-
1
-
-
77956080533
-
Roles of enzymatic and nonenzymatic antioxidants in plants during abiotic stress
-
Ahmad P., Jaleel C. A., Salem M. A., Nabi G. & Sharma S. 2010. Roles of enzymatic and nonenzymatic antioxidants in plants during abiotic stress. Crit. Rev. Biotechnol. 30: 161-175.
-
(2010)
Crit. Rev. Biotechnol.
, vol.30
, pp. 161-175
-
-
Ahmad, P.1
Jaleel, C.A.2
Salem, M.A.3
Nabi, G.4
Sharma, S.5
-
3
-
-
84871527334
-
Hydrogen sulfide alleviates aluminum toxicity in barley seedlings
-
Chen J., Wang W. H., Wu F. H., You C. Y., Liu W. T., Dong X. K., He J. X. & Zheng H. L. 2013. Hydrogen sulfide alleviates aluminum toxicity in barley seedlings. Plant Soil 362: 301-318.
-
(2013)
Plant Soil
, vol.362
, pp. 301-318
-
-
Chen, J.1
Wang, W.H.2
Wu, F.H.3
You, C.Y.4
Liu, W.T.5
Dong, X.K.6
He, J.X.7
Zheng, H.L.8
-
4
-
-
84882977596
-
Hydrogen sulfide induces systemic tolerance to salinity and non-ionic osmotic stress in strawberry plants through modification of reactive species biosynthesis and transcriptional regulation of multiple defence pathways
-
Christou A., Manganaris G. A., Papadopoulos I. & Fotopoulos V. 2013. Hydrogen sulfide induces systemic tolerance to salinity and non-ionic osmotic stress in strawberry plants through modification of reactive species biosynthesis and transcriptional regulation of multiple defence pathways. J. Exp. Bot. 64: 1953-1966.
-
(2013)
J. Exp. Bot.
, vol.64
, pp. 1953-1966
-
-
Christou, A.1
Manganaris, G.A.2
Papadopoulos, I.3
Fotopoulos, V.4
-
5
-
-
84893206208
-
Sodium hydrosulfide induces systemic thermotolerance to strawberry plants through transcriptional regulation of heat shock proteins and aquaporin
-
Christou A., Filippou P., Manganaris G. A. & Fotopoulos V. 2014. Sodium hydrosulfide induces systemic thermotolerance to strawberry plants through transcriptional regulation of heat shock proteins and aquaporin. BMC Plant Biol. 14: 42.
-
(2014)
BMC Plant Biol.
, vol.14
, pp. 42
-
-
Christou, A.1
Filippou, P.2
Manganaris, G.A.3
Fotopoulos, V.4
-
6
-
-
60749136076
-
Redox regulation in photosynthetic organisms: signaling, acclimation, and practical implications
-
Foyer C. H. & Noctor G. 2009. Redox regulation in photosynthetic organisms: signaling, acclimation, and practical implications. Antioxid. Red. Signal. 11: 861-905.
-
(2009)
Antioxid. Red. Signal.
, vol.11
, pp. 861-905
-
-
Foyer, C.H.1
Noctor, G.2
-
7
-
-
78650988662
-
Ascorbate and glutathione: The heart of the redox hub
-
Foyer C. H. & Noctor G. 2011. Ascorbate and glutathione: The heart of the redox hub. Plant Physiol. 155: 2-18.
-
(2011)
Plant Physiol.
, vol.155
, pp. 2-18
-
-
Foyer, C.H.1
Noctor, G.2
-
8
-
-
84892377895
-
Hydrogen sulfide is involved in the chilling stress response in Vitis vinifera L
-
Fu P. N., Wang W. J., Hou L. X. & Liu X. 2013. Hydrogen sulfide is involved in the chilling stress response in Vitis vinifera L. Acta Soc. Bot. Pol. 82: 295-302.
-
(2013)
Acta Soc. Bot. Pol.
, vol.82
, pp. 295-302
-
-
Fu, P.N.1
Wang, W.J.2
Hou, L.X.3
Liu, X.4
-
9
-
-
84871596563
-
Gasotransmitters are emerging as new guard cell signaling molecules and regulators of leaf gas exchange
-
García-Mata C. & Lamattina L. 2013. Gasotransmitters are emerging as new guard cell signaling molecules and regulators of leaf gas exchange. Plant Sci. 201/202: 66-73.
