192
Views
1
CrossRef citations to date
0
Altmetric
Original Articles

Effect of Substrate Dependent Ethylene on Cotton (Gossypium hirsutum L.) at Physiological and Molecular Levels Under Salinity Stress

, , , , &
Pages 1913-1928 | Received 28 Nov 2012, Accepted 25 Feb 2015, Published online: 16 Sep 2015

REFERENCES

  • Ahloowalia, B.S. M., Meluzynski, and K. Nichterlein. 2004. Global impact of mutation-derived varieties. Euphytica 135: 187–204.
  • Ahmad, Z., M. Abid, and F. Azam. 2009a. Enhancement of salinity tolerance in wheat through soil-applied calcium carbide. Plant, Soil and Environment 28: 75–80.
  • Ahmad, Z., K. Abid, F. Azam, and S. Tahir. 2008. Effect of soil applied calcium carbide on physiological and agronomic parameters of cotton grown under salinity stress. In: Abstract Book of International Conference of Plant Scientists, pp. 103–104. Faisalabad, Pakistan: University of Agriculture.
  • Ahmad, Z., M. Abid, F. Azam, and S. Tahir. 2009b. Microbial influence on release of acetylene and ethylene from encapsulated calcium carbide and role of acetylene in nitrification Inhibition. Journal of Agriculture and Biology 11: 106–109.
  • Ahmad, Z., F. Azam, T. Mahmood, M. Arshad, and S. Nadeem. 2004a. Use of plant growth regulators (PGRs) in enhancing crop productivity I: Effect of CaC2 as a source of ethylene on some agronomic parameters of wheat (Triticum aestivicum L.). Journal of Agronomy 3: 68–71
  • Ahmad, Z., F. Azam, T. Mahmood, M. Arshad, and S. Nadeem. 2004b. Use of plant growth regulators (PGRS) in enhancing crop productivity II. Effect of CaC2 as a source of ethylene on nutrient uptake by wheat. Journal of Biology and Biotechnology 1: 305–312.
  • Ahmad, Z., S. Tahir, S. Bahdur, and M. Amanullah. 2012. Physiological and molecular response of wheat to soil applied calcium carbide under salinity stress. Journal of Plant Nutrition 35: 874–888.
  • Ahmad, Z., M. Yasin, S. Nadeem, and B.M. Atta. 2003. Effect of application of calcium carbide on growth of cotton crop. Asian Journal of Plant Sciences 2: 569–574.
  • Arshad, M., and W.T. Frankenberger Jr. 2002. Ethylene-Agricultural Sources and Applications. New York: Kluwer Academics/Plenum Publishers.
  • Ashley, M.K., M. Grant, and A. Grabov. 2006. Plant responses to potassium deficiencies: A role for potassium transport proteins. Journal of Experimental Botany 57: 425–436
  • Bernardo, M.A., E.T. Dieguez, A.L. Cortes, C.L. T. Ojanguren, H.G. Jones, and F.A. Chairez. 2000a. Path analysis of cowpea early seedling growth under saline conditions. Journal of Experimental Botany 67: 85–92.
  • Bernardo, M.A., E.T. Dieguez, H.G. Jones, F.A. Chairez, C.L. T. Ojanguren, and A.L. Cortes. 2000b. Screening and classification of cowpea genotypes for salt tolerance during germination. Journal of Experimental Botany 67: 71–84.
  • Bibik, N.D. S., V. Lenova, E.V. Druchek, and G.S. Muromtsev. 1995. Effectiveness of a soil-acting ethylene producer in obtaining sanitized seed potato. Russian Agricultural Sciences 5: 14–30.
  • Bremner, J.M. 1996. Nitrogen total: In Methods of Soil Analysis, Part 3: Chemical Methods, ed. D.L. Sparks, pp. 1085–1121. Madison, WI: Soil Science Society of America.
  • Bradford, M.M. 1976. A rapid and sensitive method for the quantitation of microgram quantitation of microgram quantities of protein utilizing the principle of protein dye binding. Annals of Biochemistry 72: 248–254.
  • Chhonkar, J.S., V.R. Sharma, and K.G. Singh. 2002. Managing farming system for nitrate control. Journal of Environmental Quality 36: 2466–2471.
  • Cooke, D.T., G.V. Hoad, and R.D. Child. 1983. Some effects of plant growth regulators on root and shoot development and mineral nutrient–ion uptake in winter wheat. In: Growth Regulators on Root and Shoot Development, ed. M. Jackson, pp. 87–101. Wantage, UK: British Plant Growth Group.
