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Phytohormones and plant responses to salinity stress: a review
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  • 作者:Shah Fahad (1)
    Saddam Hussain (1)
    Amar Matloob (2)
    Faheem Ahmed Khan (3)
    Abdul Khaliq (2)
    Shah Saud (4)
    Shah Hassan (5)
    Darakh Shan (6)
    Fahad Khan (1)
    Najeeb Ullah (7)
    Muhammad Faiq (8)
    Muhammad Rafiullah Khan (8)
    Afrasiab Khan Tareen (8)
    Aziz Khan (1)
    Abid Ullah (1)
    Nasr Ullah (9)
    Jianliang Huang (1)

    1. National Key Laboratory of Crop Genetic Improvement
    ; MOA Key Laboratory of Crop Ecophysiology and Farming System in the Middle Reaches of the Yangtze River ; College of Plant Science and Technology ; Huazhong Agricultural University ; Wuhan ; 430070 ; Hubei ; China
    2. Department of Agronomy
    ; University of Agriculture ; Faisalabad ; Punjab ; 38040 ; Pakistan
    3. Key Laboratory of Agricultural Animal Genetics
    ; Breeding and Reproduction ; Huazhong Agricultural University ; Wuhan ; 430070 ; Hubei ; China
    4. Department of Horticultural
    ; Northeast Agricultural University ; Harbin ; 150030 ; China
    5. Khyber Pakhtunkhwa Agricultural University
    ; Peshawar ; 25000 ; Pakistan
    6. Women Institute of Learning
    ; Abbottabad ; Pakistan
    7. Department of Plant and Food Sciences
    ; The University of Sydney ; Sydney ; Australia
    8. Kasetsart University
    ; Bangkok ; 10900 ; Thailand
    9. Department of Plant Biology and Ecology
    ; Nankai University ; Tianjin ; China
  • 关键词:Abiotic stress ; Climate change ; Plant growth regulators ; Phytohormones ; Salinity ; Stress tolerance
  • 刊名:Plant Growth Regulation
  • 出版年:2015
  • 出版时间:March 2015
  • 年:2015
  • 卷:75
  • 期:2
  • 页码:391-404
  • 全文大小:504 KB
  • 参考文献:1. Achard P, Cheng H, De Grauwe L, Decat J, Schoutteten H, Moritz T, Van Der Straeten D, Peng J, Harberd NP (2006) Integration of plant responses to environmentally activated phytohormonal signals. Science 311:91鈥?4
    2. Amjad M, Akhtar J, Anwar-ul-Haq M, Yang A, Akhtar SC, Jacobsen E (2014) Integrating role of ethylene and ABA in tomato plants adaptation to salt stress. Sci Hortic 172:109鈥?16
    3. Anuradha S, Rao SSR (2001) Effect of brassinosteroids on salinity stress induced inhibition of seed germination and seedling growth of rice ( / Oryza sativa L.). Plant Growth Regul 33:151鈥?53
    4. Azooz MM (2009) Salt stress mitigation by seed priming with salicylic acid in two faba bean genotypes differing in salt tolerance. Int J Agric Biol 11:343鈥?50
    5. Barciszewski J, Siboska G, Rattan SIS, Clark BFC (2000) Occurrence, biosynthesis and properties of kinetin (N6-furfuryladenine). Plant Growth Regul 32:257鈥?65
    6. Bastam N, Baninasab B, Ghobadi C (2013) Improving salt tolerance by exogenous application of salicylic acid in seedlings of pistachio. Plant Growth Regul 69:275鈥?84
    7. Behl R, Jeschke WD (1981) Influence of abscisic acid on unidirectional fluxes and intracellular compartmentation of K+ and Na+ in excised barley root segments. Physiol Plant 53:95鈥?00
    8. Bohra JS, Dorffling H, Dorffling K (1995) Salinity tolerance of rice ( / Oryza sativa L.) with reference to endogenous and exogenous abscisic acid. J Agron Crop Sci 174:79鈥?6
    9. Cabot C, Sibole JV, Barcelo J, Poschenrieder C (2009) Abscisic acid decreases leaf Na+ exclusion in salt treated / Phaseolus vulgaris L. J Plant Growth Regul 28:187鈥?92
    10. Cao WH, Liu J, He XJ, Mu RL, Zhou HL, Chen SY, Zhang JS (2007) Modulation of ethylene responses affects plant salt-stress responses. Plant Physiol 143:707鈥?19
    11. Chakrabarti N, Mukherji S (2003) Alleviation of NaCl stress by pretreatment with phytohormones in / Vigna radiata. Biol Plant 46:589鈥?94
    12. Chapman EJ, Estelle M (2009) Mechanism of auxin-regulated gene expression in plants. Annu Rev Genet 43:265鈥?85
