé D (1998) Glutathione homeostasis in plants: implications for environmental sensing and plant development. J Exp Bot 49:649–667. doi:10.1093/jxb/49.321.649
-
(1998)
J Exp Bot
, vol.49
, pp. 649-667
-
-
May, M.J.1
Vernoux, T.2
Leaver, C.3
Montagu, M.V.4
Inzé, D.5
-
48
-
-
0024264526
-
Glutathione metabolism and its selective modification
-
COI: 1:CAS:528:DyaL1cXmtVKrs7g%3D, PID: 3053703
-
Meister A (1988) Glutathione metabolism and its selective modification. J Biol Chem 263:17205–17208
-
(1988)
J Biol Chem
, vol.263
, pp. 17205-17208
-
-
Meister, A.1
-
49
-
-
77954306359
-
Arabidopsis GLUTATHIONE REDUCTASE1 plays a crucial role in leaf responses to intracellular hydrogen peroxide and in ensuring appropriate gene expression through both salicylic acid and jasmonic acid signaling pathways
-
COI: 1:CAS:528:DC%2BC3cXpsFejsbs%3D, PID: 20488891
-
Mhamdi A, Hager J, Chaouch S, Queval G, Han Y, Taconnat L, Saindrenan P, Gouia H, Issakidis-Bourguet E, Renou JP, Noctor G (2010) Arabidopsis GLUTATHIONE REDUCTASE1 plays a crucial role in leaf responses to intracellular hydrogen peroxide and in ensuring appropriate gene expression through both salicylic acid and jasmonic acid signaling pathways. Plant Physiol 153:1144–1160. doi:10.1104/pp.110.153767
-
(2010)
Plant Physiol
, vol.153
, pp. 1144-1160
-
-
Mhamdi, A.1
Hager, J.2
Chaouch, S.3
Queval, G.4
Han, Y.5
Taconnat, L.6
Saindrenan, P.7
Gouia, H.8
Issakidis-Bourguet, E.9
Renou, J.P.10
Noctor, G.11
-
50
-
-
4644304481
-
Reactive oxygen gene network of plants
-
COI: 1:CAS:528:DC%2BD2cXotF2msrg%3D, PID: 15465684
-
Mittler R, Vanderauwera S, Gollery M, Van Breusegem F (2004) Reactive oxygen gene network of plants. Trends Plant Sci 9:490–498. doi:10.1016/j.tplants.2004.08.009
-
(2004)
Trends Plant Sci
, vol.9
, pp. 490-498
-
-
Mittler, R.1
Vanderauwera, S.2
Gollery, M.3
Van Breusegem, F.4
-
51
-
-
0242458201
-
Coordinate induction of glutathione biosynthesis and glutathione-metabolizing enzymes is correlated with salt tolerance in tomato
-
COI: 1:CAS:528:DC%2BD3sXovVentL8%3D, PID: 14623104
-
Mittova V, Theodoulou FL, Kiddle G, Gómez L, Volokita M, Tal M, Foyer CH, Guy M (2003) Coordinate induction of glutathione biosynthesis and glutathione-metabolizing enzymes is correlated with salt tolerance in tomato. FEBS Lett 554:417–421. doi:10.1016/S0014-5793(03)01214-6
-
(2003)
FEBS Lett
, vol.554
, pp. 417-421
-
-
Mittova, V.1
Theodoulou, F.L.2
Kiddle, G.3
Gómez, L.4
Volokita, M.5
Tal, M.6
Foyer, C.H.7
Guy, M.8
-
52
-
-
0032904974
-
Induction of rice cytosolic ascorbate peroxidase mRNA by oxidative stress; involvement of hydrogen peroxide in oxidative stress signaling
-
COI: 1:CAS:528:DyaK1MXis12iurc%3D
-
Morita S, Kaminaka H, Masumura T, Tanaka K (1999) Induction of rice cytosolic ascorbate peroxidase mRNA by oxidative stress; involvement of hydrogen peroxide in oxidative stress signaling. Plant Cell Physiol 40:417–422
-
(1999)
Plant Cell Physiol
, vol.40
, pp. 417-422
-
-
Morita, S.1
Kaminaka, H.2
Masumura, T.3
Tanaka, K.4
-
53
-
-
0038826955
-
