메뉴 건너뛰기




Volumn 20, Issue 4, 2015, Pages 219-229

Diverse roles of jasmonates and ethylene in abiotic stress tolerance

Author keywords

Arabidopsis; Cold; Drought; Ethylene; Jasmonate; Rice; Salt

Indexed keywords

ARABIDOPSIS;

EID: 84926417606     PISSN: 13601385     EISSN: None     Source Type: Journal    
DOI: 10.1016/j.tplants.2015.02.001     Document Type: Review
Times cited : (681)

References (126)
  • 2
    • 78049273228 scopus 로고    scopus 로고
    • Tropical forests were the primary sources of new agricultural land in the 1980s and 1990s
    • Gibbs H.K., et al. Tropical forests were the primary sources of new agricultural land in the 1980s and 1990s. Proc. Natl. Acad. Sci. U.S.A. 2010, 107:16732-16737.
    • (2010) Proc. Natl. Acad. Sci. U.S.A. , vol.107 , pp. 16732-16737
    • Gibbs, H.K.1
  • 3
    • 84862808910 scopus 로고    scopus 로고
    • Making sense of low oxygen sensing
    • Bailey-Serres J., et al. Making sense of low oxygen sensing. Trends Plant Sci. 2012, 17:129-138.
    • (2012) Trends Plant Sci. , vol.17 , pp. 129-138
    • Bailey-Serres, J.1
  • 4
    • 78649630901 scopus 로고    scopus 로고
    • Plant molecular stress responses face climate change
    • Ahuja I., et al. Plant molecular stress responses face climate change. Trends Plant Sci. 2010, 15:664-674.
    • (2010) Trends Plant Sci. , vol.15 , pp. 664-674
    • Ahuja, I.1
  • 5
    • 84907426314 scopus 로고    scopus 로고
    • The drought you can't see
    • McNutt M., et al. The drought you can't see. Science 2014, 345:1543.
    • (2014) Science , vol.345 , pp. 1543
    • McNutt, M.1
  • 6
    • 84861882209 scopus 로고    scopus 로고
    • Plant hormone interactions: innovative targets for crop breeding and management
    • Wilkinson S., et al. Plant hormone interactions: innovative targets for crop breeding and management. J. Exp. Bot. 2012, 63:3499-3509.
    • (2012) J. Exp. Bot. , vol.63 , pp. 3499-3509
    • Wilkinson, S.1
  • 7
    • 84896498557 scopus 로고    scopus 로고
    • The role of gibberellin signalling in plant responses to abiotic stress
    • Colebrook E.H., et al. The role of gibberellin signalling in plant responses to abiotic stress. J. Exp. Biol. 2014, 217:67-75.
    • (2014) J. Exp. Biol. , vol.217 , pp. 67-75
    • Colebrook, E.H.1
  • 8
    • 84889816089 scopus 로고    scopus 로고
    • Auxin and the integration of environmental signals into plant root development
    • Kazan K. Auxin and the integration of environmental signals into plant root development. Ann Bot. 2013, 112:1655-1665.
    • (2013) Ann Bot. , vol.112 , pp. 1655-1665
    • Kazan, K.1
  • 9
    • 84878978228 scopus 로고    scopus 로고
    • Jasmonate signaling in plant development and defense response to multiple (a)biotic stresses
    • Santino A., et al. Jasmonate signaling in plant development and defense response to multiple (a)biotic stresses. Plant Cell Rep. 2013, 32:1085-1098.
    • (2013) Plant Cell Rep. , vol.32 , pp. 1085-1098
    • Santino, A.1
  • 10
    • 84905056574 scopus 로고    scopus 로고
    • Intervention of phytohormone pathways by pathogen effectors
    • Kazan K., Lyons R. Intervention of phytohormone pathways by pathogen effectors. Plant Cell 2014, 26:2285-2309.
    • (2014) Plant Cell , vol.26 , pp. 2285-2309
    • Kazan, K.1    Lyons, R.2
  • 11
    • 84899156543 scopus 로고    scopus 로고
    • Regulation of water, salinity, and cold stress responses by salicylic acid
    • Miura K., Tada Y. Regulation of water, salinity, and cold stress responses by salicylic acid. Front Plant Sci. 2014, 5:4.
    • (2014) Front Plant Sci. , vol.5 , pp. 4
    • Miura, K.1    Tada, Y.2
  • 12
    • 77957748106 scopus 로고    scopus 로고
    • Molecular basis of plant cold acclimation: Insights gained from studying the CBF cold response pathway
    • Thomashow M.F. Molecular basis of plant cold acclimation: Insights gained from studying the CBF cold response pathway. Plant Physiol. 2010, 154:571-577.
    • (2010) Plant Physiol. , vol.154 , pp. 571-577
    • Thomashow, M.F.1
  • 13
    • 84884693407 scopus 로고    scopus 로고
    • Jasmonate regulates the inducer of cbf expression-C-repeat binding factor/DRE binding factor1 cascade and freezing tolerance in Arabidopsis
    • Hu Y., et al. Jasmonate regulates the inducer of cbf expression-C-repeat binding factor/DRE binding factor1 cascade and freezing tolerance in Arabidopsis. Plant Cell 2013, 25:2907-2924.
    • (2013) Plant Cell , vol.25 , pp. 2907-2924
    • Hu, Y.1
  • 14
    • 84901046476 scopus 로고    scopus 로고
    • Endogenous auxin and jasmonic acid levels are differentially modulated by abiotic stresses in rice
    • Du H., et al. Endogenous auxin and jasmonic acid levels are differentially modulated by abiotic stresses in rice. Front Plant Sci. 2013, 4:397.
    • (2013) Front Plant Sci. , vol.4 , pp. 397
    • Du, H.1
  • 15
    • 84870507080 scopus 로고    scopus 로고
    • Induction of jasmonate signalling regulators MaMYC2s and their physical interactions with MaICE1 in methyl jasmonate-induced chilling tolerance in banana fruit
    • Zhao M.L., et al. Induction of jasmonate signalling regulators MaMYC2s and their physical interactions with MaICE1 in methyl jasmonate-induced chilling tolerance in banana fruit. Plant Cell Environ. 2013, 36:30-51.
    • (2013) Plant Cell Environ. , vol.36 , pp. 30-51
    • Zhao, M.L.1
  • 16
    • 84886434039 scopus 로고    scopus 로고
    • Molecular characterization of cold-responsive basic helix-loop-helix transcription factors MabHLHs that interact with MaICE1 in banana fruit
    • Peng H.H., et al. Molecular characterization of cold-responsive basic helix-loop-helix transcription factors MabHLHs that interact with MaICE1 in banana fruit. Planta 2013, 238:937-953.
    • (2013) Planta , vol.238 , pp. 937-953
    • Peng, H.H.1
  • 17
    • 0033133352 scopus 로고    scopus 로고
    • The sfr6 mutation in Arabidopsis suppresses low-temperature induction of genes dependent on the CRT/DRE sequence motif
    • Knight H., et al. The sfr6 mutation in Arabidopsis suppresses low-temperature induction of genes dependent on the CRT/DRE sequence motif. Plant Cell 1999, 11:875-886.
    • (1999) Plant Cell , vol.11 , pp. 875-886
    • Knight, H.1
  • 18
    • 63349106221 scopus 로고    scopus 로고
    • Identification of SFR6, a key component in cold acclimation acting post-translationally on CBF function
    • Knight H., et al. Identification of SFR6, a key component in cold acclimation acting post-translationally on CBF function. Plant J. 2009, 58:97-108.
