Nano-Encapsulation Of Neem Based Pesticide Formulations

Authors

  • Ashwini M. Charpe AICRP on PHET, Dr. PDKV, Akola (MS) – 444 104

DOI:

https://doi.org/10.48165/jpds.2022.1702.01

Keywords:

Azadirachta indica, Biopesticide, Nano-encapsulation

Abstract

Neem based pesticide formulations are reported to control plant parasitic fungi, bacteria, virus, nematodes, insects and mites. Despite its many promising properties, low stability under field conditions, mainly due to a high rate of photo-degradation, as well as a short residence time and slow killing rates, compared to conventional pesticides hinder effective large-scale use of Neem. Although when two lines of Myzus persicae Were exposed to pure azadirachtin and refined Neem seed extract at the same concentration, it was found that after forty generations, the line treated with azadirachtin had developed ninefold greater resistance compared to a control line, whereas the line treated with the extract did not show resistance. To overcome these limitations, nanotechnology has emerged as a novel tool for agricultural sustainability. Many studies have shown that the encapsulation of agrochemicals in nanoparticulate systems can enhance the efficacy of the active ingredient, decrease toxicity toward the environment and humans, and reduce losses due to volatilization, leaching, and photobleaching. Thus, the use of nanoparticles provides an effective means of protecting neem oil against premature degradation, resulting in prolongation of its effect on the target pest. Due to nano encapsulation sustained release of the active component is achieved. Furthermore, the number of applications of neem oil can be reduced, bringing substantial economic benefits. Therefore, nano-encapsulation of neem oil may enable the production of more stable formulations for control of diseases and pests. Further, the use of nanotechnology is an excellent way to combat development of resistance in insects and pathogens due to indiscriminate use of neem oil. 

References

Adhipathi, P., S. Nakkeeran and A. Chandrasekaran, 2013: Morphological characterization and molecular phylogeny of C. capsici causing leaf spot disease of turmeric. The Bioscan, 8 (1): 331-337.

Akhtar , Jameel and M. K. Singh, 2007: Studies on the variability in Colletotrichum capsici causing chilli anthracnose. Indian Phytopath., 60(1): 63-67.

Bagde, A. R.,G. K. Giri, A. W. Shingne and P.N. Usendi, 2020: In vitro evaluation of fungicides, botanicals and bio-agents against Colletotrichum lindemuthianum causing anthracnose of bean. Int. J. Curr. Microbiology. App. Sci., 9(8): 3103-3110

Chidanandaswamy, B.S., 2001: Studies on Colletotrichum capsici (Syd.) Butler and Bisby causing leaf spot of turmeric (Curcuma longa L.). M.Sc. (Agri.). Thesis, University of Agricultural Science, Dharwad, Karnataka

Gopalakrishnan, C. and V. Prakasam, 2007: Morphological variations and host range of Colletotrichum isolates. J. Mycol. Pl. Pathol., 37 (1): 49-51.

Hudge, B.V. and S. A. Ghugul, 2010: Losses in yield and quality of turmeric due to leaf spot disease caused by Colletotrichum capsici. International Journal of Agricultural Sciences, 6 (1):43-55.

Ingle, Y.V., C.U. Patil, K. D. Thakur and Kalyani Ingle, 2014: Effect of fungicides and plant resistance activator on Colletotrichum leaf spot of soybean. The Bioscan, 9(3):1187-1190.

Jagtap, G.P., A.K. Mali and D.Utpal, 2013: Bioefficacy of fungicides, bio- control agents and botanicals against leaf spot of turmeric incited by Colletotrichum capsici. Academic Journals, 7(18): 1865-1873

Jamdade, S.R., 2001: Studies on leaf spot of turmeric caused by Colletotrichumcapsici. M.Sc. (Agri). Thesis, Dr. Panjabrao Deshmukh Krishi Vidyapeeth, Akola, pp: 69

Kaur, M., O. P. Sharma and P.N. Sharma, 2005: Identification of source of resistance against virulence of Colletotrichum capsici causing fruit of chilli. Indian Phytopath., 58 (2): 232-234.

Kothikar, R. and M. Koche, 2017: Screening of fungicides, botanicals and bioagents against Colletotrichumdematium in vitro, J. of Agric. Sci., 3:1-6.

Kothikar, R.B., 2006: Efficacy of botanicals and fungicide for the management of major foliar disease of turmeric. M.Sc. (Agri.) Thesis Dr. Panjabrao Deshmukh Krishi Vidyapeeth, Akola.

Kumar, K., S. Bhagat, K. Madhuri, N. Amaresan and R.C.Srivastava2011:Variability in Colletotrichum gloeosporioides from Indian bay Island ecosystem. Indian Phytopath., 64 (2): 189-191.

Masoodi, L, A. Anwar, S. Ahemed and T.A Sofi, 2013: Cultural, morphological and pathogenic variability in Colletotrichum capsici causing die-back and fruit rot of chilli. Asian J. of Pl. Pathol., 7(1): 29-41.

Rao, P.S., M.L.N. Reddy, T. G. W. Rao, M. R. Krishnaand, A. M. Rao, 1993: Reaction of turmeric cultivars to Colletotrichum leaf spot, Taphrina leaf blotch and Rhizome rot. J. Plant Crops, 20:131- 134

Published

2023-03-02

How to Cite

Nano-Encapsulation Of Neem Based Pesticide Formulations . (2023). Journal of Plant Disease Sciences, 17(2), 82–92. https://doi.org/10.48165/jpds.2022.1702.01