References
Abatenh E, Gizaw B, Tsegaye Z, Wassie M (2017) Application of microorganisms in
bioremediation-review. J Environ Microbiol 1:02–09
Abhilash PC, Singh N (2009) Pesticide use and application: an Indian scenario. J Hazard Mater 165
(13):1–12
Ahmad M, Pataczek L, Hilger TH, Zahir ZA, Hussain A, Rasche F, Schafleitner R, Solberg SO
(2018) Perspectives of microbial inoculation for sustainable development and environmental
management. Front Microbiol 9:29–92. https://doi.org/10.3389/fmicb.2018.02992
Aslam B, Basit M, Nisar MA, Khurshid M, Rasool MH (2017) Proteomics: technologies and their
applications. J Chromatogr Sci 55:182–196. https://doi.org/10.1093/chromsci/bmw167
Azubuike CC, Chikere CB, Okpokwasili GC (2016) Bioremediation techniques classification based
on site of application: principles, advantages, limitations and prospects. World J Microbiol
Biotechnol 32:180
Baginsky S, Hennig L, Zimmermann P, Gruissem W (2010) Gene expression analysis, proteomics,
and network discovery. Plant Physiol 152:402–410. https://doi.org/10.1104/pp.109.150433135
Balaji V, Arulazhagan P, Ebenezer P (2014) Enzymatic bioremediation of polyaromatic hydrocarbons by fungal consortia enriched from petroleum contaminated soil and oil seeds. J Environ
Biol 35:521–529
Bardot C, Besse-Hoggan P, Carles L, Le Gall M, Clary G, Chafey P, Federici C, Broussard C,
Batisson I (2015) How the edaphic Bacillus megaterium strain Mes11 adapts its metabolism to
the herbicide mesotrione pressure. Environ Pollut 199:198–208. https://doi.org/10.1016/j.
envpol.2015.01.029
Bass C, Field LM (2011) Gene amplification and insecticide resistance. Pest Manag Sci 67
(8):886–890
Bending G, Friloux DM, Walker A (2002) Degradation of contrasting pesticides by white rot fungi
and its relationship with ligninolytic potential. FEMS Microbiol Lett 212:59–63
Bhalerao TS, Puranik PR (2007) Biodegradation of organochlorine pesticide, endosulfan, by a
fungal soil isolate, Aspergillus niger. Int Biodeterior Biodegrad 59(4):315–321
Bhanti M, Taneja A (2007) Contamination of vegetables of different seasons with organophosphorous pesticides and related health risk assessment in northern India. Chemosphere 69:63–68
Bhattacharjee K, Banerjee S, Bawitlung L, Krishnappa D, Joshi SR (2014) A study on parameters
optimization for degradation of endosulfan by bacterial consortia isolated from contaminated
soil. Proc Natl Acad Sci India B 84(3):657–667
Briceño G, Palma G, Duran N (2007) Influence of organic amendment on the biodegradation and
movement of pesticides. Crit Rev Environ Sci Technol 37:233–271. https://doi.org/10.1080/
10643380600987406
Carson R (1962) The silent spring. Houghton Mifflin, New York
Cases I, de Lorenzo V (2005) Promoters in the environment: transcriptional regulation in its natural
context. Nat Rev Microbiol 3:105–118
Chandrasekhar K, Dileep A, Lebonah DE (2014) A short review on proteomics and its applications.
Int Lett Nat Sci 12:77–84
Chauhan PS, Jha B (2018) Pilot scale production of extracellular thermo-alkali stable laccase from
Pseudomonas sp. S2 using agro waste and its application in organophosphorus pesticides
degradation. J Chem Technol Biotechnol 93(4):1022–1030
Chen W, Georgiou G (2002) Cell-surface display of heterologous proteins: from high throughput
screening to environmental applications. Biotechnol Bioeng 5:496–503. https://doi.org/10.