Inducers of plant systemic acquired resistance regulate NPR1 function through redox changes
-
COI: 1:CAS:528:DC%2BD3sXlsVSjur8%3D, PID: 12837250
-
Mou Z, Fan W, Dong X (2003) Inducers of plant systemic acquired resistance regulate NPR1 function through redox changes. Cell 113:935–944. doi:10.1016/S0092-8674(03)00429-X
-
(2003)
Cell
, vol.113
, pp. 935-944
-
-
Mou, Z.1
Fan, W.2
Dong, X.3
-
54
-
-
77952935279
-
Abiotic and biotic stresses and changes in the lignin content and composition in plants
-
COI: 1:CAS:528:DC%2BC3cXmt1aqtb0%3D, PID: 20377698
-
Moura JCMS, Bonine CAV, de Oliveira Fernandes Viana J, Dornelas MC, Mazzafera P (2010) Abiotic and biotic stresses and changes in the lignin content and composition in plants. J Integr Plant Biol 52:360–376. doi:10.1111/j.1744-7909.2010.00892.x
-
(2010)
J Integr Plant Biol
, vol.52
, pp. 360-376
-
-
Moura, J.C.M.S.1
Bonine, C.A.V.2
de Oliveira Fernandes Viana, J.3
Dornelas, M.C.4
Mazzafera, P.5
-
55
-
-
84982358134
-
A revised medium for rapid growth and bio assays with tobacco tissue cultures
-
COI: 1:CAS:528:DyaF3sXksFKm
-
Murashige T, Skoog F (1962) A revised medium for rapid growth and bio assays with tobacco tissue cultures. Physiol Plant 15:473–497. doi:10.1111/j.1399-3054.1962.tb08052.x
-
(1962)
Physiol Plant
, vol.15
, pp. 473-497
-
-
Murashige, T.1
Skoog, F.2
-
56
-
-
16544393288
-
Crosstalk in the responses to abiotic and biotic stresses in Arabidopsis: analysis of gene expression in cytochrome P450 gene superfamily by cDNA microarray
-
COI: 1:CAS:528:DC%2BD2MXhsFWhsA%3D%3D, PID: 15604685
-
Narusaka Y, Narusaka M, Seki M, Umezawa T, Ishida J, Nakajima M, Enju A, Shinozaki K (2004) Crosstalk in the responses to abiotic and biotic stresses in Arabidopsis: analysis of gene expression in cytochrome P450 gene superfamily by cDNA microarray. Plant Mol Biol 55:327–342
-
(2004)
Plant Mol Biol
, vol.55
, pp. 327-342
-
-
Narusaka, Y.1
Narusaka, M.2
Seki, M.3
Umezawa, T.4
Ishida, J.5
Nakajima, M.6
Enju, A.7
Shinozaki, K.8
-
57
-
-
0036007925
-
EDS5, an essential component of salicylic acid-dependent signaling for disease resistance in Arabidopsis, is a member of the MATE transporter family
-
COI: 1:CAS:528:DC%2BD38Xht1SrtrY%3D, PID: 11826312
-
Nawrath C, Heck S, Parinthawong N, Métraux J-P (2002) EDS5, an essential component of salicylic acid-dependent signaling for disease resistance in Arabidopsis, is a member of the MATE transporter family. Plant Cell 14:275–286. doi:10.1105/tpc.010376
-
(2002)
Plant Cell
, vol.14
, pp. 275-286
-
-
Nawrath, C.1
Heck, S.2
Parinthawong, N.3
Métraux, J.-P.4
-
58
-
-
0023931883
-
Improved staining of proteins in polyacrylamide gels including isoelectric focusing gels with clear background at nanogram sensitivity using Coomassie Brilliant Blue G-250 and R-250
-
COI: 1:CAS:528:DyaL1cXksFWisro%3D, PID: 2466658
-
Neuhoff V, Arold N, Taube D, Ehrhardt W (1988) Improved staining of proteins in polyacrylamide gels including isoelectric focusing gels with clear background at nanogram sensitivity using Coomassie Brilliant Blue G-250 and R-250. Electrophoresis 9:255–262. doi:10.1002/elps.1150090603