    • (2009) Plant J. , vol.58 , pp. 97-108
    • Knight, H.1
  • 19
    • 84861479570 scopus 로고    scopus 로고
    • The mediator subunit SFR6/MED16 controls defence gene expression mediated by salicylic acid and jasmonate responsive pathways
    • Wathugala D.L., et al. The mediator subunit SFR6/MED16 controls defence gene expression mediated by salicylic acid and jasmonate responsive pathways. New Phytol. 2012, 195:217-230.
    • (2012) New Phytol. , vol.195 , pp. 217-230
    • Wathugala, D.L.1
  • 20
    • 84870710127 scopus 로고    scopus 로고
    • The Arabidopsis mediator complex subunit16 positively regulates salicylate-mediated systemic acquired resistance and jasmonate/ET-induced defense pathways
    • Zhang X., et al. The Arabidopsis mediator complex subunit16 positively regulates salicylate-mediated systemic acquired resistance and jasmonate/ET-induced defense pathways. Plant Cell 2012, 24:4294-4309.
    • (2012) Plant Cell , vol.24 , pp. 4294-4309
    • Zhang, X.1
  • 21
    • 0037854728 scopus 로고    scopus 로고
    • The sfr6 mutant of Arabidopsis is defective in transcriptional activation via CBF/DREB1 and DREB2 and shows sensitivity to osmotic stress
    • Boyce J.M., et al. The sfr6 mutant of Arabidopsis is defective in transcriptional activation via CBF/DREB1 and DREB2 and shows sensitivity to osmotic stress. Plant J. 2003, 34:395-406.
    • (2003) Plant J. , vol.34 , pp. 395-406
    • Boyce, J.M.1
  • 22
    • 84896824715 scopus 로고    scopus 로고
    • The Arabidopsis mediator complex subunits MED16, MED14, and MED2 regulate mediator and RNA polymerase II recruitment to CBF-responsive cold-regulated genes
    • Hemsley P.A., et al. The Arabidopsis mediator complex subunits MED16, MED14, and MED2 regulate mediator and RNA polymerase II recruitment to CBF-responsive cold-regulated genes. Plant Cell 2014, 26:465-484.
    • (2014) Plant Cell , vol.26 , pp. 465-484
    • Hemsley, P.A.1
  • 23
    • 70349682858 scopus 로고    scopus 로고
    • The mediator complex subunit PFT1 is a key regulator of jasmonate-dependent defense in Arabidopsis
    • Kidd B.N., et al. The mediator complex subunit PFT1 is a key regulator of jasmonate-dependent defense in Arabidopsis. Plant Cell 2009, 21:2237-2252.
    • (2009) Plant Cell , vol.21 , pp. 2237-2252
    • Kidd, B.N.1
  • 24
    • 84866044239 scopus 로고    scopus 로고
    • MEDIATOR25 acts as an integrative hub for the regulation of jasmonate-responsive gene expression in Arabidopsis
    • Çevik V., et al. MEDIATOR25 acts as an integrative hub for the regulation of jasmonate-responsive gene expression in Arabidopsis. Plant Physiol. 2012, 160:541-555.
    • (2012) Plant Physiol. , vol.160 , pp. 541-555
    • Çevik, V.1
  • 25
    • 0012776553 scopus 로고
    • The relationship between ethylene biosynthesis and chilling tolerance in seedlings of rice (Oryza sativa L.)
    • Chu C., Lee T-M. The relationship between ethylene biosynthesis and chilling tolerance in seedlings of rice (Oryza sativa L.). Bot. Bull. Acad. Sin. 1989, 30:263-273.
    • (1989) Bot. Bull. Acad. Sin. , vol.30 , pp. 263-273
    • Chu, C.1    Lee, T.-M.2
  • 26
    • 0002571810 scopus 로고
    • The role of 1-aminocyclopropane-1-carboxylic acid in the control of low temperature induced ethylene production in leaf tissue of Phaseolus vulgaris L
    • Field R.J. The role of 1-aminocyclopropane-1-carboxylic acid in the control of low temperature induced ethylene production in leaf tissue of Phaseolus vulgaris L. Ann. Bot. 1984, 54:61-67.
    • (1984) Ann. Bot. , vol.54 , pp. 61-67
    • Field, R.J.1
  • 27
    • 84989711448 scopus 로고
    • Levels of ethylene, ACC, MACC, ABA and proline as indicators of cold hardening and frost resistance in winter wheat
    • Macháccková I., et al. Levels of ethylene, ACC, MACC, ABA and proline as indicators of cold hardening and frost resistance in winter wheat. Physiol. Plant 1989, 76:603-607.
    • (1989) Physiol. Plant , vol.76 , pp. 603-607
    • Macháccková, I.1
  • 28
    • 0001478775 scopus 로고
    • Chilling-induced ethylene production in cucumbers (Cucumis sativus L.)
    • Wang C.Y., Adams D.O. Chilling-induced ethylene production in cucumbers (Cucumis sativus L.). Plant Physiol. 1982, 69:424-427.
    • (1982) Plant Physiol. , vol.69 , pp. 424-427
    • Wang, C.Y.1    Adams, D.O.2
  • 29
    • 0030799354 scopus 로고    scopus 로고
    • Increased ethylene synthesis enhances chilling tolerance in tomato
    • Ciardi J.A., et al. Increased ethylene synthesis enhances chilling tolerance in tomato. Physiol. Plant 1997, 101:333-340.
    • (1997) Physiol. Plant , vol.101 , pp. 333-340
    • Ciardi, J.A.1
  • 30
    • 84864457739 scopus 로고    scopus 로고
    • Ethylene signaling negatively regulates freezing tolerance by repressing expression of CBF and type-A ARR genes in Arabidopsis
    • Shi Y., et al. Ethylene signaling negatively regulates freezing tolerance by repressing expression of CBF and type-A ARR genes in Arabidopsis. Plant Cell 2012, 24:2578-2595.
    • (2012) Plant Cell , vol.24 , pp. 2578-2595
    • Shi, Y.1
  • 31
    • 84907452203 scopus 로고    scopus 로고
    • The Arabidopsis 14-3-3 protein RARE COLD INDUCIBLE 1A links low-temperature response and ethylene biosynthesis to regulate freezing tolerance and cold acclimation
    • Catalá R., et al. The Arabidopsis 14-3-3 protein RARE COLD INDUCIBLE 1A links low-temperature response and ethylene biosynthesis to regulate freezing tolerance and cold acclimation. Plant Cell 2014, 26:3326-3342.
    • (2014) Plant Cell , vol.26 , pp. 3326-3342
    • Catalá, R.1
  • 32
    • 84906090358 scopus 로고    scopus 로고
    • Cold acclimation-induced freezing tolerance of Medicago truncatula seedlings is negatively regulated by ethylene
    • Zhao M., et al. Cold acclimation-induced freezing tolerance of Medicago truncatula seedlings is negatively regulated by ethylene. Physiol. Plant 2014, 152:115-129.
    • (2014) Physiol. Plant , vol.152 , pp. 115-129
    • Zhao, M.1
  • 33
    • 70349884017 scopus 로고    scopus 로고
    • Ethylene and cold participate in the regulation of LeCBF1 gene expression in postharvest tomato fruits
    • Zhao D., et al. Ethylene and cold participate in the regulation of LeCBF1 gene expression in postharvest tomato fruits. FEBS Lett. 2009, 583:3329-3334.
