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Greenhouse study on the influence of natural biostimulators and fertilizers on improving bean plants growth and microbial activity in oil-polluted soil Cover

Greenhouse study on the influence of natural biostimulators and fertilizers on improving bean plants growth and microbial activity in oil-polluted soil

Open Access
|Oct 2018

References

  1. Nduka JK, Umeh LN, Okerulu IO, Umedum LN, Okoye HN. Utilization of different microbes in bioremediation of hydrocarbon contaminated soils stimulated with inorganic and organic fertilizers. J Pet Environ Biotechnol 2012; 3: 116. doi:10.4172/2157-7463.1000116.
  2. Abatenh E, Gizav B, Tsegaye Z, Wassie M. Application of microorganisms in bioremediation-review. J Environ Microbiol 2017; 1(1): 2-7.
  3. Bergey DH, Holt JG. Bergey’s manual of determinative bacteriology 9. Williams & Wilkins Eds., Baltimore 1994.
  4. Domsch KH, Gams W. Fungi in agricultural soils. T&A Constable Ltd. Edinburg, London 1970.
  5. Watanabe T. Pictorial Atlas of Soil and Seed Fungi: Morphologies of Cultured Fungi and Key to Species 2nd ed. 2002; CRC PRESS.
  6. Matei S. Determination of soil respiration and microbial biomass. In: Dumitru M, Manea A(coord.). Methods of chemical and microbiological analysis (utilized in soil monitoring system), (in Romanian). Ed. SITECH, Craiova 2011; p. 283-288.
  7. Matei GM, Matei S. Preliminary study of microbial communities in soil contaminated with oil hydrocarbons from Icoana. Sci Papers Agron 2017; 60(1):85-90. Ed. „Ion Ionescu de la Brad”, Iași, http://www.revagrois.ro/volum/vol-60-1_2017.pdf
  8. Petre S, Pele M, Draghici EM, Postamentel M. Influence of fertilizers on cucumber fruit quality. Rev Chim 2016; 67(7):1360-1362.
  9. Gomez Sanchez E., Solis Oba MM, Delgado Flores J, Montalvo Aguillar KH, Solis Oba A. Evaluation of the use of organic fertilizers in lettuce Lactuca sativa crop. J Biotechnol 2018; 280S:S82. https://doi.org/10.1016/j.jbiotec.2018.06.270
  10. Drăghici EM, Scarlat V., Pele M, Postamentel M, Somăcescu C. Usage of perlite in polluted sandy soils for potato crop. Rev Chim 2016; 67(11):12281-2286.
  11. Nisha P, Nayana M, Viji V. Degradation studies on diesel oil using bacterial consortium isolated from oil polluted soil. Adv Biotech 2013; 13 (2)
  12. Tuleva BK, Ivanov RG, Christova NE. Biosurfactant production by a new Pseudomonas putida strain. Z Naturforsch 2002; 57:356-360.10.1515/znc-2002-3-426
  13. Waogu LA, Onyeze GOC, Nwabueze RN. Degradation of diesel oil in a polluted soil in using Bacillus subtilis Afr J Biotechnol 2008; 7(12): 1939-1943.10.5897/AJB07.889
  14. Santhini K, Myla J, Sajani S, Usharani G. Screening of Micrococcus sp. from oil contaminated soil with reference to bioremediation. Bot Res Int 2009; 2(4): 248-252.
  15. Patowary K, Patowary R, Kalita MC, Deka S. Characterization of biosurfactant produced during degradation of hydrocarbons using crude oil as sole source of carbon. Front in Microbiol 2017; 8: 279.
  16. Iordache O, Popa G, Dumitrescu I, Rodino S, Matei A, Cornea CP, Diguta C, Varzaru E, Ionescu I. Evaluation of decolorization abilities of some textile dyes by fungal isolates. Ind Text 2016; 67(2):181-188.
  17. Vinale F, Sivasithamparam K, Ghisalberti EL, Marra R, Barbetti MJ, Li H, Woo SL, Lorito M. A novel role for Trichoderma secondary metabolites in the interaction with plants. Physiol Mol Pl Pathol 2008; 72: 80-86.10.1016/j.pmpp.2008.05.005
  18. Viterbo A, Landau U, Kim S, Chernin L, Chet I. Characterization of ACC deaminase from the biocontrol and plant growth-promoting agent Trichoderma asperellum T203. Fems Microbiol Lett 2010; 305: 42-48.2014897310.1111/j.1574-6968.2010.01910.x
  19. Vinale F, Nigro M, Sivasithamparam K, Flematti G, Ghisalberti EL, Ruocco M, Varlese S, Marra R, Lanzuise S, Eid A, Woo SL, Lorito M. Harzianic acid: a novel siderophore from Trichoderma harzianum Fems Microbiol Lett 2013; 347: 123-129.23909277
  20. Vinale F, Strakowska J, Mazzei P, Piccolo A, Marra R, Lombardi N, Manganiello G, Pascale A, Woo SL, Lorito M. Cremenolide, a new antifungal, 10-member lactone from Trichoderma cremeum with plant growth promotion. Nat Prod Res 2016; 30: 2575-2581.2672822710.1080/14786419.2015.1131985
  21. Oancea F, Răuț I, Șesan T, Doni M, Popescu M, Zamfiropol-Cristea V, Jecu L. Trichoderma strains as plant biostimulants in high residues farming systems. In: Trichoderma spp. - applications in agriculture and horticulture, Chapter 7, Ed University, Bucharest 2017; p. 336-383.
  22. Kumar DS, Kumar PS, Rajendran NM, Kumar VU, Anbuganapathi G. Evaluation of Vermicompost maturity using scanning electron microscopy and paper chromatography analysis. J Agr Food Chem 2014; 62: 2738-2741.10.1021/jf4054403
Language: English
Page range: 209 - 214
Published on: Oct 27, 2018
Published by: European Biotechnology Thematic Network Association
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2018 Matei Gabi-Mirela, Matei Sorin, Drăghici Elena Maria, Stoian Marian, published by European Biotechnology Thematic Network Association
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.