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Original Articles

Judicious use of kinetin to improve growth and yield of rice in nickel contaminated soil

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References

  • Ahmad MSA, Hussain M, Ashraf M, Ahmad R, Ashraf MY. 2009. Effect of nickel on seed germinability of some elite sunflower (Helianthus annus L.). Pak J Bot 41:1871−1882.
  • Ahmad MSA, Hussain M, Saddiq R, Alvi AK. 2007. Mungbean: A nickel indicator, accumulator or excluder. Bull Environ Contam Toxicol 78: 319−324.
  • Ali MA, Ashraf M, Athar HR. 2009. Influnce of nickel stress on growth and some important physiological/biochemical attributes in some diverse canola cultivars. J Hazard Mater 172:964−969.
  • Alsokari SS. 2009. Modulatory role of kinetin on photosynthetic characteristics, yield and yield attributes of cadmium-treated Sorghum bicolor plants. J Appl Sci Res 5:2383−2396.
  • Barciszewski J, Siboska G, Rattan SIS, Clark BFC. 2000. Occurrence, biosynthesis and properties of kinetin (N6-furfuryladenine). Plant Growth Regul 32:257−265.
  • Boominathan R, Doran PM. 2002. Ni-induced oxidative stress in roots of the Ni hyperaccumulator Alyssum bertolonii. New Phytol 156: 205−215.
  • Cassina L, Tassi E, Morelli E, Giorgetti L, Remorini D, Chaney RL, Barbafieri M. 2011. Exogenous Cytokinin Treatments of an NI Hyper-Accumulator, Alyssum Murale, Grown in a Serpentine Soil: Implications for Phytoextraction. Int J Phytorem 13:90−101.
  • Chaudhry NY, Khan AS. 2000. Effect of growth hormones i.e., GA3, IAA and kinetin on 1. Length and diameter of shoot 2. Early initiation of cambium and maturation of metaxylem elements in (Cicer arietinum L). Pak J Biol Sci. 3 (8):1263–1266.
  • Chernyad I. 2009. The protective action of cytokinins on the photosynthetic machinery and productivity of plants under stress (review). Appl Biochem Microbiol 45:351−362.
  • Davies P. 2010. The Plant Hormones: Their Nature, Occurrence, and Functions of Plant Hormones. Dordrecht (Netherlands): Springer. p. 1−15.
  • Dubey D, Pandey A. 2011. Effect of Nickel (Ni) on chlorophyll, lipid peroxidation and antioxidant enzymes activities in black gram (Vigna mungo) leaves. Int J Sci Nat 2:395−401.
  • Duncan DB. 1955. Multiple range tests for correlated and heteroscedastic means. Biometrics 13:164−176.
  • Gadallah MAA, El-Enany AE. 1999. Role of kinetin in alleviation of copper and zinc toxicity in Lupinus termis plants. Plant Growth Regul 29:151−160.
  • Gajewska EM, Sklodowska M, Slaba M, Mazur J. 2006. Effect of nickel on antioxidative enzyme activities, proline and chlorophyll contents in wheat shoots. Biol Plant 50:653−659.
  • Ghaafar AC, Rawi IMT. 2011. Response of mungbean (Vigna radiata L., Wilczek) to gibberellic acid rates and varying irrigation frequencies. Int J Biol Sci 1:85−92.
  • Jadia CD, Fulekar MH. 2009. Phytoremediation of heavy metals: Recent techniques. Afr J Biotechnol 8:921−928.
  • Hunter JG, Vergnano O. 1953. Trace-element toxicities in oat plants. Ann Appl Biol 40:761−777.
  • Kariali E, Mohapatra PK. 2007. Hormonal regulation of tiller dynamics in differentially-tillering rice cultivars. Plant growth Regul 53:215−223.
  • Kaul K, Farooq S. 1994. Kinetin induced changes in extension growth activity of some enzymes in morning glory hypocotyls segments. Indian J Plant Physiol 4:214–216.
  • Kaur S, Gupta AK, Kaur N. 1998. Gibberellic acid and kinetin partially reverse the effect of water stress on germination and seedling growth in chickpea. Plant Growth Regul 25:29–33.
  • Khan MR, Khan MM. 2010. Effect of varying concentration of nickel and cobalt on the plant growth and yield of chickpea. Aust J Basic Appl Sci 4:1036−1046.
  • Korzeniowska J, Glubiak ES, Igras J. 2011. Applicability of energy crops for metal phytostabilization of soils moderately contaminated with copper, nickel and zinc. J Food Agric Environ 9 (3-4):693–697.