    • (2009) FEBS Lett. , vol.583 , pp. 3329-3334
    • Zhao, D.1
  • 34
    • 77953092166 scopus 로고    scopus 로고
    • Enhanced tolerance to freezing in tobacco and tomato overexpressing transcription factor TERF2/LeERF2 is modulated by ethylene biosynthesis
    • Zhang Z., Huang R. Enhanced tolerance to freezing in tobacco and tomato overexpressing transcription factor TERF2/LeERF2 is modulated by ethylene biosynthesis. Plant Mol. Biol. 2010, 73:241-249.
    • (2010) Plant Mol. Biol. , vol.73 , pp. 241-249
    • Zhang, Z.1    Huang, R.2
  • 35
    • 49249120946 scopus 로고    scopus 로고
    • The Medicago truncatula ortholog of Arabidopsis EIN2, sickle, is a negative regulator of symbiotic and pathogenic microbial associations
    • Penmetsa R.V., et al. The Medicago truncatula ortholog of Arabidopsis EIN2, sickle, is a negative regulator of symbiotic and pathogenic microbial associations. Plant J. 2008, 55:580-595.
    • (2008) Plant J. , vol.55 , pp. 580-595
    • Penmetsa, R.V.1
  • 36
    • 84887312510 scopus 로고    scopus 로고
    • Insights into genomics of salt stress response in rice
    • Kumar K., et al. Insights into genomics of salt stress response in rice. Rice 2013, 6:27.
    • (2013) Rice , vol.6 , pp. 27
    • Kumar, K.1
  • 37
    • 84902768660 scopus 로고    scopus 로고
    • Salt adaptation requires efficient fine-tuning of jasmonate signalling
    • Ismail A., et al. Salt adaptation requires efficient fine-tuning of jasmonate signalling. Protoplasma 2013, 251:881-898.
    • (2013) Protoplasma , vol.251 , pp. 881-898
    • Ismail, A.1
  • 38
    • 84901049336 scopus 로고    scopus 로고
    • Tolerance to drought and salt stress in plants: Unraveling the signaling networks
    • Golldack D., et al. Tolerance to drought and salt stress in plants: Unraveling the signaling networks. Front. Plant Sci. 2014, 5:151.
    • (2014) Front. Plant Sci. , vol.5 , pp. 151
    • Golldack, D.1
  • 39
    • 84902127736 scopus 로고    scopus 로고
    • Exogenous jasmonic acid can enhance tolerance of wheat seedlings to salt stress
    • Qiu Z., et al. Exogenous jasmonic acid can enhance tolerance of wheat seedlings to salt stress. Ecotoxicol. Environ. Saf. 2014, 104:202-208.
    • (2014) Ecotoxicol. Environ. Saf. , vol.104 , pp. 202-208
    • Qiu, Z.1
  • 40
    • 84874592719 scopus 로고    scopus 로고
    • Wheat oxophytodienoate reductase gene TaOPR1 confers salinity tolerance via enhancement of abscisic acid signaling and reactive oxygen species scavenging
    • Dong W., et al. Wheat oxophytodienoate reductase gene TaOPR1 confers salinity tolerance via enhancement of abscisic acid signaling and reactive oxygen species scavenging. Plant Physiol. 2013, 161:1217-1228.
    • (2013) Plant Physiol. , vol.161 , pp. 1217-1228
    • Dong, W.1
  • 41
    • 84893464364 scopus 로고    scopus 로고
    • A wheat allene oxide cyclase gene enhances salinity tolerance via jasmonate signaling
    • Zhao Y., et al. A wheat allene oxide cyclase gene enhances salinity tolerance via jasmonate signaling. Plant Physiol. 2014, 164:1068-1076.
    • (2014) Plant Physiol. , vol.164 , pp. 1068-1076
    • Zhao, Y.1
  • 42
    • 84865336641 scopus 로고    scopus 로고
    • The Arabidopsis mediator subunit MED25 differentially regulates jasmonate and abscisic acid signaling through interacting with the MYC2 and ABI5 transcription factors
    • Chen R., et al. The Arabidopsis mediator subunit MED25 differentially regulates jasmonate and abscisic acid signaling through interacting with the MYC2 and ABI5 transcription factors. Plant Cell 2012, 24:2898-2916.
    • (2012) Plant Cell , vol.24 , pp. 2898-2916
    • Chen, R.1
  • 43
    • 79957718353 scopus 로고    scopus 로고
    • The Arabidopsis thaliana Med25 mediator subunit integrates environmental cues to control plant development
    • Elfving N., et al. The Arabidopsis thaliana Med25 mediator subunit integrates environmental cues to control plant development. Proc. Natl. Acad. Sci. U.S.A. 2011, 108:8245-8250.
    • (2011) Proc. Natl. Acad. Sci. U.S.A. , vol.108 , pp. 8245-8250
    • Elfving, N.1
  • 44
    • 84879482568 scopus 로고    scopus 로고
    • RICE SALT SENSITIVE3 forms a ternary complex with JAZ and class-C bHLH factors and regulates jasmonate-induced gene expression and root cell elongation
    • Tod Y., et al. RICE SALT SENSITIVE3 forms a ternary complex with JAZ and class-C bHLH factors and regulates jasmonate-induced gene expression and root cell elongation. Plant Cell 2013, 25:1709-1725.
    • (2013) Plant Cell , vol.25 , pp. 1709-1725
    • Tod, Y.1
  • 45
    • 69249209679 scopus 로고    scopus 로고
    • Identification and expression profiling analysis of TIFY family genes involved in stress and phytohormone responses in rice
    • Ye H., et al. Identification and expression profiling analysis of TIFY family genes involved in stress and phytohormone responses in rice. Plant Mol. Biol. 2009, 71:291-305.
    • (2009) Plant Mol. Biol. , vol.71 , pp. 291-305
    • Ye, H.1
  • 46
    • 84920276108 scopus 로고    scopus 로고
    • OsJAZ9 acts as a transcriptional regulator in jasmonate signaling and modulates salt stress tolerance in rice
    • Wu H., et al. OsJAZ9 acts as a transcriptional regulator in jasmonate signaling and modulates salt stress tolerance in rice. Plant Sci. 2015, 232:1-12.
    • (2015) Plant Sci. , vol.232 , pp. 1-12
    • Wu, H.1
  • 47
    • 84943819729 scopus 로고    scopus 로고
    • The tomato res mutant which accumulates JA in roots in non-stressed conditions restores cell structure alterations under salinity
    • Published online January 13, 2015.
    • Garcia-Abellan J.O., et al. The tomato res mutant which accumulates JA in roots in non-stressed conditions restores cell structure alterations under salinity. Physiol. Plant 2015, Published online January 13, 2015. http://dx.doi.org/10.1111/ppl.12320.
    • (2015) Physiol. Plant
    • Garcia-Abellan, J.O.1
  • 48
    • 72249109197 scopus 로고    scopus 로고
    • Systemin-dependent salinity tolerance in tomato: evidence of specific convergence of abiotic and biotic stress responses
    • Orsini F., et al. Systemin-dependent salinity tolerance in tomato: evidence of specific convergence of abiotic and biotic stress responses. Physiol. Plant 2010, 138:10-21.