    13. Chaves MM, Flexas J, Pinheiro C (2009) Photosynthesis under drought and salt stress: regulation mechanisms from whole plant to cell. Ann Bot 103:551鈥?60
    14. Cheong JJ, Choi YD (2003) Methyl jasmonate as a vital substance in plants. Trends Genet 19:409鈥?13
    15. Chinnusamy V, Jagendorf A, Zhu J (2005) Understanding and improving salt tolerance in plants. Crop Sci 45:437鈥?48
    16. Cost P, Neto A, Bezerra M, Prisco T, Filho E (2005) Antioxidant-enzymatic system of two / Sorghum genotypes differing in salt tolerance. Braz J Plant Physiol 17:139鈥?47
    17. Cruz C, Lips SH, Martins-Loucao MA (1995) Uptake regions of inorganic nitrogen in roots of carob seedlings. Physiol Plant 95:167鈥?75
    18. Davies PJ (2004) Plant hormones: biosynthesis, signal transduction, Action. Kluwer, Dordrecht
    19. Dela-Rosa IM, Maiti RK (1995) Biochemical mechanism in glossy sorghum lines for resistance to salinity stress. J Plant Physiol 146:515鈥?19
    20. Devinar G, Llanes A, Masciarelli O, Luna V (2013) Different relative humidity conditions combined with chloride and sulfate salinity treatments modify abscisic acid and salicylic acid levels in the halophyte / Prosopis strombulifera. Plant Growth Regul 70:247鈥?56
    21. Divi UK, Rahman T, Krishna P (2010) Brassinosteroid-mediated stress tolerance in / Arabidopsis shows interaction with absicisic acid, ethylene and salicylic acid pathways. BMC Plant Biol 10:151鈥?65
    22. El-Iklil Y, Karrou M, Benichou M (2000) Salt stress effect on epinasty in relation to ethylene production and water relations in tomato. Agronomie 20:399鈥?06
    23. El-Tayeb MA (2005) Response of barley grains to the interactive effect of salinity and salicylic acid. Plant Growth Regul 45:215鈥?25
    24. Eyidogan F, Oz MT, Yucel M, Oktem HA (2012) Signal transduction of phytohormones under abiotic stresses. In: Khan NA, Nazar R, Iqbal N, Anjum NA (eds) Phytohormones and abiotic stress tolerance in plants. Springer, Berlin, pp 1鈥?8
    25. Fahad S, Bano A (2012) Effect of salicylic acid on physiological and biochemical characterization of maize grown in saline area. Pak J Bot 44:1433鈥?438
    26. Fahad S, Hussain S, Bano A, Saud S, Hassan S, Shan D, Khan FA, Khan F, Chen Y, Wu C, Tabassum MA, Chun MX, Afzal M, Jan A, Jan MT, Huang J (2014) Potential role of phytohormones and plant growth-promoting rhizobacteria in abiotic stresses: consequences for changing environment. Environ Sci Pollut Res. doi:10.1007/s11356-014-3754-2
    27. Fahad S, Nie L, Chen Y, Wu C, Xiong D, Saud S, Hongyan L, Cui K, Huang J (2015) Crop plant hormones and environmental stress. Sustain Agric Rev 15:371鈥?00
    28. FAO (2005) Global network on integrated soil management for sustainable use of salt-affected soils. Rome, Italy: FAO Land and Plant Nutrition Management Service. http://www.fao.org/ag/AGL/agll/spush
    29. Fatma M, Khan MIR, Masood A, Khan NA (2013) Coordinate changes in assimilatory sulphate reduction are correlated to salt tolerance: involvement of phytohormones. Annu Rev Res Biol 3:267鈥?95
    30. Fletcher RA, Gill A, Davis TD, Sankhla N (2000) Triazoles as plant growth regulators and stress protectants. Hortic Rev 24:55鈥?38
    31. Food and Agricultural Organization (FAO) (2009) Land and plant nutrition management service. www.fao.org/wsfs/forum2050/
    32. Friedrichsen DM, Nemhauser J, Muramitsu T, Maloof JN, Alonso J, Ecker JR, Furuya M, Chory J (2002) Three redundant brassinosteroid early response genes encode putative bHLH transcription factors required for normal growth. Genetics 162:1445鈥?456
    33. Fukuda A, Tanaka Y (2006) Effects of ABA, auxin and gibberellin on the expression of genes for vacuolar H+ -inorganic pyrophosphatase, H+_ATPase subunit A, and Na+/H+ antiporter in barley. Plant Physiol Biochem 44:351鈥?58
    34. Gilley A, Flecher RA (2007) Gibberellin antagonizes paclobutrazole induced stress protection in wheat seedlings. J Plant Physiol 103:200鈥?07