1002/bit.10407
Chen S, Geng P, Xiao Y, Hu M (2012) Bioremediation of β-cypermethrin and 3phenoxybenzaldehyde contaminated soils using Streptomyces aureus HP-S-01. Appl Microbiol
Biot 94:505–515
8 Bioremediation: Efficient Technology to Combat Pesticide Pollutants in. . .
167
Abatenh E, Gizaw B, Tsegaye Z, Wassie M (2017) Application of microorganisms in
bioremediation-review. J Environ Microbiol 1:02–09
Abhilash PC, Singh N (2009) Pesticide use and application: an Indian scenario. J Hazard Mater 165
(13):1–12
Ahmad M, Pataczek L, Hilger TH, Zahir ZA, Hussain A, Rasche F, Schafleitner R, Solberg SO
(2018) Perspectives of microbial inoculation for sustainable development and environmental
management. Front Microbiol 9:29–92. https://doi.org/10.3389/fmicb.2018.02992
Aslam B, Basit M, Nisar MA, Khurshid M, Rasool MH (2017) Proteomics: technologies and their
applications. J Chromatogr Sci 55:182–196. https://doi.org/10.1093/chromsci/bmw167
Azubuike CC, Chikere CB, Okpokwasili GC (2016) Bioremediation techniques classification based
on site of application: principles, advantages, limitations and prospects. World J Microbiol
Biotechnol 32:180
Baginsky S, Hennig L, Zimmermann P, Gruissem W (2010) Gene expression analysis, proteomics,
and network discovery. Plant Physiol 152:402–410. https://doi.org/10.1104/pp.109.150433135
Balaji V, Arulazhagan P, Ebenezer P (2014) Enzymatic bioremediation of polyaromatic hydrocarbons by fungal consortia enriched from petroleum contaminated soil and oil seeds. J Environ
Biol 35:521–529
Bardot C, Besse-Hoggan P, Carles L, Le Gall M, Clary G, Chafey P, Federici C, Broussard C,
Batisson I (2015) How the edaphic Bacillus megaterium strain Mes11 adapts its metabolism to
the herbicide mesotrione pressure. Environ Pollut 199:198–208. https://doi.org/10.1016/j.
envpol.2015.01.029
Bass C, Field LM (2011) Gene amplification and insecticide resistance. Pest Manag Sci 67
(8):886–890
Bending G, Friloux DM, Walker A (2002) Degradation of contrasting pesticides by white rot fungi
and its relationship with ligninolytic potential. FEMS Microbiol Lett 212:59–63
Bhalerao TS, Puranik PR (2007) Biodegradation of organochlorine pesticide, endosulfan, by a
fungal soil isolate, Aspergillus niger. Int Biodeterior Biodegrad 59(4):315–321
Bhanti M, Taneja A (2007) Contamination of vegetables of different seasons with organophosphorous pesticides and related health risk assessment in northern India. Chemosphere 69:63–68
Bhattacharjee K, Banerjee S, Bawitlung L, Krishnappa D, Joshi SR (2014) A study on parameters
optimization for degradation of endosulfan by bacterial consortia isolated from contaminated
soil. Proc Natl Acad Sci India B 84(3):657–667
Briceño G, Palma G, Duran N (2007) Influence of organic amendment on the biodegradation and
movement of pesticides. Crit Rev Environ Sci Technol 37:233–271. https://doi.org/10.1080/
10643380600987406
Carson R (1962) The silent spring. Houghton Mifflin, New York
Cases I, de Lorenzo V (2005) Promoters in the environment: transcriptional regulation in its natural
context. Nat Rev Microbiol 3:105–118
Chandrasekhar K, Dileep A, Lebonah DE (2014) A short review on proteomics and its applications.
Int Lett Nat Sci 12:77–84
Chauhan PS, Jha B (2018) Pilot scale production of extracellular thermo-alkali stable laccase from
Pseudomonas sp. S2 using agro waste and its application in organophosphorus pesticides
degradation. J Chem Technol Biotechnol 93(4):1022–1030
Chen W, Georgiou G (2002) Cell-surface display of heterologous proteins: from high throughput
screening to environmental applications. Biotechnol Bioeng 5:496–503. https://doi.org/10.
1002/bit.10407
Chen S, Geng P, Xiao Y, Hu M (2012) Bioremediation of β-cypermethrin and 3phenoxybenzaldehyde contaminated soils using Streptomyces aureus HP-S-01. Appl Microbiol
Biot 94:505–515
8 Bioremediation: Efficient Technology to Combat Pesticide Pollutants in. . .
167
