with biofilm derived from other microorganisms on their consortium for the
phytoremediation and bioremediation of xenobiotic compounds.
References
Abeysinghe DH, De Silva DGV, Stahl DA, Rittmann BE (2002) The effectiveness of
bioaugmentation in nitrifying systems stressed by a washout condition and cold temperature.
Water Environ Res 74:187–199
Abraham TE, Senan RC, Shaffiqu TS, Roy JJ, Poulose TP, Thomas PP (2003) Bioremediation of
textile azo dyes by an aerobic bacterial consortium using a rotating biological contactor.
Biotechnol Prog 19:1372–1376
Accinelli C, Sacca ML, Mencarelli M, Vicari A (2012) Application of bioplastic moving bed
biofilm carriers for the removal of synthetic pollutants from wastewater. Bioresour Technol
120:180–186
Adetunji CO, Adejumo IO (2017) Nutritional assessment of mycomeat produced from different
agricultural substrates using wild and mutant strains from Pleurotus sajor-caju during solid state
Fermentation. Anim Feed Sci Technol 224:14–19. https://doi.org/10.1016/j.anifeedsci.2016.12.
004
Adetunji CO, Adejumo IO (2018) Efficacy of crude and immobilized enzymes from Bacillus
licheniformis for production of biodegraded feather meal and their assessment on chickens.
Environ Technol Innov 11:116–124. https://doi.org/10.1016/j.eti.2018.05.002
Adetunji CO, Adejumo IO (2019) Potency of agricultural wastes in Pleurotus sajor-caju biotechnology for feeding broiler chicks. Int J Recycl Org Waste Agric 8:37. https://doi.org/10.1007/
s40093-018-0226-6
Adetunji CO, Oloke JK, Prasad G, Akpor OB (2017) Environmental influence of cultural medium
on bioherbicidal activities of Pseudomonas aeruginosa C1501 on mono and dico weeds. Pol J
Nat Sci 32(4):659–670
Adetunji CO, Adejumo IO, Afolabi IS, Adetunji JB, Ajisejiri ES (2018) Prolonging the shelf-life of
‘Agege Sweet’ Orange with chitosan-rhamnolipid coating. Hortic Environ Biotechnol 59
(5):687–697. https://doi.org/10.1007/s13580-018-0083-2
Adetunji CO, Oloke JK, Bello OM, Pradeep M, Jolly RS (2019a) Isolation, structural elucidation
and bioherbicidal activity of an eco-friendly bioactive 2-(hydroxymethyl) phenol, from Pseudomonas aeruginosa (C1501) and its ecotoxicological evaluation on soil. Environ Technol
Innov 13:304–317. https://doi.org/10.1016/j.eti.2018.12.006
Adetunji CO, Afolabi IS, Adetunji JB (2019b) Effect of Rhamnolipid-Aloe vera gel edible coating
on post-harvest control of rot and quality parameters of ‘Agege Sweet’ Orange. Agric Nat
Resour 53:364–372
Adetunji CO, Oloke JK, Phazang P, Sarin NB (2020) Influence of eco-friendly phytotoxic metabolites from Lasiodiplodia pseudotheobromae C1136 on physiological, biochemical, and ultrastructural changes on tested weeds. Environ Sci Pollut Res 27:9919. https://doi.org/10.1007/
s11356-020-07677-9
Agrawal N, Kumar A (2015) An environmental cleanup strategy - microbial transformation of
xenobiotic compounds. Int J Curr Microbiol App Sci 4(4):429–461
Alexander M, Loehr RC (1992) Bioremediation review. Science 258:874
Ayangbenro AS, Babalola OO (2018) Metal (loid) bioremediation: strategies employed by microbial polymers. Sustainability 10(9):3028. https://doi.org/10.3390/su10093028
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
9 Utilization of Microbial Biofilm for the Biotransformation and Bioremediation. . .
241
phytoremediation and bioremediation of xenobiotic compounds.
References
Abeysinghe DH, De Silva DGV, Stahl DA, Rittmann BE (2002) The effectiveness of
bioaugmentation in nitrifying systems stressed by a washout condition and cold temperature.
Water Environ Res 74:187–199
Abraham TE, Senan RC, Shaffiqu TS, Roy JJ, Poulose TP, Thomas PP (2003) Bioremediation of
textile azo dyes by an aerobic bacterial consortium using a rotating biological contactor.
Biotechnol Prog 19:1372–1376
Accinelli C, Sacca ML, Mencarelli M, Vicari A (2012) Application of bioplastic moving bed
biofilm carriers for the removal of synthetic pollutants from wastewater. Bioresour Technol
120:180–186
Adetunji CO, Adejumo IO (2017) Nutritional assessment of mycomeat produced from different
agricultural substrates using wild and mutant strains from Pleurotus sajor-caju during solid state
Fermentation. Anim Feed Sci Technol 224:14–19. https://doi.org/10.1016/j.anifeedsci.2016.12.
004
Adetunji CO, Adejumo IO (2018) Efficacy of crude and immobilized enzymes from Bacillus
licheniformis for production of biodegraded feather meal and their assessment on chickens.
Environ Technol Innov 11:116–124. https://doi.org/10.1016/j.eti.2018.05.002
Adetunji CO, Adejumo IO (2019) Potency of agricultural wastes in Pleurotus sajor-caju biotechnology for feeding broiler chicks. Int J Recycl Org Waste Agric 8:37. https://doi.org/10.1007/
s40093-018-0226-6
Adetunji CO, Oloke JK, Prasad G, Akpor OB (2017) Environmental influence of cultural medium
on bioherbicidal activities of Pseudomonas aeruginosa C1501 on mono and dico weeds. Pol J
Nat Sci 32(4):659–670
Adetunji CO, Adejumo IO, Afolabi IS, Adetunji JB, Ajisejiri ES (2018) Prolonging the shelf-life of
‘Agege Sweet’ Orange with chitosan-rhamnolipid coating. Hortic Environ Biotechnol 59
(5):687–697. https://doi.org/10.1007/s13580-018-0083-2
Adetunji CO, Oloke JK, Bello OM, Pradeep M, Jolly RS (2019a) Isolation, structural elucidation
and bioherbicidal activity of an eco-friendly bioactive 2-(hydroxymethyl) phenol, from Pseudomonas aeruginosa (C1501) and its ecotoxicological evaluation on soil. Environ Technol
Innov 13:304–317. https://doi.org/10.1016/j.eti.2018.12.006
Adetunji CO, Afolabi IS, Adetunji JB (2019b) Effect of Rhamnolipid-Aloe vera gel edible coating
on post-harvest control of rot and quality parameters of ‘Agege Sweet’ Orange. Agric Nat
Resour 53:364–372
Adetunji CO, Oloke JK, Phazang P, Sarin NB (2020) Influence of eco-friendly phytotoxic metabolites from Lasiodiplodia pseudotheobromae C1136 on physiological, biochemical, and ultrastructural changes on tested weeds. Environ Sci Pollut Res 27:9919. https://doi.org/10.1007/
s11356-020-07677-9
Agrawal N, Kumar A (2015) An environmental cleanup strategy - microbial transformation of
xenobiotic compounds. Int J Curr Microbiol App Sci 4(4):429–461
Alexander M, Loehr RC (1992) Bioremediation review. Science 258:874
Ayangbenro AS, Babalola OO (2018) Metal (loid) bioremediation: strategies employed by microbial polymers. Sustainability 10(9):3028. https://doi.org/10.3390/su10093028
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
9 Utilization of Microbial Biofilm for the Biotransformation and Bioremediation. . .
241