-
(1988)
Electrophoresis
, vol.9
, pp. 255-262
-
-
Neuhoff, V.1
Arold, N.2
Taube, D.3
Ehrhardt, W.4
-
59
-
-
84855406614
-
Glutathione in plants: an integrated overview
-
COI: 1:CAS:528:DC%2BC38XjtVKnt7w%3D
-
Noctor G, Mhamdi A, Chaouch S, Han Y, Neukermans J, Marquez-Garcia B, Queval G, Foyer CH (2012) Glutathione in plants: an integrated overview. Plant, Cell Environ 35:454–484. doi:10.1111/j.1365-3040.2011.02400.x
-
(2012)
Plant, Cell Environ
, vol.35
, pp. 454-484
-
-
Noctor, G.1
Mhamdi, A.2
Chaouch, S.3
Han, Y.4
Neukermans, J.5
Marquez-Garcia, B.6
Queval, G.7
Foyer, C.H.8
-
60
-
-
84865206069
-
NRT/PTR transporters are essential for translocation of glucosinolate defence compounds to seeds
-
PID: 22864417
-
Nour-Eldin HH, Andersen TG, Burow M, Madsen SR, Jørgensen ME, Olsen CE, Dreyer I, Hedrich R, Geiger D, Halkier BA (2012) NRT/PTR transporters are essential for translocation of glucosinolate defence compounds to seeds. Nature. doi:10.1038/nature11285
-
(2012)
Nature
-
-
Nour-Eldin, H.H.1
Andersen, T.G.2
Burow, M.3
Madsen, S.R.4
Jørgensen, M.E.5
Olsen, C.E.6
Dreyer, I.7
Hedrich, R.8
Geiger, D.9
Halkier, B.A.10
-
61
-
-
0029240488
-
Ethylene-inducible DNA binding proteins that interact with an ethylene-responsive element
-
COI: 1:CAS:528:DyaK2MXktVOktrg%3D, PID: 7756828
-
Ohme-Takagi M, Shinshi H (1995) Ethylene-inducible DNA binding proteins that interact with an ethylene-responsive element. Plant Cell 7:173–182. doi:10.1105/tpc.7.2.173
-
(1995)
Plant Cell
, vol.7
, pp. 173-182
-
-
Ohme-Takagi, M.1
Shinshi, H.2
-
62
-
-
33845620655
-
Identification of PAD2 as a gamma-glutamylcysteine synthetase highlights the importance of glutathione in disease resistance of Arabidopsis
-
COI: 1:CAS:528:DC%2BD2sXnvVyqug%3D%3D, PID: 17144898
-
Parisy V, Poinssot B, Owsianowski L, Buchala A, Glazebrook J, Mauch F (2007) Identification of PAD2 as a gamma-glutamylcysteine synthetase highlights the importance of glutathione in disease resistance of Arabidopsis. Plant J 49:159–172. doi:10.1111/j.1365-313X.2006.02938.x
-
(2007)
Plant J
, vol.49
, pp. 159-172
-
-
Parisy, V.1
Poinssot, B.2
Owsianowski, L.3
Buchala, A.4
Glazebrook, J.5
Mauch, F.6
-
63
-
-
0036850952
-
Induction of the arginine decarboxylase ADC2 gene provides evidence for the involvement of polyamines in the wound response in Arabidopsis
-
COI: 1:CAS:528:DC%2BD38XovVOmsLY%3D, PID: 12428010
-
Perez-Amador MA, Leon J, Green PJ, Carbonell J (2002) Induction of the arginine decarboxylase ADC2 gene provides evidence for the involvement of polyamines in the wound response in Arabidopsis. Plant Physiol 130:1454–1463. doi:10.1104/pp.009951
-
(2002)
Plant Physiol
, vol.130
, pp. 1454-1463
-
-
Perez-Amador, M.A.1
Leon, J.2
Green, P.J.3
Carbonell, J.4
-
64
-
-
0036290601
-
DNA-binding specificity of the ERF/AP2 domain of Arabidopsis DREBs, transcription factors involved in dehydration- and cold-inducible gene expression
-
COI: 1:CAS:528:DC%2BD38XksVyquw%3D%3D, PID: 11798174
-