    • (2010) Physiol. Plant , vol.138 , pp. 10-21
    • Orsini, F.1
  • 49
    • 84928585269 scopus 로고    scopus 로고
    • Transcriptomic profiling revealed an important role of cell wall remodeling and ethylene signaling pathway during salt acclimation in Arabidopsis
    • Shen X., et al. Transcriptomic profiling revealed an important role of cell wall remodeling and ethylene signaling pathway during salt acclimation in Arabidopsis. Plant Mol. Biol. 2014, 86:303-317.
    • (2014) Plant Mol. Biol. , vol.86 , pp. 303-317
    • Shen, X.1
  • 50
    • 55249124774 scopus 로고    scopus 로고
    • Activation of MAPK kinase 9 induces ethylene and camalexin biosynthesis and enhances sensitivity to salt stress in Arabidopsis
    • Xu J., et al. Activation of MAPK kinase 9 induces ethylene and camalexin biosynthesis and enhances sensitivity to salt stress in Arabidopsis. J. Biol. Chem. 2008, 283:26996-27006.
    • (2008) J. Biol. Chem. , vol.283 , pp. 26996-27006
    • Xu, J.1
  • 51
    • 80054119902 scopus 로고    scopus 로고
    • Loss of ACS7 confers abiotic stress tolerance by modulating ABA sensitivity and accumulation in Arabidopsis
    • Dong H., et al. Loss of ACS7 confers abiotic stress tolerance by modulating ABA sensitivity and accumulation in Arabidopsis. J. Exp. Bot. 2011, 62:4875-4887.
    • (2011) J. Exp. Bot. , vol.62 , pp. 4875-4887
    • Dong, H.1
  • 52
    • 14644420609 scopus 로고    scopus 로고
    • Antagonistic interaction between abscisic acid and jasmonate-ethylene signaling pathways modulates defense gene expression and disease resistance in Arabidopsis
    • Anderson J.P., et al. Antagonistic interaction between abscisic acid and jasmonate-ethylene signaling pathways modulates defense gene expression and disease resistance in Arabidopsis. Plant Cell 2004, 16:3460-3479.
    • (2004) Plant Cell , vol.16 , pp. 3460-3479
    • Anderson, J.P.1
  • 53
    • 84939895166 scopus 로고    scopus 로고
    • A wheat aminocyclopropane-1-carboxylate oxidase gene, TaACO1, negatively regulates salinity stress in Arabidopsis thaliana
    • Chen D., et al. A wheat aminocyclopropane-1-carboxylate oxidase gene, TaACO1, negatively regulates salinity stress in Arabidopsis thaliana. Plant Cell Rep. 2014, 33:1815-1827.
    • (2014) Plant Cell Rep. , vol.33 , pp. 1815-1827
    • Chen, D.1
  • 54
    • 84886487037 scopus 로고    scopus 로고
    • An Arabidopsis soil-salinity-tolerance mutation confers ethylene-mediated enhancement of sodium/potassium homeostasis
    • Jiang C., et al. An Arabidopsis soil-salinity-tolerance mutation confers ethylene-mediated enhancement of sodium/potassium homeostasis. Plant Cell 2013, 25:3535-3552.
    • (2013) Plant Cell , vol.25 , pp. 3535-3552
    • Jiang, C.1
  • 55
    • 80051767673 scopus 로고    scopus 로고
    • Paradigms and paradox in the ethylene signaling pathway and interaction network
    • Zhao Q., Guo H.W. Paradigms and paradox in the ethylene signaling pathway and interaction network. Mol. Plant 2011, 4:626-634.
    • (2011) Mol. Plant , vol.4 , pp. 626-634
    • Zhao, Q.1    Guo, H.W.2
  • 56
    • 39149095565 scopus 로고    scopus 로고
    • 2 signalling
    • 2 signalling. Nature 2008, 451:789-795.
    • (2008) Nature , vol.451 , pp. 789-795
    • Yoo, S.D.1
  • 57
    • 84905015228 scopus 로고    scopus 로고
    • The receptor-like kinase SIT1 mediates salt sensitivity by activating MAPK3/6 and regulating ethylene homeostasis in rice
    • Li C.H., et al. The receptor-like kinase SIT1 mediates salt sensitivity by activating MAPK3/6 and regulating ethylene homeostasis in rice. Plant Cell 2014, 26:2538-2553.
    • (2014) Plant Cell , vol.26 , pp. 2538-2553
    • Li, C.H.1
  • 58
    • 34247218627 scopus 로고    scopus 로고
    • Modulation of ethylene responses affects plant salt-stress responses
    • Cao W.H., et al. Modulation of ethylene responses affects plant salt-stress responses. Plant Physiol. 2007, 143:707-719.
    • (2007) Plant Physiol. , vol.143 , pp. 707-719
    • Cao, W.H.1
  • 59
    • 34447115245 scopus 로고    scopus 로고
    • Arabidopsis EIN2 modulates stress response through abscisic acid response pathway
    • Wang Y., et al. Arabidopsis EIN2 modulates stress response through abscisic acid response pathway. Plant Mol. Biol. 2007, 64:633-644.
    • (2007) Plant Mol. Biol. , vol.64 , pp. 633-644
    • Wang, Y.1
  • 60
    • 80052640510 scopus 로고    scopus 로고
    • EIN2 regulates salt stress response and interacts with a MA3 domain-containing protein ECIP1 in Arabidopsis
    • Lei G., et al. EIN2 regulates salt stress response and interacts with a MA3 domain-containing protein ECIP1 in Arabidopsis. Plant Cell Environ. 2011, 34:1678-1692.
    • (2011) Plant Cell Environ. , vol.34 , pp. 1678-1692
    • Lei, G.1
  • 61
    • 84903599839 scopus 로고    scopus 로고
    • The ethylene receptors ETHYLENE RESPONSE1 and ETHYLENE RESPONSE2 have contrasting roles in seed germination of Arabidopsis during salt stress
    • Wilson R.L., et al. The ethylene receptors ETHYLENE RESPONSE1 and ETHYLENE RESPONSE2 have contrasting roles in seed germination of Arabidopsis during salt stress. Plant Physiol. 2014, 165:1353-1366.
    • (2014) Plant Physiol. , vol.165 , pp. 1353-1366
    • Wilson, R.L.1
  • 62
    • 33744975853 scopus 로고    scopus 로고
    • Expression of tobacco ethylene receptor NTHK1 alters plant responses to salt stress
    • Cao W.H., et al. Expression of tobacco ethylene receptor NTHK1 alters plant responses to salt stress. Plant Cell Environ. 2006, 29:210-219.
    • (2006) Plant Cell Environ. , vol.29 , pp. 210-219
    • Cao, W.H.1
  • 63
    • 30344470484 scopus 로고    scopus 로고
    • Integration of plant responses to environmentally activated phytohormonal signals
    • Achard P., et al. Integration of plant responses to environmentally activated phytohormonal signals. Science 2006, 311:91-94.
    • (2006) Science , vol.311 , pp. 91-94
    • Achard, P.1
  • 64
    • 0347911970 scopus 로고    scopus 로고
    • Plant responses to ethylene gas are mediated by SCF(EBF1/EBF2)-dependent proteolysis of EIN3 transcription factor
    • Guo H., Ecker J.R. Plant responses to ethylene gas are mediated by SCF(EBF1/EBF2)-dependent proteolysis of EIN3 transcription factor. Cell 2003, 115:667-677.