-
(2013)
Plant Sci.
, vol.201-202
, pp. 66-73
-
-
García-Mata, C.1
Lamattina, L.2
-
10
-
-
84875056438
-
Response of antioxidant enzymes, phytochelatins and glutathione production towards Cd and Zn stresses in Cajanus cajan (L.) millsp. genotypes colonized by arbuscular mycorrhizal fungi
-
Garg N. & Kaur H. 2013. Response of antioxidant enzymes, phytochelatins and glutathione production towards Cd and Zn stresses in Cajanus cajan (L.) millsp. genotypes colonized by arbuscular mycorrhizal fungi. J. Agron. Crop. Sci. 199: 118-133.
-
(2013)
J. Agron. Crop. Sci.
, vol.199
, pp. 118-133
-
-
Garg, N.1
Kaur, H.2
-
11
-
-
84874420518
-
Generating high temperature tolerant transgenic plants: Achievements and challenges
-
Grover A., Mittal D., Negi M. & Lavania D. 2013. Generating high temperature tolerant transgenic plants: Achievements and challenges. Plant Sci. 205/206: 38-47.
-
(2013)
Plant Sci.
, vol.205-206
, pp. 38-47
-
-
Grover, A.1
Mittal, D.2
Negi, M.3
Lavania, D.4
-
12
-
-
80052513516
-
Hydrogen sulphide and signalling in plants
-
Hancock J. T., Lisjak M., Teklic T., Wilson I. D. & Whiteman M. 2011. Hydrogen sulphide and signalling in plants. CAB Rev.: Perspect. Agric. Vet. Sci. Nutr. Nat. Resour. 6: 1-7.
-
(2011)
CAB Rev.: Perspect. Agric. Vet. Sci. Nutr. Nat. Resour.
, vol.6
, pp. 1-7
-
-
Hancock, J.T.1
Lisjak, M.2
Teklic, T.3
Wilson, I.D.4
Whiteman, M.5
-
13
-
-
84895736809
-
Hydrogen sulfide and cell signaling: Team player or referee?
-
Hancock J. T. & Whiteman M. 2014. Hydrogen sulfide and cell signaling: Team player or referee? Plant Physiol. and Biochem. 78: 37-42.
-
(2014)
Plant Physiol. And Biochem.
, vol.78
, pp. 37-42
-
-
Hancock, J.T.1
Whiteman, M.2
-
14
-
-
64949202504
-
Antioxidant defense responses: physiological plasticity in higher plants under abiotic constraints
-
Jaleel C. A., Riadhm K., Gopi R., Manivannan P., Ines J., Al-Juburi H. J., Zhao C. X., Shao H. B. & Panneerselvam R. 2009. Antioxidant defense responses: physiological plasticity in higher plants under abiotic constraints. Acta Physiol. Plant. 31: 427-436.
-
(2009)
Acta Physiol. Plant.
, vol.31
, pp. 427-436
-
-
Jaleel, C.A.1
Riadhm, K.2
Gopi, R.3
Manivannan, P.4
Ines, J.5
Al-Juburi, H.J.6
Zhao, C.X.7
Shao, H.B.8
Panneerselvam, R.9
-
15
-
-
84869879675
-
Hydrogen sulfide interacting with abscisic acid in stomatal regulation responses to drought stress in Arabidopsis
-
Jin Z. P., Xue S. W., Luo Y. N., Fang B. H., Tian H. H., Li H. & Pei Y. X. 2013. Hydrogen sulfide interacting with abscisic acid in stomatal regulation responses to drought stress in Arabidopsis. Plant Physiol. Biochem. 62: 41-46.
-
(2013)
Plant Physiol. Biochem.
, vol.62
, pp. 41-46
-
-
Jin, Z.P.1
Xue, S.W.2
Luo, Y.N.3
Fang, B.H.4
Tian, H.H.5
Li, H.6
Pei, Y.X.7
-
16
-
-
63949083064
-
Chilling stress in maize seedlings
-
J. L. Bennetzen and S. C. Hake (Eds.), New York: Springer
-
Leipner J. & Stamp P. 2009. Chilling stress in maize seedlings, pp. 291-344. In: Bennetzen J. L. & Hake S. C. (eds), Handbook of maize: Its biology. Springer, New York.