Sakuma Y, Liu Q, Dubouzet JG, Abe H, Shinozaki K, Yamaguchi-Shinozaki K (2002) DNA-binding specificity of the ERF/AP2 domain of Arabidopsis DREBs, transcription factors involved in dehydration- and cold-inducible gene expression. Biochem Biophys Res Commun 290:998–1009. doi:10.1006/bbrc.2001.6299
-
(2002)
Biochem Biophys Res Commun
, vol.290
, pp. 998-1009
-
-
Sakuma, Y.1
Liu, Q.2
Dubouzet, J.G.3
Abe, H.4
Shinozaki, K.5
Yamaguchi-Shinozaki, K.6
-
65
-
-
0034633788
-
Coordinated plant defense responses in Arabidopsis revealed by microarray analysis
-
COI: 1:CAS:528:DC%2BD3cXnsF2qtro%3D, PID: 11027363
-
Schenk PM, Kazan K, Wilson I, Anderson JP, Richmond T, Somerville SC, Manners JM (2000) Coordinated plant defense responses in Arabidopsis revealed by microarray analysis. Proc Natl Acad Sci USA 97:11655–11660. doi:10.1073/pnas.97.21.11655
-
(2000)
Proc Natl Acad Sci USA
, vol.97
, pp. 11655-11660
-
-
Schenk, P.M.1
Kazan, K.2
Wilson, I.3
Anderson, J.P.4
Richmond, T.5
Somerville, S.C.6
Manners, J.M.7
-
66
-
-
49849083282
-
The glutathione-deficient mutant pad2-1 accumulates lower amounts of glucosinolates and is more susceptible to the insect herbivore Spodoptera littoralis
-
COI: 1:CAS:528:DC%2BD1cXhtFCqsLjP, PID: 18466300
-
Schlaeppi K, Bodenhausen N, Buchala A, Mauch F, Reymond P (2008) The glutathione-deficient mutant pad2-1 accumulates lower amounts of glucosinolates and is more susceptible to the insect herbivore Spodoptera littoralis. Plant J 55:774–786. doi:10.1111/j.1365-313X.2008.03545.x
-
(2008)
Plant J
, vol.55
, pp. 774-786
-
-
Schlaeppi, K.1
Bodenhausen, N.2
Buchala, A.3
Mauch, F.4
Reymond, P.5
-
67
-
-
77952869993
-
Disease resistance of Arabidopsis to Phytophthora brassicae is established by the sequential action of indole glucosinolates and camalexin
-
COI: 1:CAS:528:DC%2BC3cXnslCgs74%3D, PID: 20230487
-
Schlaeppi K, Abou-Mansour E, Buchala A, Mauch F (2010) Disease resistance of Arabidopsis to Phytophthora brassicae is established by the sequential action of indole glucosinolates and camalexin. Plant J 62:840–851. doi:10.1111/j.1365-313X.2010.04197.x
-
(2010)
Plant J
, vol.62
, pp. 840-851
-
-
Schlaeppi, K.1
Abou-Mansour, E.2
Buchala, A.3
Mauch, F.4
-
68
-
-
78651484676
-
Changes in the leaf proteome profile of Mentha arvensis in response to Alternaria alternata infection
-
COI: 1:CAS:528:DC%2BC3MXhtVWqsrg%3D, PID: 21111074
-
Sinha R, Chattopadhyay S (2011) Changes in the leaf proteome profile of Mentha arvensis in response to Alternaria alternata infection. J Proteomics 74:327–336. doi:10.1016/j.jprot.2010.11.009
-
(2011)
J Proteomics
, vol.74
, pp. 327-336
-
-
Sinha, R.1
Chattopadhyay, S.2
-
69
-
-
4544341015
-
Linear models and empirical bayes methods for assessing differential expression in microarray experiments
-
Smyth GK (2004) Linear models and empirical bayes methods for assessing differential expression in microarray experiments. Stat Appl Genet Mol Biol 3:Article 3. doi: 10.2202/1544-6115.1027
-
(2004)
Stat Appl Genet Mol Biol 3:Article
, pp. 3
-
-
Smyth, G.K.1
-
70
-
-
0000539145
-
Chemical determination of tryptophan in proteins