    • (2003) Cell , vol.115 , pp. 667-677
    • Guo, H.1    Ecker, J.R.2
  • 65
    • 84908316747 scopus 로고    scopus 로고
    • Salt-induced stabilization of EIN3/EIL1 confers salinity tolerance by deterring ROS accumulation in Arabidopsis
    • Peng J., et al. Salt-induced stabilization of EIN3/EIL1 confers salinity tolerance by deterring ROS accumulation in Arabidopsis. PLoS Genet. 2014, 10:e1004664.
    • (2014) PLoS Genet. , vol.10 , pp. e1004664
    • Peng, J.1
  • 66
    • 84879713263 scopus 로고    scopus 로고
    • The Arabidopsis ETHYLENE RESPONSE FACTOR1 regulates abiotic stress-responsive gene expression by binding to different cis-acting elements in response to different stress signals
    • Cheng M.C., et al. The Arabidopsis ETHYLENE RESPONSE FACTOR1 regulates abiotic stress-responsive gene expression by binding to different cis-acting elements in response to different stress signals. Plant Physiol. 2013, 162:1566-1582.
    • (2013) Plant Physiol. , vol.162 , pp. 1566-1582
    • Cheng, M.C.1
  • 67
    • 0032417391 scopus 로고    scopus 로고
    • Nuclear events in ethylene signaling: a transcriptional cascade mediated by ETHYLENE-INSENSITIVE3 and ETHYLENE-RESPONSE-FACTOR1
    • Solano R., et al. Nuclear events in ethylene signaling: a transcriptional cascade mediated by ETHYLENE-INSENSITIVE3 and ETHYLENE-RESPONSE-FACTOR1. Genes Dev. 1998, 12:3703-3714.
    • (1998) Genes Dev. , vol.12 , pp. 3703-3714
    • Solano, R.1
  • 68
    • 80053609129 scopus 로고    scopus 로고
    • An AP2 domain-containing gene, ESE1, targeted by the ethylene signaling component EIN3 is important for the salt response in Arabidopsis
    • Zhang L., et al. An AP2 domain-containing gene, ESE1, targeted by the ethylene signaling component EIN3 is important for the salt response in Arabidopsis. Plant Physiol. 2011, 157:854-865.
    • (2011) Plant Physiol. , vol.157 , pp. 854-865
    • Zhang, L.1
  • 69
    • 33748333122 scopus 로고    scopus 로고
    • Ethylene-induced stomatal closure in Arabidopsis occurs via AtrbohF-mediated hydrogen peroxide synthesis
    • Desikan R., et al. Ethylene-induced stomatal closure in Arabidopsis occurs via AtrbohF-mediated hydrogen peroxide synthesis. Plant J. 2006, 47:907-916.
    • (2006) Plant J. , vol.47 , pp. 907-916
    • Desikan, R.1
  • 70
    • 33644672396 scopus 로고    scopus 로고
    • Ethylene inhibits abscisic acid-induced stomatal closure in Arabidopsis
    • Tanaka Y., et al. Ethylene inhibits abscisic acid-induced stomatal closure in Arabidopsis. Plant Physiol. 2005, 138:2337-2343.
    • (2005) Plant Physiol. , vol.138 , pp. 2337-2343
    • Tanaka, Y.1
  • 71
    • 60449106501 scopus 로고    scopus 로고
    • Hormone interactions in stomatal function
    • Acharya B.R., Assmann S.M. Hormone interactions in stomatal function. Plant Mol. Biol. 2009, 69:451-462.
    • (2009) Plant Mol. Biol. , vol.69 , pp. 451-462
    • Acharya, B.R.1    Assmann, S.M.2
  • 72
    • 1942437624 scopus 로고    scopus 로고
    • Cytoplasmic alkalization precedes reactive oxygen species production during methyl jasmonate-and abscisic acid-induced stomatal closure
    • Suhita D., et al. Cytoplasmic alkalization precedes reactive oxygen species production during methyl jasmonate-and abscisic acid-induced stomatal closure. Plant Physiol. 2004, 134:1536-1545.
    • (2004) Plant Physiol. , vol.134 , pp. 1536-1545
    • Suhita, D.1
  • 73
    • 34250619110 scopus 로고    scopus 로고
    • The coronatine-insensitive1 mutation reveals the hormonal signaling interaction between abscisic acid and methyl jasmonate in Arabidopsis guard cells. Specific impairment of ion channel activation and second messenger production
    • Munemasa S., et al. The coronatine-insensitive1 mutation reveals the hormonal signaling interaction between abscisic acid and methyl jasmonate in Arabidopsis guard cells. Specific impairment of ion channel activation and second messenger production. Plant Physiol. 2007, 143:1398-1407.
    • (2007) Plant Physiol. , vol.143 , pp. 1398-1407
    • Munemasa, S.1
  • 74
    • 84897639585 scopus 로고    scopus 로고
    • Functional convergence of oxylipin and abscisic acid pathways controls stomatal closure in response to drought
    • Savchenko T., et al. Functional convergence of oxylipin and abscisic acid pathways controls stomatal closure in response to drought. Plant Physiol. 2014, 164:1151-1160.
    • (2014) Plant Physiol. , vol.164 , pp. 1151-1160
    • Savchenko, T.1
  • 75
    • 84875745485 scopus 로고    scopus 로고
    • Lipoxygenase6-dependent oxylipin synthesis in roots is required for abiotic and biotic stress resistance of Arabidopsis
    • Grebner W., et al. Lipoxygenase6-dependent oxylipin synthesis in roots is required for abiotic and biotic stress resistance of Arabidopsis. Plant Physiol. 2013, 161:2159-2170.
    • (2013) Plant Physiol. , vol.161 , pp. 2159-2170
    • Grebner, W.1
  • 76
    • 0036834967 scopus 로고    scopus 로고
    • The Arabidopsis male-sterile mutant dde2-2 is defective in the ALLENE OXIDE SYNTHASE gene encoding one of the key enzymes of the jasmonic acid biosynthesis pathway
    • von Malek B., et al. The Arabidopsis male-sterile mutant dde2-2 is defective in the ALLENE OXIDE SYNTHASE gene encoding one of the key enzymes of the jasmonic acid biosynthesis pathway. Planta 2002, 216:187-192.
    • (2002) Planta , vol.216 , pp. 187-192
    • von Malek, B.1
  • 77
    • 79953326314 scopus 로고    scopus 로고
    • Gene expression analysis of wounding-induced root-to-shoot communication in Arabidopsis thaliana
    • Hasegawa S., et al. Gene expression analysis of wounding-induced root-to-shoot communication in Arabidopsis thaliana. Plant Cell Environ. 2011, 34:705-716.
    • (2011) Plant Cell Environ. , vol.34 , pp. 705-716
    • Hasegawa, S.1
  • 78
    • 84896696301 scopus 로고    scopus 로고
    • Enhancement of root hydraulic conductivity by methyl jasmonate and the role of calcium and abscisic acid in this process
    • Sánchez-Romera B., et al. Enhancement of root hydraulic conductivity by methyl jasmonate and the role of calcium and abscisic acid in this process. Plant Cell Environ. 2014, 37:995-1008.
    • (2014) Plant Cell Environ. , vol.37 , pp. 995-1008
    • Sánchez-Romera, B.1
  • 79
    • 79953020987 scopus 로고    scopus 로고
    • OsbHLH148, a basic helix-loop-helix protein, interacts with OsJAZ proteins in a jasmonate signaling pathway leading to drought tolerance in rice
    • Seo J.S., et al. OsbHLH148, a basic helix-loop-helix protein, interacts with OsJAZ proteins in a jasmonate signaling pathway leading to drought tolerance in rice. Plant J. 2011, 65:907-921.
