Insights into the Status of Heavy Metal Resistant Rhizobacterial …
29
Acknowledgements Authors gratefully acknowledging the RUSA—Phase 2.0 grant sanctioned
vide Letter No. F. 24-51/2014-U, Policy (TN Multi-Gen), Department of Education, Govt. of India,
dated 09.10.2018.
References
Abbas SH, Ismail IM, Mostafa TM, Sulaymon AH (2014) Biosorption of heavy metals: a review.
J Chem Sci Technol 3(4):74–102
Abdi O, Kazemi M (2015) A review study of biosorption of heavy metals and comparison between
different biosorbents. J Mater Environ Sci 6(5):1386–1399
Ahemad M (2012). Implications of bacterial resistance against heavy metals in bioremediation: a
review. J Inst Integr Omics Appl Biotechnol (IIOAB) 3(3)
Akcil A, Erust C, Ozdemiroglu S, Fonti V, Beolchini F (2015) A review of approaches and techniques used in aquatic contaminated sediments: metal removal and stabilization by chemical and
biotechnological processes. J Cleaner Prod 86:24–36
An YJ, Kim M (2009) Effect of antimony on the microbial growth and the activities of soil enzymes.
Chemosphere 74(5):654–659
Belimov, AA, Hontzeas N, Safronova VI, Demchinskaya SV, Piluzza G, Bullitta S, Glick BR (2005)
Cadmium-tolerant plant growth-promoting bacteria associated with the roots of Indian mustard
(Brassica juncea L. Czern.). Soil Biol Biochem 37(2):241–250
Bender CL, Cooksey DA (1986) Indigenous plasmids in Pseudomonas syringae pv. tomato:
conjugative transfer and role in copper resistance. J Bacteriol 165(2):534–541
Bissen M, Frimmel FH (2003) Arsenic—a review. Part I: occurrence, toxicity, speciation, mobility.
Acta Hydrochim Hydrobiol 31(1):9–18
Blais JF, Djedidi Z, Cheikh RB, Tyagi RD, Mercier G (2008) Metals precipitation from effluents.
Pract Periodical Hazard Toxic Radioactive Waste Manage 12(3):35–149
Blanco A, Sampedro MA, Sanz B, Llama MJ, Serra JL (2000). Immobilization of non-viable
cyanobacteria and their use for heavy metal adsorption from water. Environ Biotechnol Cleaner
Bioprocess 135–151
Bondarczuk K, Piotrowska-Seget Z (2013) Molecular basis of active copper resistance mechanisms
in gram-negative bacteria. Cell Biol Toxicol 29:397–405
Bradham KD, Dayton EA, Basta NT, Schroder J, Payton M, Lanno RP (2006) Effect of soil properties
on lead bioavailability and toxicity to earthworms. Environ Toxicol Chem 25:769–775
Buchet JP, Lauwerys R, Roels H, Bernard A, Bruaux P, Claeys F, Lijnen P (1990) Renal effects of
cadmium body burden of the general population. Lancet 336(8717):699–702
Chandrangsu P, Rensing C, Helmann JD (2017) Metal homeostasis and resistance in bacteria. Nat
Rev Microbiol 15(6):338
Chen G, Zeng G, Tang L, Du C, Jiang X, Huang G, Liu H, Shen G (2008) Cadmium removal from
simulated wastewater to biomass byproduct of Lentinusedodes. Bioresour Technol 99(15):7034–
7040
Conrath U, Beckers GJ, Flors V, García-Agustín P, Jakab G, Mauch F, Pugin A (2006) Priming:
getting ready for battle. Mol Plant Microbe Interact 19(10):1062–1071
Dary M, Chamber-Pérez MA, Palomares AJ, Pajuelo E (2010) “In situ” phytostabilisation of heavy
metal polluted soils using Lupinus luteus inoculated with metal resistant plant-growth promoting
rhizobacteria. J Hazard Mater 177(1–3):323–330
Das N, Vimala R, Karthika P (2008) Biosorption of heavy metals—an overview. Indian J Biotechnol
2008(7):159–169
Das S, Dash HR, Chakraborty J (2016) Genetic basis and importance of metal resistant genes
in bacteria for bioremediation of contaminated environments with toxic metal pollutants. Appl
Microbiol Biotechnol 100(7):2967–2984
Précédent

- 39/323

Suivant