-
COI: 1:CAS:528:DyaG3cXjtlei
-
Spies JR, Chambers DC (1949) Chemical determination of tryptophan in proteins. Anal Chem 21:1249. doi:10.1021/ac60034a033
-
(1949)
Anal Chem
, vol.21
, pp. 1249
-
-
Spies, J.R.1
Chambers, D.C.2
-
71
-
-
34248365134
-
Differential regulation of closely related R2R3-MYB transcription factors controls flavonol accumulation in different parts of the Arabidopsis thaliana seedling
-
COI: 1:CAS:528:DC%2BD2sXmt1Cjtbc%3D, PID: 17419845
-
Stracke R, Ishihara H, Huep G, Barsch A, Mehrtens F, Niehaus K, Weisshaar B (2007) Differential regulation of closely related R2R3-MYB transcription factors controls flavonol accumulation in different parts of the Arabidopsis thaliana seedling. Plant J 50:660–677. doi:10.1111/j.1365-313X.2007.03078.x
-
(2007)
Plant J
, vol.50
, pp. 660-677
-
-
Stracke, R.1
Ishihara, H.2
Huep, G.3
Barsch, A.4
Mehrtens, F.5
Niehaus, K.6
Weisshaar, B.7
-
72
-
-
0034978496
-
Comprehensive expression profile analysis of the Arabidopsis hsp70 gene family
-
COI: 1:CAS:528:DC%2BD3MXks1Gms7Y%3D, PID: 11402207
-
Sung DY, Vierling E, Guy CL (2001) Comprehensive expression profile analysis of the Arabidopsis hsp70 gene family. Plant Physiol 126:789–800. doi:10.1104/pp.126.2.789
-
(2001)
Plant Physiol
, vol.126
, pp. 789-800
-
-
Sung, D.Y.1
Vierling, E.2
Guy, C.L.3
-
73
-
-
49649112131
-
Plant immunity requires conformational charges of NPR1 via S-nitrosylation and thioredoxins
-
COI: 1:CAS:528:DC%2BD1cXpslWrtbY%3D, PID: 18635760
-
Tada Y, Spoel SH, Pajerowska-Mukhtar K, Mou Z, Song J, Wang C, Zuo J, Dong X (2008) Plant immunity requires conformational charges of NPR1 via S-nitrosylation and thioredoxins. Science 321:952–956. doi:10.1126/science.1156970
-
(2008)
Science
, vol.321
, pp. 952-956
-
-
Tada, Y.1
Spoel, S.H.2
Pajerowska-Mukhtar, K.3
Mou, Z.4
Song, J.5
Wang, C.6
Zuo, J.7
Dong, X.8
-
74
-
-
0036954558
-
Sulfate reduction is increased in transgenic Arabidopsis thaliana expressing 5′-adenylylsulfate reductase from Pseudomonas aeruginosa
-
COI: 1:CAS:528:DC%2BD3sXotFersQ%3D%3D, PID: 12492831
-
Tsakraklides G, Martin M, Chalam R, Tarczynski MC, Schmidt A, Leustek T (2002) Sulfate reduction is increased in transgenic Arabidopsis thaliana expressing 5′-adenylylsulfate reductase from Pseudomonas aeruginosa. Plant J 32:879–889. doi:10.1046/j.1365-313X.2002.01477.x
-
(2002)
Plant J
, vol.32
, pp. 879-889
-
-
Tsakraklides, G.1
Martin, M.2
Chalam, R.3
Tarczynski, M.C.4
Schmidt, A.5
Leustek, T.6
-
75
-
-
67650450238
-
Monodehydroascorbate reductase 2 and dehydroascorbate reductase 5 are crucial for a mutualistic interaction between Piriformospora indica and Arabidopsis
-
COI: 1:CAS:528:DC%2BD1MXpvVylt74%3D, PID: 19386380
-
Vadassery J, Tripathi S, Prasad R, Varma A, Oelmüller R (2009) Monodehydroascorbate reductase 2 and dehydroascorbate reductase 5 are crucial for a mutualistic interaction between Piriformospora indica and Arabidopsis. J Plant Physiol 166:1263–1274. doi:10.1016/j.jplph.2008.12.016
-
(2009)
J Plant Physiol
, vol.166
, pp. 1263-1274
-
-
Vadassery, J.1
