Microbe-Assisted Bioremediation of Pesticides from Contaminated Habitats 123

Ray, D. E. and J. R. Fry. 2006. A reassessment of the neurotoxicity of pyrethroid insecticides. Pharmacol. Ther.

111(1): 174–193.

Reddy, K., N. Renuka, S. Kumari and F. Bux. 2021. Algae-mediated processes for the treatment of antiretroviral drugs

in wastewater: Prospects and challenges. Chemosphere. 280: 130674.

Renuka, N., A. Gulde, R. Prasanna, P. Singh and F. Bux. 2018. Microalgae as multi-functional options in modern

agriculture: current trends, prospects and challenges. Biotechnol. Adv. 36(4): 1255–1273.

Renuka, N., S. K. Ratha, F. Kader, I. Rawat and F. Bux. 2021. Insights into the potential impact of algae-mediated

wastewater beneficiation for the circular bioeconomy: a global perspective. J. Environ. Manage. 297: 113257.

Rodríguez-Rodríguez, C. E., K. Madrigal-León, M. Masís-Mora, M. Pérez-Villanueva and J. S. Chin-Pampillo. 2017.

Removal of carbamates and detoxification potential in a biomixture: fungal bioaugmentation versus traditional

use. Ecotoxicol. Environ. Saf. 135: 252–258.

Rubilar, O., G. Feijoo, C. Diez, T. A. Lu-Chau, M. T. Moreira and J. M. Lema. 2007. Biodegradation of

Pentachlorophenol in Soil Slurry Cultures by Bjerkandera adusta and Anthracophyllum discolor. Ind. Eng.

Chem. Res. 46(21): 6744–6751.

Sabourmoghaddam, N., M. P. Zakaria and D. Omar. 2015. Evidence for the microbial degradation of imidacloprid in

soils of Cameron Highlands. J. Saudi Soc. Agric. Sci. 14(2): 182–188.

Sadiq, S., M. Haq, I. Ahmad, K. Ahad, A. Rashid and N. Rafiq. 2015. Bioremediation potential of white rot fungi,

Pleurotus spp. against organochlorines. J. Bioremed. Biodeg. 6(308): 2.

Saez, J. M., A. L. Bigliardo, E. E. Raimondo, G. E. Briceño, M. A. Polti and C. S. Benimeli. 2018. Lindane dissipation

in a biomixture: effect of soil properties and bioaugmentation. Ecotoxicol. Environ. Saf. 156: 97–105.

Sagar, V. and D. Singh. 2011. Biodegradation of lindane pesticide by non white-rots soil fungus Fusarium sp. World

J. Microbiol. Biotechnol. 27(8): 1747–1754.

Sakurai, T., M. Aoki, X. Ju, T. Ueda, Y. Nakamura, S. Fujiwara, T. Umemura, M. Tsuzuki and A. Minoda. 2016.

Profiling of lipid and glycogen accumulations under different growth conditions in the sulfothermophilic red

alga Galdieria sulphuraria. Bioresour. Technol. 200: 861–866.

Sanchez, S. and A. L. Demain. 2017. Bioactive products from fungi. pp. 59–87. In: M. Puri [Ed.]. Food Bioactives.

Springer, Cham.

Sarker, A., R. Nandi, J.-E. Kim and T. Islam. 2021. Remediation of chemical pesticides from contaminated sites

through potential microorganisms and their functional enzymes: prospects and challenges. Environ. Technol.

Innov. 23: 101777.

Satish, G. P., D. M. Ashokrao and S. K. Arun. 2017. Microbial degradation of pesticide: a review. Afr. J. Microbiol.

Res. 11(24): 992–1012.

Shahi, A., S. Aydin, B. Ince and O. Ince. 2016. The effects of white-rot fungi Trametes versicolor and Bjerkandera

adusta on microbial community structure and functional genes during the bioaugmentation process following

biostimulation practice of petroleum contaminated soil. Int. Biodeterior. Biodegrad. 114: 67–74.

Shukla, K. P., N. K. Singh and S. Sharma 2010. Bioremediation: developments, current practices and perspectives.

Genet. Eng. Biotechnol. J. 3: 1–20.

Singh, B. K. and A. Walker. 2006. Microbial degradation of organophosphorus compounds. FEMS Microbiol. Rev.

30(3): 428–471.

Singh, D. V., R. Ali, M. Kulsum and R. A. Bhat. 2020. Ecofriendly approaches for remediation of pesticides in

contaminated environs. pp. 173–194. In: R. Bhat, K. Hakeem and N. Saud Al-Saud [Eds.]. Bioremediation and

Biotechnology, Vol 3. Springer, Cham.

Subashchandrabose, S. R., B. Ramakrishnan, M. Megharaj, K. Venkateswarlu and R. Naidu 2013. Mixotrophic

cyanobacteria and microalgae as distinctive biological agents for organic pollutant degradation. Environ. Int.

51: 59–72.

Sun, Y., M. Kumar, L. Wang, J. Gupta and D. C. W. Tsang. 2020. 13—Biotechnology for soil decontamination: opportunity,

challenges, and prospects for pesticide biodegradation. pp. 261–283. In: F. Pacheco-Torgal, V. Ivanov and

D. C. W. Tsang (Eds.). Bio-Based Materials and Biotechnologies for Eco-Efficient Construction: Woodhead

Publishing.

Tang, F. H. M., M. Lenzen, A. McBratney and F. Maggi. 2021. Risk of pesticide pollution at the global scale. Nat.

Geosci. 14(4): 206–210.

Tarla, D. N., L. E. Erickson, G. M. Hettiarachchi, S. I. Amadi, M. Galkaduwa, L. C. Davis, A. Nurzhanova and

V. Pidlisnyuk. 2020. Phytoremediation and bioremediation of pesticide-contaminated soil. Appl. Sci. 10(4):

1217.

Tiwari, B., S. Chakraborty, A. K. Srivastava and A. K. Mishra. 2017. Biodegradation and rapid removal of methyl

parathion by the paddy field cyanobacterium Fischerella sp. Algal Res. 25: 285–296.