Harikumar PS, Jesitha K, Sreechithra M (2013) Remediation of endosulfan by biotic and abiotic
methods. J Environ Prot 4(05):418
Head M, Oleszkiewicz J (2004) Bioaugmentation for nitrification at cold temperatures. Water Res
38:523–530
Hlihor RM, Gavrilescu M, Tavares T, Favier L, Olivieri G (2017) Bioremediation: an overview on
current practices, advances, and new perspectives in environmental pollution treatment.
Hindawi 34
Huang Y, Xiao L, Li F, Xiao M, Lin D, Long X et al (2018) Microbial degradation of pesticide
residues and an emphasis on the degradation of cypermethrin and 3-phenoxy benzoic acid: a
review. Molecules 23:2313
Hussaini SZ, Shaker M, Iqbal MA (2013) Isolation of bacterial for degradation of selected
pesticides. Adv Biores 4:8285
Iwamoto T, Nasu M (2001) Current bioremediation practice and perspective. Biosci Bioeng 92
(1):18
Jaiswal S, Singh DK, Shukla P (2019) Gene editing and systems biology tools for pesticide
bioremediation: a review. Front Microbiol 10:87
Jeffries TC, Rayu S, Nielsen UN, Lai K, Ijaz A, Nazaries L et al (2018) Metagenomic functional
potential predicts degradation rates of a model organophosphorus xenobiotic in pesticide
contaminated soils. Front Microbiol 9:147
Joo SH, Zhao D (2007) Destruction of lindane and atrazine using stabilized iron nanoparticles under
aerobic and anaerobic conditions. Chemosphere 70:418425
Jorgensen KS (2007) In situ bioremediation. Adv Appl Microbiol 61:285305
Julia F, Trevor A, Kevin B, Jackie A (2001) Bioremediation of DDT contaminated soils: a review.
Biorem J 5:225–246
Kandpal V (2014) Biopesticides. Int J Environ Res Dev 4:191–196
Kanissery RG, Sims GK (2011) Biostimulation for the enhanced degradation of herbicides in soil.
Appl Environ Soil Sci 10. https://doi.org/10.1155/2011/843450
Kellner R (2000) Proteomics. Concepts and perspectives. Fresenius J Anal Chem 366:517–524
Khan E, Huang C, Reed BE (2005) Hazardous waste treatment technologies (JSTOR)
Kong L, Zhu S, Zhu L, Xie H, Su K, Yan T, Wang J, Wang J, Wang F, Sun F (2013) Biodegradation
of organochlorine pesticide endosulfan by bacterial strain Alcaligenes faecalis JBW4. J Environ
Sci 25(11):2257–2264
Kumar D, Pannu R (2018) Perspectives of lindane (γ-hexachlorocyclohexane) biodegradation from
the environment: a review. Bioresour Biopro 5:29
Kumar A, Bhoot N, Soni I, John PJ (2014) Isolation and characterization of a Bacillus subtilis strain
that degrades endosulfan and endosulfan sulphate. 3. Biotech 4(5):467–475
Kumar S, Krishnani KK, Bhushan B, Brahmane MP (2015) Metagenomics: retrospect and prospects in high throughput age. Biotechnol Res Int 13. https://doi.org/10.1155/2015/121735
Lakshmi CV, Kumar M, Khanna S (2008) Biotransformation of chlorpyrifos and bioremediation of
contaminated soil. Int Biodeterior Biodegradation 62:204–209
Lima LD, Viana P, Andre S, Chelinho S, Costa C, Ribeiro R et al (2009) Evaluating a bioremediation tool for atrazine contaminated soils in open soil microcosms: the effectiveness of
bioaugmentation and biostimulation approaches. Chemosphere 74:187–192
Liu S, Gu C, Dang Z, Liang X (2017) Comparative proteomics reveal the mechanism of tween
80 enhanced phenanthrene biodegradation by Sphingomonas sp. GY2B. Ecotoxicol Environ Saf
137:256–264. https://doi.org/10.1016/j.ecoenv.2016.12.015
Liu J, Yin M, Zhang W, Tsang DCW, Wei X, Zhou Y, Xiao T, Wang J, Dong X, Sun Y, Chen Y,
Li H, Hou L (2019a) Response of microbial communities and interactions to thallium in
contaminated sediments near a pyrite mining area. Environ Pollut 248:916–928
Liu M, Sui X, Hu Y, Feng F (2019b) Microbial community structure and the relationship with soil
carbon and nitrogen in an original Korean pine forest of Changbai Mountain, China. BMC
Microbiol 19:218
8 Bioremediation: Efficient Technology to Combat Pesticide Pollutants in. . .
169
Précédent

- 169/441

Suivant