    35. Gomez CA, Arbona V, Jacas J, Primomillo E, Talon M (2002) Abscisic acid reduces leaf abscission and increases salt tolerance in citrus plants. J Plant Growth Regul 21:234鈥?40
    36. Gonai T, Kawahara S, Tougou M, Satoh S, Hashiba T, Hirai N, Kawaide H, Kamiya Y, Yoshioka T (2004) Abscisic acid in the thermoinhibition of lettuce seed germination and enhancement of its catabolism by gibberellin. J Exp Bot 55:111鈥?18
    37. Gray WM (2004) Hormonal regulation of plant growth and development. PLoS Biol 2:E311
    38. Gunes A, Inal A, Alpaslan M, Eraslan F, Bagci EG, Cicek N (2007) Salicylic acid induced changes on some physiological parameters symptomatic for oxidative stress and mineral nutrition in maize ( / Zea mays L.) grown under salinity. J Plant Physiol 164:728鈥?36
    39. Guo H, Ecker JR (2004) The ethylene signaling pathway: new insights. Curr Opin Plant Biol 7:40鈥?9
    40. Gurmani AR, Bano A, Ullah N, Khan H, J-ahangir M, Flowers TJ (2013) Exogenous abscisic acid (ABA) and silicon (Si) promote salinity tolerance by reducing sodium (Na+) transport and bypass flow in rice ( / Oryza sativa indica). Aust J Crop Sci 7:1219鈥?226
    41. Hadiarto T, Tran LS (2011) Progress studies of drought-responsive genes in rice. Plant Cell Rep 30:297鈥?10
    42. Hagen G, Guilfoyle T (2002) Auxin-responsive gene expression: genes, promoters and regulatory factors. Plant Mol Biol 49:373鈥?85
    43. Hajihashemi S, Kiarostami K, Enteshari S, Saboora A (2009) Effect of paclobutrazol on wheat salt tolerance at pollination stage. Russ J Plant Physiol 56:251鈥?57
    44. Hall AE, Findell JL, Schaller GE, Sisler EC, Bleecker AB (2000) Ethylene perception by the ERS1 protein in / Arabidopsis. Plant Physiol 123:1449鈥?457
    45. Hamayun M, Khan SA, Khan AL, Shin JH, Ahmad B, Shin DH, Lee IJ (2010) Exogenous gibberellic acid reprograms soybean to higher growth and salt stress tolerance. J Agric Food Chem 58:7226鈥?232
    46. Hara M (2010) The multifunctionality of dehydrins. Plant Signal Behav 5:503鈥?08
    47. Harrison MA (2012) Cross-talk between phytohormone signaling pathways under both optimal and stressful environmental conditions. In: Khan NA, Nazar R, Iqbal N, Anjum NA (eds) Phytohormones and abiotic stress tolerance in plants. Springer, Berlin, pp 49鈥?6
    48. Hartung W, Sauter A, Hose E (2002) Abscisic acid in the xylem: Where does it come from, where does it go to? J Exp Bot 53:27鈥?2
    49. Hayat S, Mori M, Fariduddin Q, Bajguz A, Ahmad A (2010) Physiological role of brassinosteroids: an update. Indian J Plant Physiol 15:99鈥?09
    50. Hoque M, Haque S (2002) Effects of GA3 and its mode of application on morphology and yield parameters of mungbean ( / Vigna radiate L.). Pak J Biol Sci 5:281鈥?83
    51. Horv谩th E, Szalai G, Janda T (2007) Induction of abiotic stress tolerance by salicylic acid signaling. J Plant Growth Regul 26:290鈥?00
    52. Hussain S, Khaliq A, Matloob A, Wahid MA, Afzal I (2013) Germination and growth response of three wheat cultivars to NaCl salinity. Soil Environ 32:36鈥?3
    53. Hussain S, Peng S, Fahad S, Khaliq A, Huang J, Cui K, Nie L (2014) Rice management interventions to mitigate greenhouse gas emissions: a review. Environ Sci Pollut Res. doi:10.1007/s11356-014-3760-4
    54. Iqbal M, Ashraf M (2007) Seed treatment with auxins modulates growth and ion partitioning in salt-stressed wheat plants. J Integr Plant Biol 49:1003鈥?015
    55. Iqbal M, Ashraf M (2013a) Gibberellic acid mediated induction of salt tolerance in wheat plants: growth, ionic partitioning, photosynthesis, yield and hormonal homeostasis. Environ Exp Bot 86:76鈥?5
    56. Iqbal M, Ashraf M (2013b) Salt tolerance and regulation of gas exchange and hormonal homeostasis by auxin-priming in wheat. Pesqui Agropecu Bras 48:1210鈥?219
    57. Iqbal M, Ashraf M, Jamil A (2006) Seed enhancement with cytokinins: changes in growth and grain yield in salt stressed wheat plants. Plant Growth Regul 50:29鈥?9