  • Cho, H.T., and D.J Cosgrove. 2002. Regulation of root hair initiation and expansion gene expression in Arabidopsis. The Plant Cell 14: 3237–3253.
  • Cramer, G.R., C.L. Schmidt, and C. Bidart. 2001. Analysis of cell wall hardening and cell wall enzymes of salt-stressed maize (Zea mays) leaves. Journal of Plant Physiology 28: 101–109.
  • El-Baz, F.K., A.A. Mohamed, and A.A. Aly. 2003. Development of biochemical markers for salt stress tolerance in cucumber plants. Pakistan Journal of Biological Sciences 6: 16–22.
  • El Beltagy, A.S., and M.A. Hall. 1974. Effect of water stress upon endogenous ethylene levels in Vicia faba. New Phytology 73: 47–60.
  • El Beltagy, A.S., J.A. Kapuya, M.A. Madkhour, and M.A. Hall. 1976. A possible endogenous rhythm in internal ethylene level in the leaves of Lycopersicon esculentum Mill. Plant Science Letters 6: 175–180.
  • El Beltagy, A.S., M.M. Khalifa, and M.A. Hall. 1979. Salinity in relation to ethylene. Egyptian Journal of Horticulture 6: 269–271.
  • Esashi, Y., and A.C. Leopold. 1969. Dormancy regulation in subterranean clover seeds by ethylene. Plant Physiology 44: 1470–1472.
  • Gul, B., and D.J. Weber. 1998. Effect of dormancy relieving compounds on the seed germination of non-dormant Allenrolfea occidentalis under salinity stress. Annals of Botany 82: 555–560.
  • Houle, G., L. Morel, C.E. Reynolds, J. Siégel. 2001. The effect of salinity on different developmental stages of an endemic annual plant, Aster laurentianus (asteraceae). American Journal of Botany 88: 62–67.
  • Iqbal, N., R. Nazar, S. Syeed, A. Masood, and N.A. Khan. 2011. Exogenously-sourced ethylene increases stomatal conductance, photosynthesis, and growth under optimal and deficient nitrogen fertilization in mustard. Journal of Experimental Botany 62: 4955–4963.
  • Jackson, M. L. 1962. Soil Chemical Analysis. Englewood Cliffs, NJ: Prentice Hall.
  • Jiang, Y., and B. Huang. 2001. Physiological responses to heat stress alone or in combination with drought: A comparison between tall fescue and perennial ryegrass. Horticulture Sciences 36: 682–686.
  • Jung, J.-Y., R. Shin, and D.P. Schachtmana. 2009. Ethylene mediates response and tolerance to potassium deprivation in Arabidopsis. The Plant Cell 21: 607–621.
  • Kashif, S.R., M. Yaseen, M. Arshad, and M. Ayub. 2008. Response of okra (Habiscus aesculentus L.) to soil given encapsulated calcium carbide. Pakistan Journal of Botany 40: 175–181.
  • Keerthisinghe, D.G., L.X. Jian, L.Q. Xiang, and A.R. Mosier. 1996. Effect of encapsulated calcium carbide and urea application methods on denitrification and N loss from flooded rice. Fertility Research 45: 31–36.
  • Kepczynski, J., and E. Kepczynska. 1997. Ethylene in seed dormancy and germination. Physiologia Plantarum 101: 720–726.
  • Khan, N.A., M.R. Mir, R. Nazar, and S. Singh. 2008. The application of ethephon (an ethylene releaser) increases growth, photosynthesis and nitrogen accumulation in mustard (Brassica juncea L.) under high nitrogen levels. Plant Biology 10: 534–538.
  • Khan, M.A., and I.A. Ungar. 1998. Seed germination and dormancy of Polygonum aciculare L. as influenced by salinity, temperature, and gibberellic acid. Seed Science and Technology 26: 107–117.
  • La Rose, P.C., N.K. Singh, P.M. Hasegawa, and R.A. Bressan. 1989. Stable NaCl tolerance of tobacco cell is associated with enhanced accumulation of osmotin. Plant Physiology 91: 855–61.
  • Laemmli, U.K., 1970. Cleavage of structure proteins during the assembly of the head of bacterio phage T4. Nature 227: 680–685.