    • (2011) Plant J. , vol.65 , pp. 907-921
    • Seo, J.S.1
  • 80
    • 84890362315 scopus 로고    scopus 로고
    • Open or close the gate - stomata action under the control of phytohormones in drought stress conditions
    • Daszkowska-Golec A., Szarejko I. Open or close the gate - stomata action under the control of phytohormones in drought stress conditions. Front. Plant Sci. 2013, 4:138.
    • (2013) Front. Plant Sci. , vol.4 , pp. 138
    • Daszkowska-Golec, A.1    Szarejko, I.2
  • 81
    • 84898723275 scopus 로고    scopus 로고
    • Ethylene-induced flavonol accumulation in guard cells suppresses reactive oxygen species and moderates stomatal aperture
    • Watkins J.M., et al. Ethylene-induced flavonol accumulation in guard cells suppresses reactive oxygen species and moderates stomatal aperture. Plant Physiol. 2014, 164:1707-1717.
    • (2014) Plant Physiol. , vol.164 , pp. 1707-1717
    • Watkins, J.M.1
  • 82
    • 84901437180 scopus 로고    scopus 로고
    • A homolog of ETHYLENE OVERPRODUCER, OsETOL1, differentially modulates drought and submergence tolerance in rice
    • Du H., et al. A homolog of ETHYLENE OVERPRODUCER, OsETOL1, differentially modulates drought and submergence tolerance in rice. Plant J. 2014, 78:834-849.
    • (2014) Plant J. , vol.78 , pp. 834-849
    • Du, H.1
  • 83
    • 61649094050 scopus 로고    scopus 로고
    • Jasmonates act with salicylic acid to confer basal thermotolerance in Arabidopsis thaliana
    • Clarke S.M., et al. Jasmonates act with salicylic acid to confer basal thermotolerance in Arabidopsis thaliana. New Phytol. 2009, 182:175-187.
    • (2009) New Phytol. , vol.182 , pp. 175-187
    • Clarke, S.M.1
  • 84
    • 69149109855 scopus 로고    scopus 로고
    • The ethylene response factors SNORKEL1 and SNORKEL2 allow rice to adapt to deep water
    • Hattori Y., et al. The ethylene response factors SNORKEL1 and SNORKEL2 allow rice to adapt to deep water. Nature 2009, 460:1026-1030.
    • (2009) Nature , vol.460 , pp. 1026-1030
    • Hattori, Y.1
  • 85
    • 33747035582 scopus 로고    scopus 로고
    • Sub1A is an ethylene-response-factor-like gene that confers submergence tolerance to rice
    • Xu K., et al. Sub1A is an ethylene-response-factor-like gene that confers submergence tolerance to rice. Nature 2006, 442:705-708.
    • (2006) Nature , vol.442 , pp. 705-708
    • Xu, K.1
  • 86
    • 55949104210 scopus 로고    scopus 로고
    • Submergence tolerance conferred by Sub1A is mediated by SLR1 and SLRL1 restriction of gibberellin responses in rice
    • Fukao T., Bailey-Serres J. Submergence tolerance conferred by Sub1A is mediated by SLR1 and SLRL1 restriction of gibberellin responses in rice. Proc. Natl. Acad. Sci. U.S.A. 2008, 105:16814-18819.
    • (2008) Proc. Natl. Acad. Sci. U.S.A. , vol.105 , pp. 16814-18819
    • Fukao, T.1    Bailey-Serres, J.2
  • 87
    • 79952296705 scopus 로고    scopus 로고
    • The submergence tolerance regulator SUB1A mediates crosstalk between submergence and drought tolerance in rice
    • Fukao T., et al. The submergence tolerance regulator SUB1A mediates crosstalk between submergence and drought tolerance in rice. Plant Cell 2011, 23:412-427.
    • (2011) Plant Cell , vol.23 , pp. 412-427
    • Fukao, T.1
  • 88
    • 79960917261 scopus 로고    scopus 로고
    • Expression of rice SUB1A and SUB1C transcription factors in Arabidopsis uncovers flowering inhibition as a submergence tolerance mechanism
    • Peña-Castro J.M., et al. Expression of rice SUB1A and SUB1C transcription factors in Arabidopsis uncovers flowering inhibition as a submergence tolerance mechanism. Plant J. 2011, 67:434-446.
    • (2011) Plant J. , vol.67 , pp. 434-446
    • Peña-Castro, J.M.1
  • 89
    • 77953210906 scopus 로고    scopus 로고
    • Arabidopsis RAP2.2: an ethylene response transcription factor that is important for hypoxia survival
    • Hinz M., et al. Arabidopsis RAP2.2: an ethylene response transcription factor that is important for hypoxia survival. Plant Physiol. 2010, 153:757-772.
    • (2010) Plant Physiol. , vol.153 , pp. 757-772
    • Hinz, M.1
  • 90
    • 79956045782 scopus 로고    scopus 로고
    • The AP2/ERF transcription factor AtERF73/HRE1 modulates ET responses during hypoxia in Arabidopsis
    • Yang C.Y., et al. The AP2/ERF transcription factor AtERF73/HRE1 modulates ET responses during hypoxia in Arabidopsis. Plant Physiol. 2011, 156:202-212.
    • (2011) Plant Physiol. , vol.156 , pp. 202-212
    • Yang, C.Y.1
  • 91
    • 77951988135 scopus 로고    scopus 로고
    • HRE1 and HRE2, two hypoxia-inducible ethylene response factors, affect anaerobic responses in Arabidopsis thaliana
    • Licausi F., et al. HRE1 and HRE2, two hypoxia-inducible ethylene response factors, affect anaerobic responses in Arabidopsis thaliana. Plant J. 2010, 62:302-315.
    • (2010) Plant J. , vol.62 , pp. 302-315
    • Licausi, F.1
  • 92
    • 48949120192 scopus 로고    scopus 로고
    • Cooperative ethylene and jasmonic acid signaling regulates selenite resistance in Arabidopsis
    • Tamaoki M., et al. Cooperative ethylene and jasmonic acid signaling regulates selenite resistance in Arabidopsis. Plant Physiol. 2008, 146:1219-1230.
    • (2008) Plant Physiol. , vol.146 , pp. 1219-1230
    • Tamaoki, M.1
  • 93
    • 3142649553 scopus 로고    scopus 로고
    • Mutual antagonism of ethylene and jasmonic acid regulates ozone-induced spreading cell death in Arabidopsis
    • Tuominen H., et al. Mutual antagonism of ethylene and jasmonic acid regulates ozone-induced spreading cell death in Arabidopsis. Plant J. 2004, 39:59-69.
    • (2004) Plant J. , vol.39 , pp. 59-69
    • Tuominen, H.1
  • 94
    • 84904195828 scopus 로고    scopus 로고
    • Arabidopsis mutants affecting oxylipin signaling in photo-oxidative stress responses
    • Satoh M., et al. Arabidopsis mutants affecting oxylipin signaling in photo-oxidative stress responses. Plant Physiol. Biochem. 2013, 81:90-95.
    • (2013) Plant Physiol. Biochem. , vol.81 , pp. 90-95
    • Satoh, M.1
  • 95
    • 77955380316 scopus 로고    scopus 로고
    • Potassium deficiency induces the biosynthesis of oxylipins and glucosinolates in Arabidopsis thaliana
    • Troufflard S., et al. Potassium deficiency induces the biosynthesis of oxylipins and glucosinolates in Arabidopsis thaliana. BMC Plant Biol. 2010, 10:172.