Tripathi, S.2
Prasad, R.3
Varma, A.4
Oelmüller, R.5
-
76
-
-
0036274678
-
Ethylene biosynthesis and signaling networks
-
COI: 1:CAS:528:DC%2BD38XksV2hurs%3D, PID: 12045274
-
Wang KL-C, Li H, Ecker JR (2002) Ethylene biosynthesis and signaling networks. Plant Cell 14(Suppl):S131–S151. doi:10.1105/tpc.001768
-
(2002)
Plant Cell
, vol.14
, pp. 131-151
-
-
Wang, K.L.-C.1
Li, H.2
Ecker, J.R.3
-
77
-
-
84876160795
-
Differential antioxidant responses to cold stress in cell suspension cultures of two subspecies of rice
-
COI: 1:CAS:528:DC%2BC3sXmt1yktro%3D
-
Wang X, Fang G, Li Y, Ding M, Gong H, Li Y (2013) Differential antioxidant responses to cold stress in cell suspension cultures of two subspecies of rice. Plant Cell Tissue Org 113:353–361. doi:10.1007/s11240-012-0273-z
-
(2013)
Plant Cell Tissue Org
, vol.113
, pp. 353-361
-
-
Wang, X.1
Fang, G.2
Li, Y.3
Ding, M.4
Gong, H.5
Li, Y.6
-
78
-
-
0035969499
-
Isochorismate synthase is required to synthesize salicylic acid for plant defence
-
COI: 1:CAS:528:DC%2BD3MXptFert7s%3D, PID: 11734859
-
Wildermuth MC, Dewdney J, Wu G, Ausubel FM (2001) Isochorismate synthase is required to synthesize salicylic acid for plant defence. Nature 414:562–565. doi:10.1038/35107108
-
(2001)
Nature
, vol.414
, pp. 562-565
-
-
Wildermuth, M.C.1
Dewdney, J.2
Wu, G.3
Ausubel, F.M.4
-
79
-
-
0000527732
-
Glutathione causes a massive and selective induction of plant defense genes
-
COI: 1:CAS:528:DyaL1cXks1OqtLg%3D, PID: 16666104
-
Wingate VPM, Lawton MA, Lamb CJ (1988) Glutathione causes a massive and selective induction of plant defense genes. Plant Physiol 87:206–210. doi:10.1104/pp.87.1.206
-
(1988)
Plant Physiol
, vol.87
, pp. 206-210
-
-
Wingate, V.P.M.1
Lawton, M.A.2
Lamb, C.J.3
-
80
-
-
33751372793
-
alpha-Synuclein, oxidative stress and apoptosis from the perspective of a yeast model of Parkinson’s disease
-
COI: 1:CAS:528:DC%2BD28XhtlWqsbjO, PID: 17156009
-
Witt SN, Flower TR (2006) alpha-Synuclein, oxidative stress and apoptosis from the perspective of a yeast model of Parkinson’s disease. FEMS Yeast Res 6:1107–1116. doi:10.1111/j.1567-1364.2006.00135.x
-
(2006)
FEMS Yeast Res
, vol.6
, pp. 1107-1116
-
-
Witt, S.N.1
Flower, T.R.2
-
81
-
-
84910111473
-
Expression of tobacco tocopherol cyclase in rice regulates antioxidative defense and drought tolerance
-
Woo HJ, Sohn SI, Shin KS, Kim JK, Kim BG, Lim MH (2014) Expression of tobacco tocopherol cyclase in rice regulates antioxidative defense and drought tolerance. Plant Cell Tiss Org. doi:10.1007/s11240-014-0530-4
-
(2014)
Plant Cell Tiss Org
-
-
Woo, H.J.1
Sohn, S.I.2
Shin, K.S.3
Kim, J.K.4
Kim, B.G.5
Lim, M.H.6
-
82
-
-
0001212489
-
Ethylene biosynthesis and its regulation in higher plants
-
COI: 1:CAS:528:DyaL2cXkvVOnsrg%3D
-
Yang SF, Hoffman NE (1984) Ethylene biosynthesis and its regulation in higher plants. Annu Rev Plant Physiol 35:155–189. doi:10.1146/annurev.pp.35.060184.001103
-
(1984)
Annu Rev Plant Physiol
, vol.35
, pp. 155-189
-
-
Yang, S.F.1
Hoffman, N.E.2
-
83
-
-
77956292185
-