    58. Iqbal N, Nazar R, Iqbal MRK, Masood A, Nafees AK (2011) Role of gibberellins in regulation of source sink relations under optimal and limiting environmental conditions. Curr Sci 100:998鈥?007
    59. Iqbal N, Masood A, Khan NA (2012) Phytohormones in salinity tolerance: ethylene and gibberellins cross talk. In: Khan NA, Nazar R, Iqbal N, Anjum NA (eds) Phytohormones and abiotic stress tolerance in plants. Springer, Berlin, pp 77鈥?8
    60. Iqbal N, Umar S, Khan NA, Khan MIR (2014) A new perspective of phytohormones in salinity tolerance: regulation of proline metabolism. Environ Exp Bot 100:34鈥?2
    61. Jackson M (1997) Hormones from roots as signals for the shoots of stressed plants. Trends Plant Sci 2:22鈥?8
    62. Jaleel CA, Gopi R, Manivannan P, Gomathinayagam M, Murali PV, Panneerselvam R (2008) Soil applied propiconazole alleviates the impact of salinity on / Catharanthus roseus by improving antioxidant status. Pestic Biochem Physiol 90:135鈥?39
    63. Javid MG, Sorooshzadeh A, Moradi F, Sanavy SAMM, Allahdadi I (2011) The role of phytohormones in alleviating salt stress in crop plants. Aust J Crop Sci 5:726鈥?34
    64. Jayakannan M, Bose J, Babourina O, Rengel Z, Shabala S (2013) Salicylic acid improves salinity tolerance in / Arabidopsis by restoring membrane potential and preventing salt-induced K+ loss via a GORK channel. J Exp Bot 64:2255鈥?268
    65. Jia W, Wang Y, Zhang S, Zhang J (2002) Salt -stress-induced ABA accumulation is more sensitively triggered in roots than in shoots. J Exp Bot 53:2201鈥?206
    66. Jung J, Park C (2011) Auxin modulation of salt stress signaling in / Arabidopsis seed germination. Plant Signal Behav 6:1198鈥?200
    67. Kagale S, Divi UK, Krochko JE, Keller WA, Krishna P (2007) Brassinosteroids confers tolerance in / Arabidopsis thaliana and / Brassica napus to a range of abiotic stresses. Planta 225:353鈥?64
    68. Kang DJ, Seo YJ, Lee JD, Ishii R, Kim KU, Shin DH, Park SK, Jang SW, Lee IJ (2005) Jasmonic acid differentially affects growth, ion uptake and abscisic acid concentration in salt-tolerant and salt-sensitive rice cultivars. J Agron Crop Sci 191:273鈥?82
    69. Karikalan L, Rajan SN, Gopi R, Sujatha BM, Pannersevalam R (1999) Induction of salt tolerance by triadimefon in pigeon pea ( / Cajanus cajan L.) Mill sp. Indian J Exp Biol 37:825鈥?29
    70. Kartal G, Temel A, Arican E, Gozukirmizi N (2009) Effects of brassinosteroids on barley root growth, antioxidant system and cell division. Plant Growth Regul 58:261鈥?67
    71. Keskin BC, Sarikaya AT, Yuksel B, Memon AR (2010) Abscisic acid regulated gene expression in bread wheat. Aust J Crop Sci 4:617鈥?25
    72. Khadri M, Tejera NA, Lluch C (2007) Sodium chloride-ABA interaction in two common bean ( / Phaseolus vulgaris) cultivars differing in salinity tolerance. Environ Exp Bot 60:211鈥?18
    73. Khan MIR, Khan NA (2013) Salicylic acid and jasmonates: approaches inabiotic stress tolerance. J Plant Biochem Physiol 1:e113. doi:10.4172/2329-9029.1000e113
    74. Khan AA, Akbar M, Seshu DV (1987) Ethylene as an indicator of salt tolerance in rice. Crop Sci 27:1242鈥?248
    75. Khan W, Prithiviraj B, Smith D (2003) Photosynthetic response of corn and soybean to foliar application of salicylates. J Plant Physiol 160:485鈥?92
    76. Khan NA, Singh S, Nazar R, Lone PM (2007) The source鈥搒ink relationship in mustard. Asian Aust J Plant Sci Biotechnol 1:10鈥?8
    77. Khan NA, Syeed S, Masood A, Nazar R, Iqbal N (2010) Application of salicylic acid increases contents of nutrients and antioxidative metabolism in mungbean and alleviates adverse effects of salinity stress. Int J Plant Biol 1:e1
    78. Khan MIR, Iqbal N, Masood A, Per TS, Khan NA (2013) Salicylic acid alleviates adverse effects of heat stress on photosynthesis through changes in proline production and ethylene formation. doi: 10.4161/psb.26374
    79. Khodary SEA (2004) Effect of salicylic acid on growth, photosynthesis and carbohydrate metabolism in salt stressed maize plants. Int J Agric Biol 6:5鈥?
