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2014 | 23 | 2 |

Tytuł artykułu

Transgenic tobacco-bearing p-cV-ChMTIIGFP gene accumulated more lead compared to wild type

Autorzy

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Heavy metal pollution, including lead (Pb), is a common global pollution problem. Transgenic (p-cVChMTIIGFP) and non-transgenic (Nicotiana tabacum L. cv Petit Havana SR-1) tobacco plants grown for 6 weeks in pot experiments containing 0, 25, 50, 100, 200, and 400 mg Pb kg·soil⁻¹ were investigated. Lead toxicity symptoms, chlorophyll content, dry weight, and Pb concentration of plants were measured in order to evaluate phytoremediative potential of the plants. Neither plant showed any toxicity symptoms during the growth period. The p-cV-ChMTIIGFP tobacco plant accumulated more Pb (5.6 mg·kg⁻¹) than the wild type tobacco (3.6 mg·kg⁻¹). Therefore, the transgenic p-cV-ChMTIIGFP tobacco has promising potential for reclaiming slightly lead-contaminated soils.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

23

Numer

2

Opis fizyczny

p.569-571,fig.,ref.

Twórcy

autor
  • Soil Science and Plant Nutrition Department, Agricultural Faculty, Mustafa Kemal University, 31040 Hatay, Turkey
autor
  • Soil Science and Plant Nutrition Department, Agricultural Faculty, Mustafa Kemal University, 31040 Hatay, Turkey

Bibliografia

  • 1. BOONYAPOOKANA B., PARKPIAN P., TECHAPINYAWAT S., DELAUNE R. D., JUGSUJINDA A. Phytoaccumulation of lead by sunflower (Helianthus annuus), tobacco (Nicotiana tabacum), and vetiver (Vetiveria zizanioides). J. Environ. Sci. Heal. A. 40, 117, 2005.
  • 2. ROMEIRO S., LAGÔA A.M.M.A., FURLANI P.R., de ABREU C.A.; de ABREU M.F., ERISMANN N.M., Lead uptake and tolerance of Ricinus communis L. Braz. J. Plant Physiol. 18, (4), 483, 2006.
  • 3. TRUTA E., ROSU C.M., BARA I. C. Lead-induced genotoxicity in wheat. Analele Stiintifice ale Univ.“Al. I. Cuza”, Sectiunea Genetica si Biologie Moleculara, XII, (I), 51, 2011.
  • 4. GHANI A. Effect of lead toxicity on growth, chlorophyll and lead (Pb+) contents of two varieties of maize (Zea mays L.). Pak. J. Nutr. 9, (9), 887, 2010.
  • 5. AYDINALP C., MARINOVA S. Lead in particulate deposits and in leaves of roadside plants. Pol. J. Environ. Stud. 13, (2), 233, 2004.
  • 6. DAGHAN H. Phytoextraction of heavy metal from contaminated soils using genetically modified plants. PhD thesis, RWTH-Aachen Uni., Aachen, pp. 113, 2004.
  • 7. CIARKOWSKA K., HANUS FAJERSKA E. Remediation of soil-free grounds contaminated by zinc, lead and cadmium with the use of metallophytes. Pol. J. Environ. Stud. 17, (5), 707, 2008.
  • 8. BOUYOUCOS G.J. Hydrometer method improved for making particle size analysis of soils. Agron. J. 54, 464, 1962.
  • 9. THOMAS G.W. Soil pH and soil acidity. In: methods of soil analysis, Ed: D.L. Spark. Madison, Wisconsin, USA, pp., 475-490, 1996.
  • 10. LOEPPERT R.H., SUAREZ D.L. Carbonate and gypsum. In: methods of soil analysis, Ed: D.L. Spark. Madison, Wisconsin, USA. pp. 437-474, 1996.
  • 11. NELSON D.W., SOMMERS. L.E. Total carbon, organic carbon, and organic matter. In: methods of soil analysis, Ed: D.L. Spark. Madison, Wisconsin, USA. pp. 961-1010, 1996.
  • 12. EPA 3051 Method, microwave assisted acid digestion of sediments, sludges, soils and oils. In: test methods for evaluating solid waste, third ed., Washington DC, 1995.
  • 13. LINDSAY W.L., NORVELLW.A. Development of a DTPA test for zinc, iron, manganese, and copper. Soil Sci. Soc. Am. J., 42, 421, 1978.
  • 14. Base SAS (Statistical Analysis System) software reference card. Version 6.12. USA: Cary, N.C., SAS Institute Inc; pp. 211-253, 1997.
  • 15. SHARMA P., DUBEY R.S. Lead toxicity in plants. Braz. J. Plant Physiol. 17, (1), 35, 2005.
  • 16. GUPTA K.D., SRIVASTAVA A., SINGH V.P. Phytoremediation of induced lead toxicity in Vigna mungo (L) hepper by vetiver grass. The Vetiver System for Environmental Protection and Natural Disaster Management, Cochin India, 4, 126-135, 2008.
  • 17. GISBERT C., ROS R., DE HARO A., WALKER D.J., BERNAL M.P., SERRANO R., NAVARRO-AVINÓ J. A plant genetically modified that accumulates Pb is specially promising for phytoremediation. Biochem. Bioph. Res. Co. 303, 440, 2003.
  • 18. SONG W.Y., SOHN E.J., MARTINOIA E., LEE Y.J., YANG Y.Y., JASINSKI M., FORESTIER C., HWANG I., LEE Y. Engineering tolerance and accumulation of lead and cadmium in transgenic plants. Nat. Biotechnol. 21, (8), 914, 2003.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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