  • Kumar H, Sharma D, Kumar V. 2012. Nickel-induced oxidative stress and the role of antioxidant defence in barley roots and leaves. Int J Environ Biol 2:121−128.
  • Leon V, Rabier J, Notonier R, Barthelemy R, Moreau X, Bouraima-Madjebi S, Viano J, Pineau R. 2005. Effect of three nickel salts on germinating seed of Grevillea exul var. rubiginosa, an endemic serpentine Proteaceae. Ann Bot 95:609−618.
  • Lin YC, Kao CH. 2006. Effect of excess nickel on starch mobilization in germinating rice grains. J Plant Nutr 29:1405−1412.
  • Madhava R, Sresty KVS. 2000. Antioxidative parameters in the seedling of pigeonpe (Cajanus cajan (L.) Millspaugh) in response to Zn and Ni stress. Plant Sci 157:113−228.
  • Maheshwari R, Dubey RS. 2007. Nickel toxicity inhibits ribonuclease and protease activities in rice seedlings: protective effects of proline. Plant growth Regul 51:231−243.
  • Makarova RV, Baes EP, Martinish F, Sanches P, Ranavira K. 1988. The action of 6-benzylaminopurine on the growth of soybean cotyledons and hypocotyls. Biol Nauki 5:81–84.
  • Matraszek R, Szymaska M, Wroblewsk M. 2002. Effect of nickel on yielding and mineral composition of the selected vegetables. Hortorum Cultus 1 (1):13–22.
  • Ouzounidou G, Moustakas M, Symeonidis L, Karataglis S. 2006. Response of wheat seedlings to Ni stress: effects supplemental calcium. Arch Environ Contam Toxicol 50:346−352.
  • Pandey N, Sharma CP. 2002. Effects of heavy metals Co2+, Ni2+ and Cd2+ on growth and metabolism of cabbage. Plant Sci 163:753−758.
  • Pollard AJ, Reeves RD, Baker AJM. 2014. Facultative hyperaccumulation of heavy metals and metalloids. Plant Sci 218:8−17.
  • Ruszkowski M, Sliwiak J, Ciesielska A, Barciszewski J, Sikorski M, Jaskolski M. 2014. Specific binding of gibberellic acid by Cytokinin-Specific Binding Proteins: a new aspect of plant hormone-binding proteins with the PR-10 fold. Acta Crystallographica Section D: Biological Crystallography 70(7):2032−2041.
  • Saeidi S, Khavari RA, Fahimi H, Ghorbanli M, Majd A. 2005. Amelioration of Ni toxicity in soybean, Plants by gibberellin and ascorbic acid. Rostaniha 6:21−27.
  • Saito A, Saito M, Ichikawa Y, Yoshiba M, Tadano T, Miwa E. 2010. Difference in the distribution and speciation of cellular nickel between nickel-tolerant and non tolerant Nicotiana tabacum L. Plant Cell Environ 33:174−187.
  • Sayed SA. 1997. Effect of cadmium and kinetin on transpiration rate, stomatal opening and leaf relative water content in safflower plants. J Islamic Academy Sci 10:73−80.
  • Shafeeq A, Butt ZA, Muhammad S. 2012. Response of nickel pollution on physiological and biochemical attributes of wheat (Triticum aestivum L.). Pak J Bot 44:111−116.
  • Steel R, Torrie JH. 1980. Principles and procedures of statistics: a biometrical approach. 2nd ed. New York (NY): Mc Graw-Hill.
  • Tassi E, Pouget J, Petruzzelli G, Barbafieri M. 2008. The effects of exogenous plant growth regulators in the phytoextraction of heavy metals. Chemosphere 71:66−73.
  • Veselov D, Kudoyarova GM, Symonyan M, Veselov S. 2003. Effect of cadmium on ion uptake, transpiration and cytokinin content in wheat seedlings. Bulg J Plant Physiol 353−359.
  • Wani PA, Khan MS, Zaidi A. 2007. Impact of heavy metal toxicity on plant growth, symbiosis, seed yield and nitrogen and metal uptake in chickpea. Aust J Exp Agric 47:712−720.
  • Wolf B. 1982. A comprehensive system of leaf analysis and its use for diagnosing crop nutrient status. Commun Soil Sci Plant Anal 13: 1035−1059.
  • Wyszkowska J, Kucharski J, Boros E. 2005. Effect of nickel contamination on soil enzymatic activities. Plant Soil Environ 51 (12):523–531.
  • Zahir ZA, Asghar HN, Arshad M. 2001. Cytokinin and its precursors for improving growth and yield of rice. Soil Biol Biochem 33: 405−408.
  • Zeng X, Tang J, Liu X, Jiang P. 2009. Isolation, identification and characterization of cadmium-resistant Pseudomonas aeruginosa strain E1. J Cent South Univ Technol 16: 416–421.

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