    80. Khripach V, Zhabinskii VN, deGroot AE (2000) Twenty years of brassinosteroids: steroidal plant hormones warrant better crops for the XXI century. Ann Bot 86:441鈥?47
    81. Kim T-W, Wang Z-Y (2010) Brassinosteroid signal transduction from receptor kinases to transcription factors. Annu Rev Plant Biol 61:681鈥?04
    82. Kramell R, Atzorn R, Schneider G, Miersch O, Bruckner C, Schmidt J, Sembdner G, Parthier B (1995) Occurrence and identification of jasmonic acid and its amino acid conjugates induced by osmotic stress in barley leaf tissue. J Plant Growth Regul 14:29鈥?6
    83. Kramell R, Miersch O, Atzorn R, Parthier B, Wasternack C (2000) Octadecanoid-derived alteration of gene expression and the oxylipin signature in stressed barley leaves. Implications for different signaling pathways. Plant Physiol 123:177鈥?88
    84. Krishna P (2003) Brassinosteroid-mediated stress responses. J Plant Growth Regul 22:289鈥?97
    85. Kuiper D, Kuiper PJC, Lambers H, Schuit J, Staal M (1989) Cytokinin concentration in relation to mineral nutrition and benzyladenine treatment in Plantago major ssp. Pleiosperma. Physiol Plant 75:511鈥?17
    86. Kuiper D, Schuit J, Kuiper PJC (1990) Actual cytokinin concentrations in plant tissue as an indicator for salt resistance in cereals. Plant Soil 123:243鈥?50
    87. Kumar B, Singh B (1996) Effect of plant hormones on growth and yield of wheat irrigated with saline water. Ann Agric Res 17:209鈥?12
    88. Liu Y, Xu J, Ding Y, Wang Q, Li G, Wang S (2011) Auxin inhibits the outgrowth of tiller buds in rice ( / Oryza sativa L.) by downregulating / OsIPT expression and cytokinin biosynthesis in nodes. Aust J Crop Sci 5:169鈥?74
    89. Lu S, Su W, Li H, Guo Z (2009) Abscisic acid improves drought tolerance of triploid bermudagrass and involves H2O2- and NO-induced antioxidant enzyme activities. Plant Physiol Biochem 47:132鈥?38
    90. Maggio A, Barbieri G, Raimondi G, de Pascale S (2010) Contrasting effects of GA3 treatments on tomato plants exposed to increasing salinity. J Plant Growth Regul 29:63鈥?2
    91. Mahajan S, Tuteja N (2005) Cold, salinity and drought stresses: an overview. Arch Biochem Biophys 444:139鈥?58
    92. Masood A, Shah NA, Zeeshan M, Abraham G (2006) Differential response of antioxidant enzymes to salinity stress in two varieties of Azolla ( / Azolla pinnata and / Azolla filiculoides). Environ Exp Bot 58:216鈥?22
    93. Mei C, Qi M, Sheng G, Yang Y (2006) Inducible overexpression of a rice allene oxide synthase gene increases the endogenous jasmonic acid level, / PR gene expression, and host resistance to fungal infection. Mol Plant Microbe Interact 19:1127鈥?137
    94. Merchan F, de Lorenzo L, Gonz谩lez-Rizzo S, Niebel A, Meg铆as M, Frugier F, Sousa C, Crespi M (2007) Analysis of regulatory pathways involved in the reacquisition of root growth after salt stress in / Medicago truncatula. Plant J 51:1鈥?7
    95. Mohammed AHMA (2007) Physiological aspects of mungbean plant ( / Vigna radiata L. Wilczek) in response to salt stress and gibberellic acid treatment. Res J Agr Biol Sci 3:200鈥?13
    96. Moons A, Prinsen E, Bauw G, Montagu MV (1997) Antagonistic effects of abscisic acid and jasmonates on salt stress-inducible transcripts in rice roots. Plant Cell 9:2243鈥?259
    97. Munns R, Tester M (2008) Mechanisms of salinity tolerance. Ann Rev Plant Physiol 59:651鈥?81
    98. Mustafa Z, Pervez MA, Ayyub CM, Matloob A, Khaliq A, Hussain S, Ihsan MZ, Butt M (2014) Morpho-physiological characterization of chilli genotypes under NaCl salinity. Soil Environ 33:133鈥?41