-
(2009)
Handbook of Maize: Its Biology
, pp. 291-344
-
-
Leipner, J.1
Stamp, P.2
-
18
-
-
84885675032
-
Hydrogen sulfide: a multifunctional gaseous molecule in plants
-
Li Z. G. 2013. Hydrogen sulfide: a multifunctional gaseous molecule in plants. Russ. J. Plant Physiol. 6: 733-740.
-
(2013)
Russ. J. Plant Physiol.
, vol.6
, pp. 733-740
-
-
Li, Z.G.1
-
19
-
-
84876318954
-
Hydrogen sulfide donor sodium hydrosulfide-improved heat tolerance in maize and involvement of proline
-
Li Z. G., Ding X. J. & Du P. F. 2013a. Hydrogen sulfide donor sodium hydrosulfide-improved heat tolerance in maize and involvement of proline. J. Plant Physiol. 170: 741-747.
-
(2013)
J. Plant Physiol.
, vol.170
, pp. 741-747
-
-
Li, Z.G.1
Ding, X.J.2
Du, P.F.3
-
20
-
-
80053982084
-
Mechanical stimulation-induced crossadaptation in plants: An overview
-
Li Z. G. & Gong M. 2011. Mechanical stimulation-induced crossadaptation in plants: An overview. J. Plant Biol. 54: 358-364.
-
(2011)
J. Plant Biol.
, vol.54
, pp. 358-364
-
-
Li, Z.G.1
Gong, M.2
-
23
-
-
84898420030
-
Involvement of trehalose in hydrogen sulfide donor sodium hydrosulfide-induced the acquisition of heat tolerance in maize (Zea mays L.) seedlings
-
Li Z. G., Luo L. J. & Zhu L. P. 2014. Involvement of trehalose in hydrogen sulfide donor sodium hydrosulfide-induced the acquisition of heat tolerance in maize (Zea mays L.) seedlings. Bot. Stud. 55: 20.
-
(2014)
Bot. Stud.
, vol.55
, pp. 20
-
-
Li, Z.G.1
Luo, L.J.2
Zhu, L.P.3
-
24
-
-
84880044927
-
Hydrogen sulfide may be a novel downstream signal molecule in nitric oxide-induced heat tolerance of maize (Zea mays L.) seedlings
-
Li Z. G., Yang S. Z., Long W. B., Yang G. X. & Shen Z. Z. 2013b. Hydrogen sulfide may be a novel downstream signal molecule in nitric oxide-induced heat tolerance of maize (Zea mays L.) seedlings. Plant Cell Environ. 36: 1564-1572.
-
(2013)
Plant Cell Environ.
, vol.36
, pp. 1564-1572
-
-
Li, Z.G.1
Yang, S.Z.2
Long, W.B.3
Yang, G.X.4
Shen, Z.Z.5
-
25
-
-
84879240172
-
Combined action of antioxidant defense system and osmolytes in chilling shock-induced chilling tolerance in Jatropha curcas seedlings
-
Li Z. G., Yuan L. X., Wang Q. L., Ding Z. L. & Dong C. Y. 2013b. Combined action of antioxidant defense system and osmolytes in chilling shock-induced chilling tolerance in Jatropha curcas seedlings. Acta Physiol. Plant. 35: 2127-2136.
-
(2013)
Acta Physiol. Plant.
, vol.35
, pp. 2127-2136
-
-
Li, Z.G.1
Yuan, L.X.2
Wang, Q.L.3
Ding, Z.L.4
Dong, C.Y.5
-
26
-
-
78049477094
-
A novel hydrogen sulfide donor causes stomatal opening and reduces nitric oxide accumulation
-
Lisjak M., Srivastava N., Teklic T., Cival L., Lewandowski K., Wilson I., Wood M. E., Whiteman M. & Hancock J. T. 2010. A novel hydrogen sulfide donor causes stomatal opening and reduces nitric oxide accumulation. Plant Physiol. Biochem. 48: 931-935.
-
(2010)
Plant Physiol. Biochem.
