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Articles

New nano-fungicides for the management of sheath blight disease (Rhizoctonia solani) in rice

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Pages 217-226 | Received 11 Oct 2019, Accepted 28 Aug 2020, Published online: 12 Oct 2020

References

  • Aggarwal N, Kumar R, Dureja P, Rawat DS. 2009. Schiff bases as potential fungicides and nitrification inhibitors. J Agric Food Chem. 57(18):8520–8525.
  • Al-Kahraman YMSA, Madkour HMF, Ali D, Yasinzai M. 2010. Antileishmanial, antimicrobial and antifungal activities of some new aryl azomethines. Molecules. 15(2):660–671.
  • Ali M, Nair KK, Kumar R, Gopal M, Srivastava C, Siddiqi WA. 2017. Development and evaluation of chitosan-sodium alginate based etofenprox as nanopesticide. Adv Sci Eng Med. 9(2):137–143.
  • Baker S, Volov T, Prudnikova SV, Satish S, Prasad N. 2017. Nanoagroparticles emerging trends and future prospect in modern agriculture system. Environ Toxicol Pharmacol. 53:10–17.
  • Bheemaraya GR, Aggarwal R, Kumar A, Kumar R, Rai SN, Hossain F, Bisht IS. 2014. Effect of nano-hexaconazole on the phenotype and pathogenicity of Rhizoctonia solani f. sp. sasakii causing banded leaf and sheath blight in maize. J Pure Appl Microbiol. 8(6):4579–4592.
  • Boukaew S, Klinmanee C, Prasertsan P. 2013. Potential for the integration of biological and chemical control of sheath blight disease caused by Rhizoctonia solani on rice. World J Microbiol Biotechnol. 29(10):1885–1893.
  • Dash SC, Panda S. 1984. Chemical control of rice sheath blight disease. Indian Phytopathol. 37:79–82.
  • Guan H, Chi D, Yu J, Li H. 2010. Dynamics of residues from a novel nano-imidacloprid formulation in soyabean fields. Crop Prot. 29(9):942–946.
  • Gullino ML, Leroux P, Smith CM. 2000. Uses and challenges of novel compounds for plant disease control. Crop Prot. 19(1):1–11.
  • IRRI. 2013. Standard Evaluation System (SES) for rice. Manila, Philippines: International Rice Research Institute; p. 55.
  • Kah M, Beulke S, Tiede K, Hofmann T. 2013. Nanopesticides: State of knowledge, environmental fate, and exposure modeling. Crit Rev Environ Sci Technol. 43(16):1823–1867.
  • Kah M, Machinski P, Koerner P, Tiede K, Grillo R, Fraceto LF, Hofmann T. 2014. Analysing the fate of nanopesticides in soil and the applicability of regulatory protocols using a polymer-based nanoformulation of atrazine. Environ Sci Pollut Res Int. 21(20):11699–11707.
  • Kah M, Weniger AK, Hofmann T. 2016. Impacts of (nano)formulations on the fate of an insecticide in soil and consequences for environmental exposure assessment. Environ Sci Technol. 50(20):10960–10967.
  • Kannaiyan S, Prasad NN. 1984. Effect of foliar spray of certain fungicides on the control of sheath blight of rice. Madras Agric J. 7:111–114.
  • Kumar R, Nair KK, Alam MI, Gogoi R, Singh PK, Srivastava C, Gopal M, Goswami A. 2015. Development and quality control of nanohexaconazole as an effective fungicide and its biosafety studies on soil nitifiers. J Nanosci Nanotechnol. 15(2):1350–1356.
  • Kumar S, Chauhan N, Gopal M, Kumar R, Dilbaghi N. 2015. Development and evaluation of alginate-chitosan nanocapsules for controlled release of acetamiprid. Int J Biol Macromol. 81:631–637.
  • Kumar N, Kumar R, Shakil NA, Das TK. 2016. Nanoformulations of pretilachlor herbicide: Preparation, characterization and activity. J Sci Ind Res. 75:676–680.
  • Kumar R, Gopal M, Pabbi S, Paul S, Alam MI, Yadav S, Nair KK, Chauhan N, Srivastava C, Gogoi R, et al. 2016. Effect of nanohexaconazole on nitrogen fixing blue green algae and bacteria. J Nanosci Nanotechnol. 16(1):643–647.
  • Kumar R, Gopal M, Verma S, Nair KK, Gogoi R, Kulanthaivel S, Singh PK, Srivastava C, Goswami A. 2017. Influence of nanohexaconazole on ergosterol biosynthesis in Rhizoctonia solani kuhn and molecular characterization of sclerotial fungi. Adv Sci Eng Med. 9(2):122–129.
  • Kumar N, Kumar R, Shakil NA, Sarkar DJ, Chander S. 2019. Evaluation of fipronil nanoformulations for effective management of brown plant hopper (Nilaparvata lugens) in rice. Int J Pest Manag. 65(1):86–93.
  • Kuz'min VE, Artemenko AG, Lozytska RN, Fedtchouk AS, Lozitsky VP, Muratov EN, Mescheriakov AK. 2005. Investigation of anticancer activity of macrocyclic Schiff bases by means of 4D-QSAR based on simplex representation of molecular structure. SAR QSAR Environ Res. 16(3):219–230.
  • Li ZZ, Chen JF, Liu F, Liu AQ, Wang Q, Sun HY, Wen LX. 2007. Study of UV-shielding properties of novel porous hollow silica nanoparticle carriers for avermectin. Pest Manag Sci. 63(3):241–246.