    99. Narusaka Y, Nakashima K, Shinwari ZK, Sakuma Y, Furihata T, Abe H, Narusaka M, Shinozaki K, Yamaguchi-Shinozaki K (2003) Interaction between two cis-acting elements, ABRE and DRE, in ABA-dependent expression of / Arabidopsis rd29A gene in response to dehydration and high-salinity stresses. Plant J 34:137鈥?48
    100. Nazar R, Iqbal N, Syeed S, Khan NA (2011) Salicylic acid alleviates decreases in photosynthesis under salt stress by enhancing nitrogen and sulfur assimilation and antioxidant metabolism differentially in two mungbean cultivars. J Plant Physiol 168:807鈥?15
    101. Nilsen ET, Orcutt DM (1996) The physiology of plants under stress- abiotic factors. Wiley, New York, pp 118鈥?30
    102. 脰zdemir F, Bor M, Demiral T, T眉rkan 陌 (2004) Effects of 24-epibrassinolide on seed germination, seedling growth, lipid peroxidation, proline content and antioxidative system of rice ( / Oryza sativa L.) under salinity stress. Plant Growth Regul 42:203鈥?11
    103. Palma F, Lluch C, Iribarne C, Garcia-Garrida JM, Garcia NAT (2009) Combined effect of salicylic acid and salinity on some antioxidant activities, oxidative stress and metabolite accumulation in / Phaseolus vulgaris. Plant Growth Regul 58:307鈥?31
    104. Panneerselvam R, Muthukumarasamy M, Karikalan L (1997) Triadimefon enhance growth and net photosynthetic rate in NaCl stressed plant of / Raphanus stivus L. Photosynthetica 34:605鈥?09
    105. Parida AK, Das AB (2005) Salt tolerance and salinity effects on plants: a review. Ecotoxicol Environ Saf 60:324鈥?49
    106. Park J, Kim YS, Kim SG, Jung JH, Woo JC, Park CM (2011) Integration of auxin and salt signals by the NAC transcription factor NTM2 during seed germination in / Arabidopsis. Plant Physiol 156:537鈥?49
    107. Pedranzani H, Racagni G, Alemano S, Miersch O, Ram铆rez I, Pe帽a-Cort茅s H, Taleisnik E, Machado-Domenech E, Abdala G (2003) Salt tolerant tomato plants show increased levels of jasmonic acid. Plant Growth Regul 4:149鈥?58
    108. Peleg Z, Blumwald E (2011) Hormone balance and abiotic stress tolerance in crop plants. Curr Opin Plant Biol 14:290鈥?95
    109. Pierik R, Tholen D, Poorter H, Visser EJW, Voesenek LACJ (2006) The janus face of ethylene: growth inhibition and stimulation. Trends Plant Sci 11:176鈥?83
    110. Pieterse CM, Leon-Reyes A, Van Der Ent S, Van Wees SCM (2009) Networking by small molecule hormones in plant immunity. Nat Chem Biol 5:308鈥?16
    111. Prochazkova D, Wilhelmova N (2007) Leaf senescence and activities of the antioxidant enzymes. Biol Plant 51:401鈥?06
    112. Radi AF, Shaddad MAK, El-Enany AE, Omran FM (2006) Interactive effects of plant hormones (GA3 or ABA) and salinity on growth and some metabolites of wheat seedlings. Dev Plant Soil Sci Plant Nutr 92:436鈥?37
    113. Ribaut JM, Pilet PE (1994) Water stress and indole-3ylacetic acid content of maize roots. Planta 193:502鈥?07
    114. Sakhabutdinova AR, Fatkhutdinova DR, Bezrukova MV, Shakirova FM (2003) Salicylic acid prevents the damaging action of stress factors on wheat plants. Bulg J Plant Physiol 29:314鈥?19
    115. Saud S, Chen Y, Baowen L, Fahad S, Arooj S (2013) The different impact on the growth of cool season turf grass under the various conditions on salinity and drought stress. Int J Agric Sci Res 3(4):77鈥?4
    116. Saud S, Li X, Chen Y, Zhang L, Fahad S, Hussain S, Sadiq A, Chen Y (2014) Silicon application increases drought tolerance of kentucky bluegrass by improving plant water relations and morphophysiological functions. Sci World J. doi:10.1155/2014/368694
    117. Schopfer P, Liszkay A, Bechtold M, Frahry G, Wagner A (2002) Evidence that hydroxyl radicals mediate auxin-induced extension growth. Planta 214:821鈥?28