, vol.48
, pp. 931-935
-
-
Lisjak, M.1
Srivastava, N.2
Teklic, T.3
Cival, L.4
Lewandowski, K.5
Wilson, I.6
Wood, M.E.7
Whiteman, M.8
Hancock, J.T.9
-
27
-
-
84881311475
-
Hydrogen sulfide: Environmental factor or signalling molecule?
-
Lisjak M., Teklic T., Wilson I. D., Whiteman M., Hancock J. T. 2013 Hydrogen sulfide: Environmental factor or signalling molecule? Plant Cell Environ. 36: 1607-1616.
-
(2013)
Plant Cell Environ.
, vol.36
, pp. 1607-1616
-
-
Lisjak, M.1
Teklic, T.2
Wilson, I.D.3
Whiteman, M.4
Hancock, J.T.5
-
28
-
-
80355137016
-
Hydrogen sulfide induced by nitric oxide mediates ethylene-induced stomatal closure of Arabidopsis thaliana
-
Liu J., Hou L., Liu G., Liu X. & Wang X. 2011. Hydrogen sulfide induced by nitric oxide mediates ethylene-induced stomatal closure of Arabidopsis thaliana. Chin. Sci. Bull. 56: 3547-3553.
-
(2011)
Chin. Sci. Bull.
, vol.56
, pp. 3547-3553
-
-
Liu, J.1
Hou, L.2
Liu, G.3
Liu, X.4
Wang, X.5
-
30
-
-
84875090152
-
Nitric oxide and reactive oxygen species regulate the accumulation of heat shock proteins in tomato leaves in response to heat shock and pathogen infection
-
Piterková J., Luhová L., Mieslerová B., Lebeda A. & Petřivalský M. 2013. Nitric oxide and reactive oxygen species regulate the accumulation of heat shock proteins in tomato leaves in response to heat shock and pathogen infection. Plant Sci. 207: 57-65.
-
(2013)
Plant Sci.
, vol.207
, pp. 57-65
-
-
Piterková, J.1
Luhová, L.2
Mieslerová, B.3
Lebeda, A.4
Petřivalský, M.5
-
31
-
-
79954572267
-
Heat perception and signalling in plants: a tortuous path to thermotolerance
-
Saidi Y., Finka A. & Goloubinoff P. 2011. Heat perception and signalling in plants: a tortuous path to thermotolerance. New Phytol. 190: 556-565.
-
(2011)
New Phytol.
, vol.190
, pp. 556-565
-
-
Saidi, Y.1
Finka, A.2
Goloubinoff, P.3
-
32
-
-
84855358670
-
Reduction-oxidation network for flexible adjustment of cellular metabolism in photoautotrophic cells
-
Scheibe R. & Dietz K. J. 2012. Reduction-oxidation network for flexible adjustment of cellular metabolism in photoautotrophic cells. Plant Cell Environ. 35: 202-216.
-
(2012)
Plant Cell Environ.
, vol.35
, pp. 202-216
-
-
Scheibe, R.1
Dietz, K.J.2
-
33
-
-
80054111621
-
Effects of exogenous hydrogen sulfide on the ascorbate and glutathione metabolism in wheat seedlings leaves under water stress
-
Shan C. J., Zhang S. L., Li D. F., Zhao Y. Z., Tian X. L., Zhao X. L., Wu Y. X., Wei X. Y. & Liu R. Q. 2011 Effects of exogenous hydrogen sulfide on the ascorbate and glutathione metabolism in wheat seedlings leaves under water stress. Acta Physiol. Plant. 33: 2533-2540.
-
(2011)
Acta Physiol. Plant.
, vol.33
, pp. 2533-2540
-
-
Shan, C.J.1
Zhang, S.L.2
Li, D.F.3
Zhao, Y.Z.4
Tian, X.L.5
Zhao, X.L.6
Wu, Y.X.7
Wei, X.Y.8
Liu, R.Q.9
-
34
-
-
84883014622
-
Exogenous application of hydrogen sulfide donor sodium hydrosulfide enhanced multiple abiotic stress tolerance in bermudagrass (Cynodon dactylon (L). Pers.)