  • Liang J, Yu M, Guo L, Cui B, Zhao X, Sun C, Wang Y, Liu G, Cui H, Zeng Z. 2018. Bioinspired development of P(St-MAA)-avermectin nanoparticles with high affinity for foliage to enhance folia retention. J Agric Food Chem. 66(26):6578–6584.
  • Majumder S, Shakil NA, Kumar J, Kumar R, Kaushik P. 2017. Bio-efficacy evaluation of slow release nanoformulations of Mancozeb against phytopathogenic fungi Rhizoctonia bataticola, R. solani, Fusarium oxysporum and Macrophomina phaseolina. Ann Plant Protec Sci. 25:126–131.
  • Mondal P, Kumar R, Gogoi R. 2017. Azomethine based nano-chemicals: development, in vitro and in vivo fungicidal evaluation against Sclerotium rolfsii, Rhizoctonia bataticola and Rhizoctonia solani. Bioorg Chem. 70:153–162.
  • Moore D, Robson GD, Trinci APJ. 2019. 21st century guidebook to fungi. 2nd ed. Cambridge: Cambridge University Press. Chapter 14, Fungal diseases and loss of world agricultural production. http://www.davidmoore.org.uk/21st_Century_Guidebook_to_Fungi_PLATINUM/index.htm.
  • Nagarajkumar M, Bhaskaran R, Velazhahan R. 2004. Involvement of secondary metabolites and extracellular lytic enzymes produced by Pseudomonas fluorescens in inhibition of Rhizoctonia solani, the rice sheath blight pathogen. Microbiol Res. 159(1):73–81.
  • Nguyen HM, Hwang IC, Park JW, Park HJ. 2012. Photoprotection for deltamethrin using chitosan-coated beeswax solid lipid nanoparticles. Pest Manag Sci. 68(7):1062–1068.
  • Perlatti B, de Souza Bergo LS, Fernandes JB, Forim MR. 2013. Polymeric nanoparticlebased insecticides: A controlled release purpose for agrochemicals. In: Stanislav T, editor. Insecticides-development of safer and more effective technologies. London (UK): InTech; pp 523–550. https://doi.org/http://dx.doi.org/10.5772/53355.
  • Saini P, Gopal M, Kumar R, Srivastava C, Gogoi R. 2013. Comparative insecticidal activity of a commercial and a nanoformulation of pyridalyl against bollworm, Helicoverpa armigera (Hübner). Pestic Res J. 25:191–194.
  • Rodrigues SM, Demokritou P, Dokoozlian N, Hendren CO, Karn B, Mauter MS, Sadik OA, Safarpour M, Unrine JM, Viers J, et al. 2017. Nanotechnology for sustainable food production: Promising opportunities and scientific challenges. Environ Sci: Nano. 4(4):767–781.
  • Savary S, Willocquet L, Elazegui FA, Teng PS, Du PV, Zhu D, Tang Q, Huang S, Lin X, Singh HM, et al. 2000. Rice pest constraints in tropical Asia: Characterization of injury profiles in relation to production situations. Plant Dis. 84(3):341–356.
  • Shang Q, Shi Y, Zhang Y, Zheng T, Shi H. 2013. Pesticide‐conjugated polyacrylate nanoparticles: novel opportunities for improving the photostability of emamectin benzoate. Polym Adv Technol. 24(2):137–143.
  • Sharma S, Singh S, Ganguli AK, Shanmugam V. 2017. Anti-drift nano-stickers made of graphene oxide for targeted pesticide delivery and crop pest control. Carbon. 115:781–790.
  • Siddhartha. 2019. Synthesis of halogen substituted benzylidene aryl amines and their pesticidal activity [Thesis]. New Delhi: Post Graduate School, ICAR-Indian Agricultural Research Institute; p. 133.
  • Siddhartha RK, Verma A, Gogoi R. 2019. Synthesis of halogenated benzylidene aryl amines as potent fungicides against plant pathogenic fungi Rhizoctonia solani, R. bataticola and Sclerotium rolfsii. Int J Chem Stud. 7:3102–3105.
  • Singh R, Sinha AP. 2004. Comparative efficacy of local bioagents, commercial bioformulation and fungicide for the management of sheath blight of rice under glass house conditions. Indian Phytopathol. 57:494–496.
  • Song S, Liu X, Jiang J, Qian Y, Zhang N, Wu Q. 2009. Stability of triazophos in self-nanoemulsifying pesticide delivery system. Colloids Surf Physicochem Eng Asp. 350(1–3):57–62.
  • Vashi K, Naik HB. 2004. Synthesis of novel Schiff base and azetidinone derivatives and their antibacterial activity. Eur J Chem. 1(5):272–276.
  • Wang L, Liu LM, Hou YX, Li L, Huang SW. 2015. Pathotypic and genetic diversity in the population of Rhizoctonia solani AG1-Ia causing rice sheath blight in China. Plant Pathol. 64(3):718–728.
  • Yin J, Wang Y, Gilbertson LM. 2018. Opportunities to advance sustainable design of nano-enabled agriculture identified through a literature review. Environ Sci: Nano. 5(1):11–26.
  • Zhang CQ, Liu YH, Ma XY, Feng Z, Ma ZH. 2009. Characterization of sensitivity of Rhizoctonia solani causing rice sheath blight to mepronil and bascalid. Crop Protect. 28(5):381–386.

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