    • (2010) BMC Plant Biol. , vol.10 , pp. 172
    • Troufflard, S.1
  • 96
    • 84884967278 scopus 로고    scopus 로고
    • Current understanding on ethylene signaling in plants: the influence of nutrient availability
    • Iqbal N., et al. Current understanding on ethylene signaling in plants: the influence of nutrient availability. Plant Physiol. Biochem. 2013, 73:128-138.
    • (2013) Plant Physiol. Biochem. , vol.73 , pp. 128-138
    • Iqbal, N.1
  • 97
    • 61349190924 scopus 로고    scopus 로고
    • The Arabidopsis ethylene-Insensitive 2 gene is required for lead resistance
    • Cao S., et al. The Arabidopsis ethylene-Insensitive 2 gene is required for lead resistance. Plant Physiol. Biochem. 2009, 47:308-312.
    • (2009) Plant Physiol. Biochem. , vol.47 , pp. 308-312
    • Cao, S.1
  • 98
    • 84895929144 scopus 로고    scopus 로고
    • Arabidopsis Mediator subunit MED16 regulates iron homeostasis by associating with EIN3/EIL1 through subunit MED25
    • Yang Y., et al. Arabidopsis Mediator subunit MED16 regulates iron homeostasis by associating with EIN3/EIL1 through subunit MED25. Plant J. 2014, 77:838-851.
    • (2014) Plant J. , vol.77 , pp. 838-851
    • Yang, Y.1
  • 99
    • 84888287788 scopus 로고    scopus 로고
    • Elevated CO2 decreases the response of the ethylene signaling pathway in Medicago truncatula and increases the abundance of the pea aphid
    • Guo H., et al. Elevated CO2 decreases the response of the ethylene signaling pathway in Medicago truncatula and increases the abundance of the pea aphid. New Phytol. 2014, 201:279-291.
    • (2014) New Phytol. , vol.201 , pp. 279-291
    • Guo, H.1
  • 100
    • 84879835912 scopus 로고    scopus 로고
    • Elevated CO2 increases the abundance of the peach aphid on Arabidopsis by reducing jasmonic acid defenses
    • Sun Y., et al. Elevated CO2 increases the abundance of the peach aphid on Arabidopsis by reducing jasmonic acid defenses. Plant Sci. 2013, 210:128-140.
    • (2013) Plant Sci. , vol.210 , pp. 128-140
    • Sun, Y.1
  • 101
    • 79956358507 scopus 로고    scopus 로고
    • 2 influences nematode-induced defense responses of tomato genotypes differing in the JA pathway
    • 2 influences nematode-induced defense responses of tomato genotypes differing in the JA pathway. PLoS ONE 2011, 6:e19751.
    • (2011) PLoS ONE , vol.6 , pp. e19751
    • Sun, Y.1
  • 102
    • 77953205265 scopus 로고    scopus 로고
    • Elevated CO2 changes the interactions between nematode and tomato genotypes differing in the JA pathway
    • Sun Y., et al. Elevated CO2 changes the interactions between nematode and tomato genotypes differing in the JA pathway. Plant Cell Environ. 2010, 33:729-739.
    • (2010) Plant Cell Environ. , vol.33 , pp. 729-739
    • Sun, Y.1
  • 103
    • 84903536904 scopus 로고    scopus 로고
    • An Arabidopsis mutant impaired in intracellular calcium elevation is sensitive to biotic and abiotic stress
    • Michal-Johnson J., et al. An Arabidopsis mutant impaired in intracellular calcium elevation is sensitive to biotic and abiotic stress. BMC Plant Biol. 2014, 14:162.
    • (2014) BMC Plant Biol. , vol.14 , pp. 162
    • Michal-Johnson, J.1
  • 104
    • 84913555608 scopus 로고    scopus 로고
    • Molecular basis for jasmonate and ethylene signal interactions in Arabidopsis
    • Zhu Z. Molecular basis for jasmonate and ethylene signal interactions in Arabidopsis. J. Exp. Bot. 2014, 65:5743-5748.
    • (2014) J. Exp. Bot. , vol.65 , pp. 5743-5748
    • Zhu, Z.1
  • 105
    • 79961036664 scopus 로고    scopus 로고
    • Derepression of ethylene-stabilized transcription factors (EIN3/EIL1) mediates jasmonate and ethylene signaling synergy in Arabidopsis
    • Zhu Z., et al. Derepression of ethylene-stabilized transcription factors (EIN3/EIL1) mediates jasmonate and ethylene signaling synergy in Arabidopsis. Proc. Natl. Acad. Sci. U.S.A. 2011, 108:12539-12544.
    • (2011) Proc. Natl. Acad. Sci. U.S.A. , vol.108 , pp. 12539-12544
    • Zhu, Z.1
  • 106
    • 78449274516 scopus 로고    scopus 로고
    • Role of histone deacetylases HDA6 and HDA19 in ABA and abiotic stress response
    • Chen L.T., Wu K. Role of histone deacetylases HDA6 and HDA19 in ABA and abiotic stress response. Plant Signal. Behav. 2010, 5:1318-1320.
    • (2010) Plant Signal. Behav. , vol.5 , pp. 1318-1320
    • Chen, L.T.1    Wu, K.2
  • 107
    • 84863746350 scopus 로고    scopus 로고
    • Expression of an alfalfa (Medicago sativa L.) ethylene response factor gene MsERF8 in tobacco plants enhances resistance to salinity
    • Chen T.T., et al. Expression of an alfalfa (Medicago sativa L.) ethylene response factor gene MsERF8 in tobacco plants enhances resistance to salinity. Mol. Biol. Rep. 2012, 39:6067-6075.
    • (2012) Mol. Biol. Rep. , vol.39 , pp. 6067-6075
    • Chen, T.T.1
  • 108
    • 84922463424 scopus 로고    scopus 로고
    • Isolation and molecular characterization of ERF1, an ethylene response factor gene from durum wheat (Triticum turgidum L. subsp. durum), potentially involved in salt-stress responses
    • Makhloufi E., et al. Isolation and molecular characterization of ERF1, an ethylene response factor gene from durum wheat (Triticum turgidum L. subsp. durum), potentially involved in salt-stress responses. J. Exp. Bot. 2014, 65:6359-6371.
    • (2014) J. Exp. Bot. , vol.65 , pp. 6359-6371
    • Makhloufi, E.1
  • 109
    • 84855842017 scopus 로고    scopus 로고
    • An ethylene response factor (ERF5) promoting adaptation to drought and salt tolerance in tomato
    • Pan Y., et al. An ethylene response factor (ERF5) promoting adaptation to drought and salt tolerance in tomato. Plant Cell Rep. 2012, 31:349-360.
    • (2012) Plant Cell Rep. , vol.31 , pp. 349-360
    • Pan, Y.1
  • 110
    • 84880943926 scopus 로고    scopus 로고
    • Salt-responsive ERF1 regulates reactive oxygen species-dependent signaling during the initial response to salt stress in rice
    • Schmidt R., et al. Salt-responsive ERF1 regulates reactive oxygen species-dependent signaling during the initial response to salt stress in rice. Plant Cell 2013, 25:2115-2131.