  • Leename, S., E.J. Lee, E.J. Yang, J.E. Lee, A.R. Park, W.H. Song, and O.K. Park. 2004. Proteomic identification of annexins, calcium-dependent membrane binding proteins that mediate osmotic stress and abscisic acid signal transduction in Arabidopsis. The Plant Cell 16: 1378–1391.
  • Levine, L.H., J.T. Richard, and R.M. Wheeler. 2009. Super-elevated CO2 interferes with stomatal response to ABA and night closure in soybean (Glycine max). Journal of Plant Physiology 166: 903–913.
  • Meratan, A.A., S.M. Gaffari, and V. Niknam. 2008. Effects of salinity on growth, proteins and antioxidants enzymes in three Acanthophyllum species of different ploidy levels. JUST 33(4):1–8.
  • Muromtsev, G.S., N.P. Krasinskaya, S.V. Letunova, and I.G. Baresh. 1991. Application of an ethylene producing preparation with soil activity on citrus crops. Doklady Vsesoyuznol Ordena Lenia-i-Ordena Trudvogo Krasnogo Zrameni Akademii Sel'skohozaistvennykh Nauk-im-V.I.leina 5: 9–11.
  • Nawaz, K., K. Hussain, A. Majeed, F. Khan, S. Afghan, and K. Ali. 2010. Fatality of salt stress to plants: Morphological, physiological and biochemical aspects. African Journal of Biotechnology 9: 5475–5480.
  • Nobel, P.S. 2009. Physicochemical and Environmental Plant Physiology. San Diego, USA: Academic Press.
  • Payne, R.W., D.A. Murray, S.A. Harding, D.B. Baird, and D.M. Soutar. 2009. GENSTAT for Windows –Introduction. Hemel Hempstead, UK: VSN International.
  • Randall, P.J., J.R. Freney, J. Hodgkin, and T.C. Morton. 2001. Effect of acetylene generated from carbide on nitrification in soil, yield of irrigated maize and growth of maize seedlings. In: Plant Nutrition-Food Security and Sustainability of Agro-Ecosystems. Proceedings XIV International Plant Nutrition Colloquium, Hannover, July/August, 2001, eds. . W. J. Horst, M. K. Schenl, A. Bükert, pp. 774–775. New York: Kluwer Academic Publishers.
  • Suzuki, S., and R.B. Taylorson. 1981. Ethylene inhibition of phytochrome induced germination in Potentilla norvegica L. seeds. Plant Physiology 68: 1385–1388.
  • Trujillo, L.E., M. Sotolongo, C. Menendez, M.E. Ochogavia, Y. Coll, I. Hernandez, O. Borras-Hidalgo, B.P. H. J. Thomma, P. Vera, and L. Hernandez. 2008. Sod ERF3, a novel sugarcane ethylene responsive factor (ERF), enhances salt and drought tolerance when overexpressed in tobacco plants. Plant and Cell Physiology 49: 512–525.
  • Turan, M.A., A.H. A. Elkarim, N. Taban, and S. Taban. 2010. Effect of salt stress on growth and ion distribution and accumulation in shoot and root of maize plant. African Journal of Agriculture Research 5: 584–588.
  • U. S. Salinity Laboratory Staff. 1954. Diagnosis and Improvement of Saline and Alkaline Soils. USDA Handbook No. 60. Washington, DC: USDA.
  • Van den Boogard, R., S. Kostadirova, E.J. Veneklaas, and H. Lambers. 1995. Association of water use efficiency and nitrogen use efficiency with photosynthetic characteristics of two wheat cultivars. Journal of Experimental Botany 46: 1429–1438.
  • Wilkinson, S., and W.J. Davies. 2010. Drought, ozone, ABA and ethylene: new insights from cell to plant to community. Plant, Cell and Environment 33: 510–525.
  • Woodward, E.J., and C. Marshall. 1987. Effects of seed treatment with plant growth regulator on growth and tillering in spring barley (Hordeum vulgare L.) cv. Triumph. Annals of Applied Biology 110: 629–638.
  • Woodward, E.J., and C. Marshall. 1988. Effects of plant growth regulators and nutrients supply on the tiller bud outgrowth in barley (Hordeum vulgare L.). Annals of Applied Biology 61: 347–354.
  • Yaseen, M., M. Arshad, and A. Khalid. 2006. Effect of acetylene and ethylene gases released from encapsulated calcium carbide on growth and yield of wheat and cotton. Pedobiologia 50: 405–411.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.