-
Shi H., Ye T., Chan Z. 2013. Exogenous application of hydrogen sulfide donor sodium hydrosulfide enhanced multiple abiotic stress tolerance in bermudagrass (Cynodon dactylon (L). Pers.). Plant Physiol. Biochem. 71: 226-234.
-
(2013)
Plant Physiol. Biochem.
, vol.71
, pp. 226-234
-
-
Shi, H.1
Ye, T.2
Chan, Z.3
-
35
-
-
70949086211
-
-
Strable J. & Scanlon M. J. 2009. Maize (Zea mays): A model organism for basic and applied research in plant biology. Cold spring harbor protocols 2009(10): pdb. emo132.
-
(2009)
Cold Spring Harbor Protocols
, vol.2009
, Issue.10
-
-
-
36
-
-
84860154677
-
The ascorbateglutathione-α-tocopherol triad in abiotic stress response
-
Szarka A., Tomasskovics B. & Bánhegyi G. 2012. The ascorbateglutathione-α-tocopherol triad in abiotic stress response. Inter. J. Mol. Sci. 13: 4458-4483.
-
(2012)
Inter. J. Mol. Sci.
, vol.13
, pp. 4458-4483
-
-
Szarka, A.1
Tomasskovics, B.2
Bánhegyi, G.3
-
39
-
-
84860117196
-
Physiological implications of hydrogen sulfide: a whiff exploration that blossomed
-
Wang R. 2012. Physiological implications of hydrogen sulfide: a whiff exploration that blossomed. Physiol. Rev. 92: 791-896.
-
(2012)
Physiol. Rev.
, vol.92
, pp. 791-896
-
-
Wang, R.1
-
40
-
-
77952546625
-
Boron toxicity is alleviated by hydrogen sulWde in cucumber (Cucumis sativus L.) seedlings
-
Wang B. L., Shi L., Li Y. X. & Zhang W. H. 2010. Boron toxicity is alleviated by hydrogen sulWde in cucumber (Cucumis sativus L.) seedlings. Planta 231: 1301-1309.
-
(2010)
Planta
, vol.231
, pp. 1301-1309
-
-
Wang, B.L.1
Shi, L.2
Li, Y.X.3
Zhang, W.H.4
-
41
-
-
84856426570
-
Hydrogen sulfide enhances alfalfa (Medicago sativa) tolerance against salinity during seed germination by nitric oxide pathway
-
Wang Y. Q., Li L., Cui W. T., Xu S., Shen W. B. & Wang R. 2012. Hydrogen sulfide enhances alfalfa (Medicago sativa) tolerance against salinity during seed germination by nitric oxide pathway. Plant Soil 351: 107-119.
-
(2012)
Plant Soil
, vol.351
, pp. 107-119
-
-
Wang, Y.Q.1
Li, L.2
Cui, W.T.3
Xu, S.4
Shen, W.B.5
Wang, R.6
-
42
-
-
84898406114
-
Hydrogen sulfide donor sodium hydrosulfide pretreatment improved multiple resistance abilities of wheat to high temperature and drought stress
-
Wu D. H., Li Y. L., Xia X., Pu Z. P., Liao J. M., Huang K. & Li Z. G. 2013. Hydrogen sulfide donor sodium hydrosulfide pretreatment improved multiple resistance abilities of wheat to high temperature and drought stress. J. Yunnan. Norm. Univ. Nat. Sci. 33: 29-35.
-
(2013)
J. Yunnan. Norm. Univ. Nat. Sci.
, vol.33
, pp. 29-35
-
-
Wu, D.H.1
Li, Y.L.2
Xia, X.3
Pu, Z.P.4
Liao, J.M.5
Huang, K.6
Li, Z.G.7
-
43
-
-
84864835501
-
2+ signature and OsCaM1-1 nuclear localization mediate downstream signalling in acquisition of thermotolerance in rice (Oryza sativa L.)
-
2+ signature and OsCaM1-1 nuclear localization mediate downstream signalling in acquisition of thermotolerance in rice (Oryza sativa L.). Plant Cell Environ. 35: 1543-1557.
-
(2012)
Plant Cell Environ.