Effect of salinity on antioxidant enzymes in calli of the halophyte Nitraria tangutorum Bobr
-
COI: 1:CAS:528:DC%2BC3cXhtV2gtbvJ
-
Yang Y, Shi R, Wei X, Fan Q, An L (2010) Effect of salinity on antioxidant enzymes in calli of the halophyte Nitraria tangutorum Bobr. Plant Cell Tiss Organ Cult 102:387–395. doi:10.1007/s11240-010-9745-1
-
(2010)
Plant Cell Tiss Organ Cult
, vol.102
, pp. 387-395
-
-
Yang, Y.1
Shi, R.2
Wei, X.3
Fan, Q.4
An, L.5
-
84
-
-
84897066534
-
Overexpression of a GST gene (ThGSTZ1) from Tamarix hispida improves drought and salinity tolerance by enhancing the ability to scavenge reactive oxygen species
-
COI: 1:CAS:528:DC%2BC2cXotlKntg%3D%3D
-
Yang G, Wang Y, Xia D, Gao C, Wang C, Yang C (2014) Overexpression of a GST gene (ThGSTZ1) from Tamarix hispida improves drought and salinity tolerance by enhancing the ability to scavenge reactive oxygen species. Plant Cell Tiss Org 117:99–112. doi:10.1007/s11240-014-0424-5
-
(2014)
Plant Cell Tiss Org
, vol.117
, pp. 99-112
-
-
Yang, G.1
Wang, Y.2
Xia, D.3
Gao, C.4
Wang, C.5
Yang, C.6
-
85
-
-
32044469882
-
The MYB transcription factor superfamily of Arabidopsis: expression analysis and phylogenetic comparison with the rice MYB family
-
PID: 16463103
-
Yanhui C, Xiaoyuan Y, Kun H, Meihua L, Jigang L, Zhaofeng G, Zhiqiang L, Yunfei Z, Xiaoxiao W, Xiaoming Q, Yunping S, Li Z, Xiaohui D, Jingchu L, Xing-Wang D, Zhangliang C, Hongya G, Li-Jia Q (2006) The MYB transcription factor superfamily of Arabidopsis: expression analysis and phylogenetic comparison with the rice MYB family. Plant Mol Biol 60:107–124. doi:10.1007/s11103-005-2910-y
-
(2006)
Plant Mol Biol
, vol.60
, pp. 107-124
-
-
Yanhui, C.1
Xiaoyuan, Y.2
Kun, H.3
Meihua, L.4
Jigang, L.5
Zhaofeng, G.6
Zhiqiang, L.7
Yunfei, Z.8
Xiaoxiao, W.9
Xiaoming, Q.10
Yunping, S.11
Li, Z.12
Xiaohui, D.13
Jingchu, L.14
Xing-Wang, D.15
Zhangliang, C.16
Hongya, G.17
Li-Jia, Q.18
-
86
-
-
67650569092
-
Ethylene and salicylic acid control glutathione biosynthesis in ozone-exposed Arabidopsis thaliana
-
COI: 1:CAS:528:DC%2BD1MXos1artLY%3D, PID: 19453511
-
Yoshida S, Tamaoki M, Ioki M, Ogawa D, Sato Y, Aono M, Kubo A, Saji S, Saji H, Satoh S, Nakajima N (2009) Ethylene and salicylic acid control glutathione biosynthesis in ozone-exposed Arabidopsis thaliana. Physiol Plant 136:284–298. doi:10.1111/j.1399-3054.2009.01220.x
-
(2009)
Physiol Plant
, vol.136
, pp. 284-298
-
-
Yoshida, S.1
Tamaoki, M.2
Ioki, M.3
Ogawa, D.4
Sato, Y.5
Aono, M.6
Kubo, A.7
Saji, S.8
Saji, H.9
Satoh, S.10
Nakajima, N.11
-
87
-
-
77951936713
-
The Arabidopsis AP2/ERF transcription factor RAP2.6 participates in ABA, salt and osmotic stress responses
-
COI: 1:CAS:528:DC%2BC3cXltFGqurY%3D, PID: 20193749
-
Zhu Q, Zhang J, Gao X, Tong J, Xiao L, Li W, Zhang H (2010) The Arabidopsis AP2/ERF transcription factor RAP2.6 participates in ABA, salt and osmotic stress responses. Gene 457:1–12. doi:10.1016/j.gene.2010.02.011
-
(2010)
Gene
, vol.457
, pp. 1-12
-
-
Zhu, Q.1
Zhang, J.2
Gao, X.3
Tong, J.4
Xiao, L.5
Li, W.6
Zhang, H.7
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