Feeding Inhibition by Chitosan on Larvae of Spodoptera litura (Lepidoptera: Noctuidae)

https://doi.org/10.22146/jpti.44032

Sulistia Ningsih(1*), Nugroho Susetya Putra(2), Y. Andi Trisyono(3)

(1) Department of Plant Protection, Faculty of Agriculture, University of Gadjah Mada Jln. Flora No. 1, Bulaksumur, Sleman, Yogyakarta 55281
(2) Department of Plant Protection, Faculty of Agriculture, University of Gadjah Mada Jln. Flora No. 1, Bulaksumur, Sleman, Yogyakarta 55281
(3) Department of Plant Protection, Faculty of Agriculture, University of Gadjah Mada Jln. Flora No. 1, Bulaksumur, Sleman, Yogyakarta 55281
(*) Corresponding Author

Abstract


The high usage of synthetic insecticides for controlling Spodoptera litura could be detrimental to the environment, especially on non-target organisms. Therefore, more environmentally friendly pest management techniques should be used, for example, using a natural product such as chitosan. The objective of this study was to understand the effect of feeding inhibition by chitosan on the feeding activity of the third instar larvae of S. litura. The feeding inhibition test was carried out using the choice methods in a factorial completely randomized design (CRD) with seven treatments: i.e. chitosan 5×103, 15×103, 25×103, 35×103, 45×103 ppm and profenofos 0.18×103, 0.34×103 ppm, and one control treatment. The test of the choice methods was carried out by three larval laying positions: (1) between the control and treatment feeds (Position A), (2) above the treated feed (Position B), and (3) above the control feed (Position C), and were replicated three times. The non-choice test was done in a completely randomized design (CRD) with seven treatments plus control and were replicated four times. The results showed that the chitosan in the concentration range of 5×103‒45×103 ppm reduced feeding by S. litura larvae by 2.587 to 34.974% in the choice method, and 11.610 to 50,712% in the non-choice method. This feeding inhibition increased significantly with the increment of chitosan concentration. However, the inhibition effects by chitosan was weaker than the inhibition by profenofos LC50 in both tests at a concentration of 0.34×103 ppm: 44.331% and 62.491% respectively. In conclusion, chitosan with a concentration of 45×103 ppm at all larval laying positions showed the highest value of feeding inhibition activity on the third instar larvae of S. litura compared to other chitosan concentrations in both methods.


Keywords


chitosan; feeding inhibition; Spodoptera litura

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References

Badawy, M.E.I. & A.F. El-Aswad. 2012. Insecticidal Activity of Chitosans of Different Molecular Weights and Chitosan-Metal Complexes Against Cotton Leafworm Spodoptera littoralis and Oleander Aphid Aphis nerii. Journal of Plant Protection Science 48: 131-141.

Badawy, M.E.I., E.I. Rabea, T.M. Rogge, C.V. Stevens, W. Steurbaut, M. Höfte, & G. Smagghe. 2005. Fungicidal and Insecticidal Activity of O-acylchitosan Derivatives. Polymer Bulletin 54: 279–289.

Boornlertnirun, S., C. Boonraung, & R. Suvanasara. 2008. Application of Chitosan in Rice Production. Journal of Metals, Materials and Minerals 18: 47-52.

CABI (Centre for Agriculture and Bioscience International). 2017. Spodoptera litura (Taro Caterpillar). https://www.cabi.org/isc/datasheet/44520, modified 20/05/2017.

Damayanti, T.A., S. Haryanto, & S. Wiyono. 2013. Pemanfaatan Kitosan untuk Pengendalian Bean common mosaic virus (BCMV) pada Kacang Panjang. Jurnal Hama dan Penyakit Tumbuhan Tropika 13: 110-116.

Hadrami, A.E., L.R. Adam, E.I. Hadrami, & F. Daayf. 2010. Chitosan in Plant Protection. Journal of Marine Drugs 8: 968-987.

Hassanali, I. & M. Bentley. 1987. Comparison of The Insect Antifeedant Activities of Some Limonoids. Proc. 3rd. International Neem Conference 1986: 683-689.

Ianca, B.F. 2010. Pengaruh Perlakuan Kitosan terhadap Pertumbuhan Tanaman Kedelai (Glycine max) Selama Fase Vegetatif dan Awal Fase Generatif. Skripsi. Institut Pertanian Bogor, Bogor (ID). 50 p.

Irawan, D. 2017. Pengaruh Aplikasi Insektisida terhadap Serangga Hama dan Musuh Alami pada Pertanaman Kacang Panjang (Vigna sinensis L.). Tesis. Institut Pertanian Bogor, Bogor (ID). 44 p.

Megasari, D., T.A. Damayanti, & S. Santoso. 2014. Pengendalian Aphis craccivora Koch. dengan Kitosan dan Pengaruhnya Terhadap Penularan Bean Common Mosaic Virusstrain Black Eye Cowpea (BCMV-BlC) pada Kacang Panjang. Jurnal Entomologi Indonesia 11: 72-80.

Pamekas, T., C. Sumardiyono, & N. Pusposendjojo. 2009. Ekstraksi, Karakterisasi dan Daya Penghambatan Kitosan Alami terhadap Jamur Colletotrichum musae secara In Vitro. Jurnal Perlindungan Tanaman Indonesia 15: 39 – 44.

Purrington, C.B. 2017. Antifeedant Substances in Plants, p. 1140–1145. In B. Thomas, B.G. Murray, D.J. Murphy (eds.), Encyclopedia of Applied Plant Sciences. Academic Press, Amsterdam (NL).

Rabea, T.M., M.E.I. Badawy, T.M. Rogge, C.V. Stevens, M. Höfte, W. Steurbaut, & G. Smagghe. 2005. Insecticidal and Fungicidal Activity of New Synthesized Chitosan Derivatives. Pest Management Science 61: 951–960.

Setiawati, W., H. Jayanti., A. Hudayya, & A. Hasyim. 2015. Pengaruh Insektisida Karbofuran terhadap Kerusakan dan Kehilangan Hasil Kentang Akibat Serangan Gryllotalpa hirsuta Burmeister (Ortoptera: Gryllotalpidae) serta Dampaknya terhadap Keanekaragaman Artropoda Tanah. Jurnal Hortikultura 25: 54-62.

Singh, P. & R.F. Moore. 1985. Handbook of Insect Rearing 2nd ed. Elsevier. Amsterdam (NL). 522 p.

Suptijah, P., A.M. Jacob, & S. Mursid. 2010. Teknik Peranan Kitosan dalam Peningkatan Pertumbuhan Tomat (Lycopersicum esculentum) Selama Fase Vegetatif. Akuatik-Jurnal Sumberdaya Perairan 4: 9-14.

Untung, K. 1984. Pengantar Analisis Ekonomi Pengendalian Hama Terpadu. Andi Offset, Yogyakarta (ID). 92 p.

Zeng, D., X. Luo & R. Tu. 2012. Application of Bioactive Coatings Based on Chitosan for Soybean Seed Protection. International Journal of Carbohydrate Chemistry 2012: 1-5.

Zhang, M.I, T. Tan, H. Yuan, & C. Rui. 2003. Insecticidal and Fungicidal Activities of Chitosan and Oligo-Chitosan. Journal of Bioactive and Compatible Polymers 18: 391-400.



DOI: https://doi.org/10.22146/jpti.44032

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