, vol.35
, pp. 1543-1557
-
-
Wu, H.C.1
Luo, D.L.2
Vignols, F.3
Jinn, T.L.4
-
44
-
-
57049099871
-
Hydrogen sulfide promotes wheat seed germination and alleviates oxidative damage against copper stress
-
Zhang H., Hu L. Y., Hu K. D., He Y. D., Wang S. H. & Luo J. P. 2008 Hydrogen sulfide promotes wheat seed germination and alleviates oxidative damage against copper stress. J. Integr. Plant Biol. 50: 1518-1529.
-
(2008)
J. Integr. Plant Biol.
, vol.50
, pp. 1518-1529
-
-
Zhang, H.1
Hu, L.Y.2
Hu, K.D.3
He, Y.D.4
Wang, S.H.5
Luo, J.P.6
-
45
-
-
77957152381
-
Hydrogen sulfide alleviated chromium toxicity in wheat
-
Zhang H., Hu LY., Li P., Hu K. D., Jiang C. X. & Luo J. P. 2010a. Hydrogen sulfide alleviated chromium toxicity in wheat. Biol. Plant. 54: 743-747.
-
(2010)
Biol. Plant.
, vol.54
, pp. 743-747
-
-
Zhang, H.1
Hu, L.Y.2
Li, P.3
Hu, K.D.4
Jiang, C.X.5
Luo, J.P.6
-
46
-
-
79952488094
-
Hydrogen sulfide acts as a regulator of flower senescence in plants
-
Zhang H., Hua S. L., Zhang Z. J., Hua L. Y., Jiang C. X., Wei Z. J., Liu J., Wang H. L. & Jiang S. T. 2011 Hydrogen sulfide acts as a regulator of flower senescence in plants. Postharv. Biol. Technol. 60: 251-257.
-
(2011)
Postharv. Biol. Technol.
, vol.60
, pp. 251-257
-
-
Zhang, H.1
Hua, S.L.2
Zhang, Z.J.3
Hua, L.Y.4
Jiang, C.X.5
Wei, Z.J.6
Liu, J.7
Wang, H.L.8
Jiang, S.T.9
-
47
-
-
77349098538
-
Hydrogen sulfide promotes root organogenesis in Ipomoea batatas, Salix matsudana and Glycine max
-
Zhang H., Tang J., Liu X. P., Wang Y., Yu W., Peng W. P., Fang F., Ma D. F., Wei Z. J. & Hu L. Y. 2009a. Hydrogen sulfide promotes root organogenesis in Ipomoea batatas, Salix matsudana and Glycine max. J. Integr. Plant Biol. 51: 1084-1092.
-
(2009)
J. Integr. Plant Biol.
, vol.51
, pp. 1084-1092
-
-
Zhang, H.1
Tang, J.2
Liu, X.P.3
Wang, Y.4
Yu, W.5
Peng, W.P.6
Fang, F.7
Ma, D.F.8
Wei, Z.J.9
Hu, L.Y.10
-
48
-
-
77954409457
-
Hydrogen sulfide promotes wheat seed germination under osmotic stress
-
Zhang H., Wang M. F., Hua L. Y., Wang S. H., Hua K. D., Bao L. J. & Luo J. P. 2010b. Hydrogen sulfide promotes wheat seed germination under osmotic stress. Russ. J. Plant Physiol. 57: 532-539.
-
(2010)
Russ. J. Plant Physiol.
, vol.57
, pp. 532-539
-
-
Zhang, H.1
Wang, M.F.2
Hua, L.Y.3
Wang, S.H.4
Hua, K.D.5
Bao, L.J.6
Luo, J.P.7
-
49
-
-
67849104622
-
Hydrogen sulfide counteracts chlorophyll loss in sweet potato seedling leaves and alleviates oxidative damage against osmotic stress
-
Zhang H., Ye Y. K., Wang S. H., Luo J. P., Tang J. & Ma D. F. 2009b. Hydrogen sulfide counteracts chlorophyll loss in sweet potato seedling leaves and alleviates oxidative damage against osmotic stress. Plant Growth Regul. 58: 243-250.
-
(2009)
Plant Growth Regul.
, vol.58
, pp. 243-250
-
-
Zhang, H.1
Ye, Y.K.2
Wang, S.H.3
Luo, J.P.4
Tang, J.5
Ma, D.F.6
|