104

Bioremediation for Sustainable Environmental Cleanup

Dai, C. C., L. S. Tian, Y. T. Zhao, Y. Chen and H. Xie. 2010. Degradation of phenanthrene by the endophytic fungus

Ceratobasidum stevensii found in Bischofia polycarpa. Int. Biodeterior. 21(2): 245–255.

Datta, D. and T. B. Samanta. 1988. Effect of inducers on metabolism of benzo (a) pyrene in vivo and in vitro: analysis

by high pressure liquid chromatography. Biochem. Biophys. Res. Commun. 155(1): 493–502.

Dell’Anno, F., C. Sansone, A. Ianora and A. Dell’Anno. 2018. Biosurfactant-induced remediation of contaminated

marine sediments: current knowledge and future perspectives. Mar. Environ. Res. 137: 196–205.

Deshmukh, R., A. A. Khardenavis and H. J. Purohit. 2016. Diverse metabolic capacities of fungi for bioremediation.

Indian J. Microbiol. 56(3): 247–264.

Dhagat, S. and S. E. Jujjavarapu. 2022. Utility of lignin‐modifying enzymes: a green technology for organic compound

mycodegradation. J. Chem. Technol. Biotechnol. 97(2): 343–358.

Dutta, S. and S. Laha. 2022. An approach toward the biodegradation of PAHs by microbial consortia. In Development

in Wastewater Treatment Research and Processes. pp. 383–406. Elsevier.

Eibes, G., C. McCann, A. Pedezert, M. T. Moreira, G. Feijoo and J. M. Lema. 2010. Study of mass transfer and

biocatalyst stability for the enzymatic degradation of anthracene in a two-phase partitioning bioreactor.

Biochem. Eng. J. 51(1-2): 79–85.

Fayeulle, A., E. Veignie, R. Schroll, J. C. Munch and C. Rafin. 2019. PAH biodegradation by telluric saprotrophic

fungi isolated from aged PAH-contaminated soils in mineral medium and historically contaminated soil

microcosms. J. Soils Sediments. 19(7): 3056–3067.

Fenibo, E. O., G. N. Ijoma, R. Selvarajan and C. B. Chikere. 2019. Microbial surfactants: The next generation

multifunctional biomolecules for applications in the petroleum industry and its associated environmental

remediation. Microorganisms. 7(11): 581.

Field, J. A., E. deJong, G. F. Costa and J. A. M. deBont. 1992. Biodegradation of polycyclic aromatic hydrocarbons

by new iso-lates of white-rot fungi. Appl. Environ. Microbiol. 58: 2219–2226.

Gadd, G. M. and G. M. Gadd (Eds.). 2001. Fungi in bioremediation (No. 23). Cambridge University Press.

Gao, Y., Z. Cheng, W. Ling and J. Huang. 2010. Arbuscular mycorrhizal fungal hyphae contribute to the uptake of

polycyclic aromatic hydrocarbons by plant roots. Bioresour Technol. 101(18): 6895–6901.

García-Delgado, C., I. Alfaro-Barta and E. Eymar. 2015. Combination of biochar amendment and mycoremediation

for polycyclic aromatic hydrocarbons immobilization and biodegradation in creosote-contaminated soil. J.

Hazard. Mater. 285: 259–266.

Garon, D., S. Krivobok, D. Wouessidjewe and F. Seigle-Murandi. 2002. Influence of surfactants on solubilization and

fungal degradation of fluorene. Chemosphere. 47(3): 303–309.

Garon, D., L. Sage and F. Seigle-Murandi. 2004. Effects of fungal bioaugmentation and cyclodextrin amendment on

fluorene degradation in soil slurry. Biodegradation. 15(1): 1–8.

Ghosal, D., S. Ghosh, T. K. Dutta and Y. Ahn. 2016. Current state of knowledge in microbial degradation of polycyclic

aromatic hydrocarbons (PAHs): a review. Front Microbiol. 7: 1–27.

Giraud, F., P. Guiraud, M. Kadri, G. Blake and R. Steiman. 2001. Biodegradation of anthracene and fluoranthene

by fungi isolated from an experimental constructed wetland for wastewater treatment. Water Res. 35(17):

4126–4136.

Guo, J., X. Liu, X. Zhang, J. Wu, C. Chai, D. Ma et al. 2019. Immobilized lignin peroxidase on Fe3O4@ SiO2@

polydopamine nanoparticles for degradation of organic pollutants. Int. J. Biol. Macromol. 138: 433–440.

Guo, J. and X. Wen. 2021. Performance and kinetics of benzo (a) pyrene biodegradation in contaminated water and

soil and improvement of soil properties by biosurfactant amendment. Ecotoxicol. Environ. Saf. 207: 111292.

Gupta, S. and B. Pathak. 2020. Mycoremediation of polycyclic aromatic hydrocarbons. In Abatement of Environmental

Pollutants. pp. 127–149. Elsevier.

Haemmerli, S. D., M. S. Leisola, D. Sanglard and A. Fiechter. 1986. Oxidation of benzo (a) pyrene by extracellular

ligninases of Phanerochaete chrysosporium. Veratryl alcohol and stability of ligninase. J. Biol. Chem. 261(15):

6900–6903.

Henkel, M. and R. Hausmann. 2019. Diversity and classification of microbial surfactants. Biobased surfactants.

pp. 41–63. AOCS Press.

Hidayat, A. and S. Tachibana. 2015. Simple screening for potential chrysene degrading fungi. KnE Life Sci., 364–370.

Hildebrandt, U., M. Regvar and H. Bothe. 2007. Arbuscular mycorrhiza and heavy metal tolerance. Phytochemistry.

68: 139–146.

Hussain, K., R. R. Hoque, S. Balachandran, S. Medhi, M. G. Idris, M. Rahman and F. L. Hussain. 2018. Monitoring

and risk analysis of PAHs in the environment. Handbook of Environmental Materials Management, 1–35.

Imam, A., S. K. Suman, P. K. Kanaujia and A. Ray. 2022. Biological machinery for polycyclic aromatic hydrocarbons

degradation: A review. Bioresour. Technol. 343: 126121.

Jatav, H. S., V. D. Rajput, T. Minkina, S. K. Singh, S. Chejara, A. Gorovtsov et al. 2021. Sustainable approach and

safe use of biochar and its possible consequences. Sustainability. 13: 10362.