    118. Senaratna T, Touchell D, Bumm E, Dixon K (2000) Acetylsalicylic acid (aspirin) and salicylic acid induce multiple stress tolerance in bean and tomato plants. Plant Growth Regul 30:157鈥?61
    119. Shabala S (2013) Learning from halophytes: physiological basis and strategies to improve abiotic stress tolerance in crops. Ann Bot 112:1209鈥?221
    120. Shakirova FM, Avalbaev AM, Bezrukova MV, Kudoyarova GR (2010) Role of endogenous hormonal system in the realization of the antistress action of plant growth regulators on plants. Plant Stress 4:32鈥?8
    121. Sharma N, Abrams SR, Waterer DR (2005) Uptake, movement, activity, and persistence of an abscisic acid analog (80 acetylene ABA methyl ester) in marigold and tomato. J Plant Growth Regul 24:28鈥?5
    122. Sharma I, Chin I, Saini S, Bhardwaj R, Pati PK (2013) Exogenous application of brassinosteroid offers tolerance to salinity by altering stress responses in rice variety Pusa Basmati-1. Plant Physiol Biochem 69:17鈥?6
    123. Sharp RE, Poroyko V, Hejlek LG, Spollen WG, Springer GK, Bohnert HJ, Nguyen HT (2004) Root growth maintenance during water deficits: physiology to functional genomics. J Exp Bot 55:2343鈥?351
    124. Shi HZ, Zhu JK (2002) Regulation of expression of the vacuolar Na+/H+ antiporter gene AtNHX1 by salt stress and abscisic acid. Plant Mol Biol 50:543鈥?50
    125. Siddiqui MH, Khan MN, Mohammad F, Khan MMA (2008) Role of nitrogen and gibberellic acid (GA3) in the regulation of enzyme activities and in osmoprotectant accumulation in / Brassica juncea L. under salt stress. J Agron Crop Sci 194:214鈥?24
    126. Skirycz A, Inz茅 D (2010) More from less: plant growth under limited water. Curr Opin Biotechnol 21:197鈥?03
    127. Sripinyowanich S, Klomsakul P, Boonburapong B, Bangyeekhun T, Asami T, Gu H, Buaboocha T, Chadchawan S (2013) Exogenous ABA induces salt tolerance in indica rice ( / Oryza sativa L.): the role of OsP5CS1 and OsP5CR gene expression during salt stress. Environ Exp Bot 86:94鈥?05
    128. Syeed S, Anjum NA, Nazar R, Iqbal N, Masood A, Khan NA (2011) Salicylic acid-mediated changes in photosynthesis, nutrients content and antioxidant metabolism in two mustard ( / Brassica juncea L.) cultivars differing in salt tolerance. Acta Physiol Plant 33:877鈥?86
    129. Szabados L, Savoure A (2009) Proline: a multifunctional amino acid. Trends Plant Sci 15:89鈥?7
    130. Tanaka K, Nakamura Y, Asami T, Yoshida S, Matsuo T, Okamoto S (2003) Physiological roles of brassinosteroids in early growth of / Arabidopsis: brassinosteroids have a synergistic relationship with gibberellin as well as auxin in light-grown hypocotyl elongation. J Plant Growth Regul 22:259鈥?71
    131. Tani T, Sobajima H, Okada K, Chujo T, Arimura S, Tsutsumi N, Nishimura M, Seto H, Nojiri H, Yamane H (2008) Identification of the / OsOPR7 gene encoding 12-oxophytodienoate reductase involved in the biosynthesis of jasmonic acid in rice. Planta 227:517鈥?26
    132. Tardieu F, Tuberosa R (2010) Dissection and modelling of abiotic stress tolerance in plants. Curr Opin Plant Biol 13:206鈥?12
    133. Tran LSP, Urao T, Qin F, Maruyama K, Kakimoto T, Shinozaki K, Yamaguchi-Shinozaki K (2007) Functional analysis of AHK1/ATHK1 and cytokinin receptor histidine kinases in response to abscisic acid, drought, and salt stress in / Arabidopsis. Proc Natl Acad Sci USA 104:20623鈥?0628
    134. Tuna AL, Kaya C, Dikilitas M, Higgs D (2008) The combined effects of gibberellic acid and salinity on some antioxidant enzyme activities, plant growth parameters and nutritional status in maize plants. Environ Exp Bot 62:1鈥?