    • (2013) Plant Cell , vol.25 , pp. 2115-2131
    • Schmidt, R.1
  • 111
    • 78049306468 scopus 로고    scopus 로고
    • Overexpression of the ethylene-responsive factor gene BrERF4 from Brassica rapa increases tolerance to salt and drought in Arabidopsis plants
    • Seo Y.J., et al. Overexpression of the ethylene-responsive factor gene BrERF4 from Brassica rapa increases tolerance to salt and drought in Arabidopsis plants. Mol. Cells 2010, 30:271-277.
    • (2010) Mol. Cells , vol.30 , pp. 271-277
    • Seo, Y.J.1
  • 112
    • 84872406241 scopus 로고    scopus 로고
    • Isolation and molecular characterization of GmERF7, a soybean ethylene response factor that increases salt stress tolerance in tobacco
    • Zhai Y., et al. Isolation and molecular characterization of GmERF7, a soybean ethylene response factor that increases salt stress tolerance in tobacco. Gene 2013, 513:174-183.
    • (2013) Gene , vol.513 , pp. 174-183
    • Zhai, Y.1
  • 113
    • 84895067416 scopus 로고    scopus 로고
    • Action of jasmonates in plant stress responses and development - applied aspects
    • Wasternack C. Action of jasmonates in plant stress responses and development - applied aspects. Biotechnol. Adv. 2014, 32:31-39.
    • (2014) Biotechnol. Adv. , vol.32 , pp. 31-39
    • Wasternack, C.1
  • 114
    • 48049100208 scopus 로고    scopus 로고
    • Jasmonate signaling: toward an integrated view
    • Kazan K., Manners J.M. Jasmonate signaling: toward an integrated view. Plant Physiol. 2008, 146:1459-1468.
    • (2008) Plant Physiol. , vol.146 , pp. 1459-1468
    • Kazan, K.1    Manners, J.M.2
  • 115
    • 84878268346 scopus 로고    scopus 로고
    • MYC2: the master in action
    • Kazan K., Manners J.M. MYC2: the master in action. Mol. Plant 2013, 6:686-703.
    • (2013) Mol. Plant , vol.6 , pp. 686-703
    • Kazan, K.1    Manners, J.M.2
  • 116
    • 84877831821 scopus 로고    scopus 로고
    • Jasmonate biosynthesis and signaling in monocots: a comparative overview
    • Lyons R., et al. Jasmonate biosynthesis and signaling in monocots: a comparative overview. Plant Cell Rep. 2013, 32:815-827.
    • (2013) Plant Cell Rep. , vol.32 , pp. 815-827
    • Lyons, R.1
  • 117
    • 84855596136 scopus 로고    scopus 로고
    • JAZ repressors and the orchestration of phytohormone crosstalk
    • Kazan K., Manners J.M. JAZ repressors and the orchestration of phytohormone crosstalk. Trends Plant Sci. 2012, 17:22-31.
    • (2012) Trends Plant Sci. , vol.17 , pp. 22-31
    • Kazan, K.1    Manners, J.M.2
  • 118
    • 84899857140 scopus 로고    scopus 로고
    • BHLH003, bHLH013 and bHLH017 are new targets of JAZ repressors negatively regulating JA responses
    • Fonseca S., et al. bHLH003, bHLH013 and bHLH017 are new targets of JAZ repressors negatively regulating JA responses. PLoS ONE 2014, 9:e86182.
    • (2014) PLoS ONE , vol.9 , pp. e86182
    • Fonseca, S.1
  • 119
    • 84879465560 scopus 로고    scopus 로고
    • A bHLH-type transcription factor, ABA-INDUCIBLE bHLH-TYPE TRANSCRIPTION FACTOR/JA-ASSOCIATED MYC2-LIKE1, acts as a repressor to negatively regulate jasmonate signaling in Arabidopsis
    • Nakata M., et al. A bHLH-type transcription factor, ABA-INDUCIBLE bHLH-TYPE TRANSCRIPTION FACTOR/JA-ASSOCIATED MYC2-LIKE1, acts as a repressor to negatively regulate jasmonate signaling in Arabidopsis. Plant Cell 2013, 25:1641-1656.
    • (2013) Plant Cell , vol.25 , pp. 1641-1656
    • Nakata, M.1
  • 120
    • 84880833488 scopus 로고    scopus 로고
    • The bHLH subgroup IIId factors negatively regulate jasmonate-mediated plant defense and development
    • Song S., et al. The bHLH subgroup IIId factors negatively regulate jasmonate-mediated plant defense and development. PLoS Genet. 2013, 9:e1003653.
    • (2013) PLoS Genet. , vol.9 , pp. e1003653
    • Song, S.1
  • 121
    • 84906088439 scopus 로고    scopus 로고
    • The evolution of ethylene signaling in plant chemical ecology
    • Groen S.C., Whiteman N.K. The evolution of ethylene signaling in plant chemical ecology. J. Chem. Ecol. 2014, 40:700-716.
    • (2014) J. Chem. Ecol. , vol.40 , pp. 700-716
    • Groen, S.C.1    Whiteman, N.K.2
  • 122
    • 0033080482 scopus 로고    scopus 로고
    • Two Arabidopsis mutants that overproduce ethylene are affected in the posttranscriptional regulation of 1-aminocyclopropane-1-carboxylic acid synthase
    • Woeste K.E., et al. Two Arabidopsis mutants that overproduce ethylene are affected in the posttranscriptional regulation of 1-aminocyclopropane-1-carboxylic acid synthase. Plant Physiol. 1999, 119:521-530.
    • (1999) Plant Physiol. , vol.119 , pp. 521-530
    • Woeste, K.E.1
  • 123
    • 2342482400 scopus 로고    scopus 로고
    • Regulation of ethylene gas biosynthesis by the Arabidopsis ETO1 protein
    • Wang K.L., et al. Regulation of ethylene gas biosynthesis by the Arabidopsis ETO1 protein. Nature 2004, 428:945-950.
    • (2004) Nature , vol.428 , pp. 945-950
    • Wang, K.L.1
  • 124
    • 84901024283 scopus 로고    scopus 로고
    • The transcriptional regulatory network in the drought response and its crosstalk in abiotic stress responses including drought, cold, and heat
    • Nakashima K., et al. The transcriptional regulatory network in the drought response and its crosstalk in abiotic stress responses including drought, cold, and heat. Front. Plant Sci. 2014, 5:170.
    • (2014) Front. Plant Sci. , vol.5 , pp. 170
    • Nakashima, K.1
  • 125
    • 84926411347 scopus 로고    scopus 로고
    • Elevated levels of CYP94 family gene expression alleviate the jasmonate response and enhance salt tolerance in rice
    • Published online January 29, 2015.
    • Kurotani K.I., et al. Elevated levels of CYP94 family gene expression alleviate the jasmonate response and enhance salt tolerance in rice. Plant Cell Physiol. 2015, Published online January 29, 2015. http://dx.doi.org/10.1093/pcp/pcv006.
    • (2015) Plant Cell Physiol.
    • Kurotani, K.I.1
  • 126
    • 84929815637 scopus 로고    scopus 로고
    • The pepper lipoxygenase CaLOX1 plays a role in osmotic, drought, and high salinity
    • Published online February 4, 2015.
    • Lim C.W., et al. The pepper lipoxygenase CaLOX1 plays a role in osmotic, drought, and high salinity. Plant Cell Physiol. 2015, Published online February 4, 2015. http://dx.doi.org/10.1093/pcp/pcv020.
    • (2015) Plant Cell Physiol.
    • Lim, C.W.1


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.