    135. Tuteja N (2007) Mechansims of high salinity tolerance in plants. Methods Enzymol 428:419鈥?38
    136. Velitcukova M, Fedina I (1998) Response of photosynthesis of / Pisum sativum to salt stress as affected by methyl jasmonate. Photosynthetica 35:89鈥?7
    137. Verslues PE, Agarwal M, Katiyar-Agarwal S, Zhu J, Zhu JK (2006) Methods and concepts in quantifying resistance to drought, salt and freezing, abiotic stresses that affect plant water status. Plant J 45:523鈥?39
    138. Vettakkorumakankav NA (1999) Crucial role for gibberellin in stress protecting of plants. Plant Cell Physiol 40:542鈥?48
    139. Walia H, Wilson C, Wahid A, Condamine P, Cui X, Close TJ (2006) Expression analysis of barley ( / Hordeum vulgare L.) during salinity stress. Funct Integr Genomic 6:143鈥?56
    140. Walia H, Wilson C, Condamine P, Liu X, Ismail AM (2007) Large-scale expression profiling and physiological characterization of jasmonic acid-mediated adaptation of barley to salinity stress. Plant Cell Environ 30:410鈥?21
    141. Walker MA, Dumbroff EB (1981) Effects of salt stress on abscisic acid and cytokininlevels in tomatos. Z Pflanzenphysiol 101:461鈥?70
    142. Wang Y, Mopper S, Hasentein KH (2001) Effects of salinity on endogenous ABA, IAA, JA, and SA in / Iris hexagona. J Chem Ecol 27:327鈥?42
    143. Wang B, Zhang J, Xia X, Zhang WH (2011) Ameliorative effect of brassinosteroid and ethylene on germination of cucumber seeds in the presence of sodium chloride. Plant Growth Regul 65:407鈥?13
    144. Wilkinson S, Davies WJ (2010) Drought, ozone, ABA and ethylene: new insights from cell to plant to community. Plant Cell Environ 33:510鈥?25
    145. Wolbang CM, Chandler PM, Smith JJ, Ross JJ (2004) Auxin from the developing inflorescence is required for the biosynthesis of active gibberellins in barley stems. Plant Physiol 134:769鈥?76
    146. Wu X, He J, Chen J, Yang S, Zha D (2013) Alleviation of exogenous 6-benzyladenine on two genotypes of egg-plant ( / Solanum melongena Mill.) growth under salt stress. Protoplasma 251:169鈥?76
    147. Yamaguchi S (2008) Gibberellin metabolism and its regulation. Ann Rev Plant Physiol 59:225鈥?51
    148. Zhang J, Jia W, Yang J, Ismail AM (2006) Role of ABA in integrating plant responses to drought and salt stresses. Field Crop Res 97:111鈥?19
    149. Zhang A, Jiang M, Zhang J, Ding H, Xu S, Hu X, Tan M (2007a) Nitric oxide induced by hydrogen peroxide mediates abscisic acid-induced activation of the mitogen-activated protein kinase cascade involved in antioxidant defense in maize leaves. New Phytol 175:36鈥?0
    150. Zhang S, Hu J, Zhang Y, Xie XJ, Knapp A (2007b) Seed priming with brassinolide improves lucerne ( / Medicago sativa L.) seed germination and seedling growth in relation to physiological changes under salinity stress. Aust J Agric Res 58:811鈥?15
    151. Zhao HJ, Lin XW, Shi HZ, Chang SM (1995) The regulating effect of phenolic compounds on the physiological characteristics and yield of soybeans. Acta Agron Sin 21:351鈥?55
    152. Zhu JK (2000) Genetic analysis of plant salt tolerance using / Arabidopsis. Plant Physiol 124:941鈥?48
    153. Zhu JK (2002) Salt and drought stress signal transduction in plants. Ann Rev Plant Physiol Plant Mol Biol 53:247鈥?73
    154. Z枚rb C, Geilfusb C-M, M眉hlingb KH, Ludwig-M眉ller J (2014) The influence of salt stress on ABA and auxin concentrations in two maize cultivars differing in salt resistance. J Plant Physiol 170:220鈥?24
  • 刊物类别:Biomedical and Life Sciences
  • 刊物主题:Life Sciences
    Plant Physiology
  • 出版者:Springer Netherlands
  • ISSN:1573-5087
文摘
Plants are exposed to a variety of abiotic stresses in nature and exhibit unique and complex responses to these stresses depending on their degree of plasticity involving many morphological, cellular, anatomical, and physiological changes. Phytohormones are known to play vital roles in the ability of plants to acclimatize to varying environments, by mediating growth, development, source/sink transitions and nutrient allocation. These signal molecules are produced within the plant, and also referred as plant growth regulators. Although plant response to salinity depends on several factors; nevertheless, phytohormones are thought to be the most important endogenous substances that are critical in modulating physiological responses that eventually lead to adaptation to salinity. Response usually involves fluctuations in the levels of several phytohormones, which relates with changes in expression of genes involved in their biosynthesis and the responses they regulate. Present review described the potential role of different phytohormones and their balances against salinity stress and summarized the research progress regarding plant responses towards salinity at physiological and molecular levels. We emphasized the role of abscisic acid, indole acetic acid, cytokinins, gibberellic acid, salicylic acid, brassinosteroids, jasmonates, ethylene and triazoles in mediating plant responses and discussed their crosstalk at various baseline pathways transduced by these phytohormones under salinity. Current progress is exemplified by the identification and validation of several significant genes that enhanced crops tolerance to salinity, while missing links on different aspects of phytohormone related salinity tolerance are pointed out. Deciphering mechanisms by which plant perceives salinity and trigger the signal transduction cascades via phytohormones is vital to devise salinity related breeding and transgenic approaches.

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